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1.
Am J Hum Genet ; 110(5): 863-879, 2023 05 04.
Artigo em Inglês | MEDLINE | ID: mdl-37146589

RESUMO

Deleterious mutations in the X-linked gene encoding ornithine transcarbamylase (OTC) cause the most common urea cycle disorder, OTC deficiency. This rare but highly actionable disease can present with severe neonatal onset in males or with later onset in either sex. Individuals with neonatal onset appear normal at birth but rapidly develop hyperammonemia, which can progress to cerebral edema, coma, and death, outcomes ameliorated by rapid diagnosis and treatment. Here, we develop a high-throughput functional assay for human OTC and individually measure the impact of 1,570 variants, 84% of all SNV-accessible missense mutations. Comparison to existing clinical significance calls, demonstrated that our assay distinguishes known benign from pathogenic variants and variants with neonatal onset from late-onset disease presentation. This functional stratification allowed us to identify score ranges corresponding to clinically relevant levels of impairment of OTC activity. Examining the results of our assay in the context of protein structure further allowed us to identify a 13 amino acid domain, the SMG loop, whose function appears to be required in human cells but not in yeast. Finally, inclusion of our data as PS3 evidence under the current ACMG guidelines, in a pilot reclassification of 34 variants with complete loss of activity, would change the classification of 22 from variants of unknown significance to clinically actionable likely pathogenic variants. These results illustrate how large-scale functional assays are especially powerful when applied to rare genetic diseases.


Assuntos
Hiperamonemia , Doença da Deficiência de Ornitina Carbomoiltransferase , Ornitina Carbamoiltransferase , Humanos , Substituição de Aminoácidos , Hiperamonemia/etiologia , Hiperamonemia/genética , Mutação de Sentido Incorreto/genética , Ornitina Carbamoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/terapia
2.
J Inherit Metab Dis ; 47(1): 50-62, 2024 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-37026568

RESUMO

Urea cycle defects (UCDs) are severe inherited metabolic diseases with high unmet needs which present a permanent risk of hyperammonaemic decompensation and subsequent acute death or neurological sequelae, when treated with conventional dietetic and medical therapies. Liver transplantation is currently the only curative option, but has the potential to be supplanted by highly effective gene therapy interventions without the attendant need for life-long immunosuppression or limitations imposed by donor liver supply. Over the last three decades, pioneering genetic technologies have been explored to circumvent the consequences of UCDs, improve quality of life and long-term outcomes: adenoviral vectors, adeno-associated viral vectors, gene editing, genome integration and non-viral technology with messenger RNA. In this review, we present a summarised view of this historical path, which includes some seminal milestones of the gene therapy's epic. We provide an update about the state of the art of gene therapy technologies for UCDs and the current advantages and pitfalls driving future directions for research and development.


Assuntos
Transplante de Fígado , Doença da Deficiência de Ornitina Carbomoiltransferase , Distúrbios Congênitos do Ciclo da Ureia , Humanos , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Qualidade de Vida , Ureia/metabolismo , Doadores Vivos , Terapia Genética , Distúrbios Congênitos do Ciclo da Ureia/genética , Distúrbios Congênitos do Ciclo da Ureia/terapia , Distúrbios Congênitos do Ciclo da Ureia/complicações
3.
BMC Pregnancy Childbirth ; 24(1): 491, 2024 Jul 22.
Artigo em Inglês | MEDLINE | ID: mdl-39039447

RESUMO

BACKGROUND: Ornithine carbamoyltransferase deficiency (OTCD) is a kind of X-linked metabolic disease caused by a deficiency in ornithine transcarbamylase leading to urea cycle disorders. The main reason is that the OTC gene variants lead to the loss or decrease of OTC enzyme function, which hinders the ammonia conversion to urea, resulting in hyperammonemia and severe neurological dysfunction. Here, we studied one Chinese family of three generations who consecutively gave birth to two babies with OTCD. This study aims to explore the pathogenicity of two missense variants in the OTC gene and investigate the application of preimplantation genetic testing for monogenic (PGT-M) for a family troubled by Ornithine carbamoyltransferase deficiency (OTCD). METHODS: The retrospective method was used to classify the pathogenicity of two missense variants in the OTC gene in a family tortured by OTCD. Sanger sequencing was used to validate the variants in the OTC gene, and then the pathogenicity of variants was confirmed through family analysis and bioinformatics software. We used PGT-M to target the OTC gene and select a suitable embryo for transplantation. Prenatal diagnosis was recommended to confirm previous results using Sanger sequencing and karyotyping at an appropriate gestational stage. Tandem mass spectrometry (MS-MS) and gas chromatography-mass spectrometry (GC-MS) were used to detect fetal metabolism after birth. The number of the study cohort is ChiCTR2100053616. RESULTS: Two missense variants, c.959G > C (p.Arg320Pro) and c.634G > A (p.Gly212Arg), were validated in the OTC gene in this family. According to the ACMG genetic variation classification criteria, the missense variant c.959G > C can be considered as "pathogenic", and the missense variant c.634G > A can be regarded as "likely benign." PGT-M identified a female embryo carrying the heterozygous variant c.959G > C (p.Arg320Pro), which was selected for transplantation. Prenatal diagnosis revealed the same variant in the fetus, and continued pregnancy was recommended. A female baby was born, and her blood amino acid testing and urine organic acid testing were regular. Follow-up was conducted after six months and indicated the girl was healthy. CONCLUSION: Our research first validated the segregation of both c.959G > C and c.634G > A variants in the OTC gene in a Chinese OTCD family. Then, we classified variant c.959G > C as "pathogenic" and variant c.634G > A as "likely benign", providing corresponding theoretical support for genetic counseling and fertility guidance in this family. PGT-M and prenatal diagnosis were recommended to help the couple receive a female baby successfully with a six-month follow-up.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Ornitina Carbamoiltransferase , Adulto , Feminino , Humanos , Recém-Nascido , Masculino , Gravidez , China , População do Leste Asiático/genética , Testes Genéticos , Mutação de Sentido Incorreto , Ornitina Carbamoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Linhagem , Diagnóstico Pré-Natal , Estudos Retrospectivos
4.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(3): 306-311, 2024 Mar 10.
Artigo em Zh | MEDLINE | ID: mdl-38448019

RESUMO

OBJECTIVE: To explore the genetic basis for a Chinese pedigree affected with co-morbid Ornithine carbamoyl transferase deficiency (OTCD) and MECP2 duplication syndrome. METHODS: A proband who was admitted to the Neonatal Intensive Care Unit of Gansu Provincial Maternal and Child Health Care Hospital on December 19, 2017 was selected as the study subject. High-throughput sequencing and multiplex ligation-dependent probe amplification (MLPA) were carried out for her pedigree, and short tandem repeat-based linkage analysis and chromosome copy number variation sequencing (CNV-seq) were used for the prenatal diagnosis. RESULTS: The proband, a 3-day-old female, was found to harbor heterozygous deletion of exons 7-9 of the OTC gene. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the variant was classified as likely pathogenic (PVS1+PM2_Supporting+PP4). The proband was diagnosed with OTCD , which was in keeping with her acute encephalopathy and metabolic abnormalities (manifesting as hyperammonemia, decreased blood citrulline, and increased urine orotic acid). Prenatal diagnosis was carried out for the subsequent pregnancy. The fetus did not harbor the exons 7-9 deletion of the OTC gene, but was found to carry a duplication in Xq28 region (which encompassed the whole region of MECP2 duplication syndrome) and was positive for the SRY sequence. The same duplication was also found in the proband and her mother. Considering the possible existence of X-chromosome inactivation, the proband was diagnosed with two X-linked recessive disorders including OTCD and MECP2 duplication syndrome, and the fetus was determined as a male affected with the MECP2 duplication syndrome. CONCLUSION: Discoveries of the pathogenic variants underlying the OTCD and MECP2 duplication syndrome have enabled clinical intervention, treatment, genetic counseling and prenatal diagnosis for this pedigree.


Assuntos
Carboxil e Carbamoil Transferases , Deficiência Intelectual Ligada ao Cromossomo X , Doença da Deficiência de Ornitina Carbomoiltransferase , Criança , Feminino , Humanos , Recém-Nascido , Masculino , Gravidez , China , Variações do Número de Cópias de DNA , Ornitina , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Linhagem , Diagnóstico Pré-Natal
5.
Zhongguo Dang Dai Er Ke Za Zhi ; 26(5): 512-517, 2024 May 15.
Artigo em Zh | MEDLINE | ID: mdl-38802913

RESUMO

Glyceryl phenylbutyrate (GPB) serves as a long-term management medication for Ornithine transcarbamylase deficiency (OTCD), effectively controlling hyperammonemia, but there is a lack of experience in using this medicine in China. This article retrospectively analyzes the case of a child diagnosed with OTCD at Shanghai Children's Medical Center, Shanghai Jiao Tong University School of Medicine, including a review of related literature. After diagnosis, the patient was treated with GPB, followed by efficacy follow-up and pharmacological monitoring. The 6-year and 6-month-old male patient exhibited poor speech development, disobedience, temper tantrums, and aggressive behavior. Blood ammonia levels peaked at 327 µmol/L; urine organic acid analysis indicated elevated uracil levels; cranial MRI showed extensive abnormal signals in both cerebral hemispheres. Genetic testing revealed de novo mutation in the OTC gene (c.241T>C, p.S81P). Blood ammonia levels were approximately 43, 80, and 56 µmol/L at 1, 2, and 3 months after starting GPB treatment, respectively. During treatment, blood ammonia was well-controlled without drug-related adverse effects. The patient showed improvement in developmental delays, obedience, temperament, and absence of aggressive behavior.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Fenilbutiratos , Humanos , Masculino , Doença da Deficiência de Ornitina Carbomoiltransferase/tratamento farmacológico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Fenilbutiratos/uso terapêutico , Criança , Glicerol/análogos & derivados
6.
Hepatology ; 76(3): 646-659, 2022 09.
Artigo em Inglês | MEDLINE | ID: mdl-34786702

RESUMO

BACKGROUND AND AIMS: Patient-derived human-induced pluripotent stem cells (hiPSCs) differentiated into hepatocytes (hiPSC-Heps) have facilitated the study of rare genetic liver diseases. Here, we aimed to establish an in vitro liver disease model of the urea cycle disorder ornithine transcarbamylase deficiency (OTCD) using patient-derived hiPSC-Heps. APPROACH AND RESULTS: Before modeling OTCD, we addressed the question of why hiPSC-Heps generally secrete less urea than adult primary human hepatocytes (PHHs). Because hiPSC-Heps are not completely differentiated and maintain some characteristics of fetal PHHs, we compared gene-expression levels in human fetal and adult liver tissue to identify genes responsible for reduced urea secretion in hiPSC-Heps. We found lack of aquaporin 9 (AQP9) expression in fetal liver tissue as well as in hiPSC-Heps, and showed that forced expression of AQP9 in hiPSC-Heps restores urea secretion and normalizes the response to ammonia challenge by increasing ureagenesis. Furthermore, we proved functional ureagenesis by challenging AQP9-expressing hiPSC-Heps with ammonium chloride labeled with the stable isotope [15 N] (15 NH4 Cl) and by assessing enrichment of [15 N]-labeled urea. Finally, using hiPSC-Heps derived from patients with OTCD, we generated a liver disease model that recapitulates the hepatic manifestation of the human disease. Restoring OTC expression-together with AQP9-was effective in fully correcting OTC activity and normalizing ureagenesis as assessed by 15 NH4 Cl stable-isotope challenge. CONCLUSION: Our results identify a critical role for AQP9 in functional urea metabolism and establish the feasibility of in vitro modeling of OTCD with hiPSC-Heps. By facilitating studies of OTCD genotype/phenotype correlation and drug screens, our model has potential for improving the therapy of OTCD.


Assuntos
Aquaporinas/metabolismo , Células-Tronco Pluripotentes Induzidas , Hepatopatias , Doença da Deficiência de Ornitina Carbomoiltransferase , Adulto , Hepatócitos/metabolismo , Humanos , Células-Tronco Pluripotentes Induzidas/metabolismo , Hepatopatias/metabolismo , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/metabolismo , Doença da Deficiência de Ornitina Carbomoiltransferase/terapia , Ureia
7.
J Inherit Metab Dis ; 46(1): 55-65, 2023 01.
Artigo em Inglês | MEDLINE | ID: mdl-36220785

RESUMO

Protein catabolism ultimately yields toxic ammonia, which must be converted to urea by the liver for renal excretion. In extrahepatic tissues, ammonia is temporarily converted primarily to glutamine for subsequent hepatic extraction. Urea cycle disorders (UCDs) are inborn errors of metabolism causing impaired ureagenesis, leading to neurotoxic accumulation of ammonia and brain glutamine. Treatment includes dietary protein restriction and oral "ammonia scavengers." These scavengers chemically combine with glutamine and glycine to yield excretable products, creating an alternate pathway of waste nitrogen disposal. The amino acid transporter SLC6A19 is responsible for >95% of absorption and reabsorption of free neutral amino acids in the small intestine and kidney, respectively. Genetic SLC6A19 deficiency causes massive neutral aminoaciduria but is typically benign. We hypothesized that inhibiting SLC6A19 would open a novel and effective alternate pathway of waste nitrogen disposal. To test this, we crossed SLC6A19 knockout (KO) mice with spfash mice, a model of ornithine transcarbamylase (OTC) deficiency. Loss of SLC6A19 in spfash mice normalized plasma ammonia and brain glutamine and increased median survival in response to a high protein diet from 7 to 97 days. While induced excretion of amino acid nitrogen is likely the primary therapeutic mechanism, reduced intestinal absorption of dietary free amino acids, and decreased muscle protein turnover due to loss of SLC6A19 may also play a role. In summary, the results suggest that SLC6A19 inhibition represents a promising approach to treating UCDs and related aminoacidopathies.


Assuntos
Erros Inatos do Metabolismo dos Aminoácidos , Sistemas de Transporte de Aminoácidos Neutros , Doença da Deficiência de Ornitina Carbomoiltransferase , Camundongos , Animais , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/metabolismo , Glutamina , Nitrogênio/metabolismo , Amônia , Modelos Animais de Doenças , Camundongos Knockout , Ureia/metabolismo , Ornitina Carbamoiltransferase/genética , Sistemas de Transporte de Aminoácidos Neutros/genética
8.
Paediatr Anaesth ; 33(8): 620-630, 2023 08.
Artigo em Inglês | MEDLINE | ID: mdl-37401903

RESUMO

BACKGROUND: Ornithine transcarbamylase deficiency is an X-linked genetic disorder that induces accumulation of ammonia in the liver and is the most common urea cycle disorder. The clinical manifestation of ornithine transcarbamylase deficiency is hyperammonemia that causes irreversible neurological damage. Liver transplantation is a curative therapy for ornithine transcarbamylase deficiency. The aim of this study is to suggest, from our previous experience, an anesthesia management protocol of liver transplantation for ornithine transcarbamylase deficiency, particularly focused on liver transplantation for cases with uncontrolled hyperammonemia. METHOD: We retrospectively reviewed our anesthesia-related experience in all cases of liver transplantation for ornithine transcarbamylase deficiency in our center. RESULTS: Twenty-nine liver transplantation cases for ornithine transcarbamylase deficiency were found between November 2005 and March 2021 in our center. Of these, 25 cases were stable through the perioperative period. However, 2 cases with carrier donor graft had hyperammonemia after liver transplantation. Another two cases had uncontrolled hyperammonemia before liver transplantation, even with continuous hemodialysis. They underwent life-saving liver transplantation. Their metabolic status stabilized after the anhepatic phase. CONCLUSION: Liver transplantation for cases with uncontrolled hyperammonemia can be performed with proper management. Second, liver transplantation with carrier donors should be avoided because of the risk of postoperative recurrence.


Assuntos
Anestesia , Hiperamonemia , Transplante de Fígado , Doença da Deficiência de Ornitina Carbomoiltransferase , Humanos , Doença da Deficiência de Ornitina Carbomoiltransferase/cirurgia , Doença da Deficiência de Ornitina Carbomoiltransferase/tratamento farmacológico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Hiperamonemia/cirurgia , Hiperamonemia/etiologia , Transplante de Fígado/efeitos adversos , Estudos Retrospectivos , Anestesia/efeitos adversos
9.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 40(3): 328-331, 2023 Mar 10.
Artigo em Zh | MEDLINE | ID: mdl-36854409

RESUMO

OBJECTIVE: To analyze the clinical manifestation and genetic basis for four children with delayed onset Ornithine transcarbamylase deficiency (OTCD). METHODS: Clinical data of four children with OTCD admitted to the Children's Hospital of the First Affiliated Hospital of Zhengzhou University from January 2020 to April 2021 were reviewed. Peripheral blood samples of the children and their parents were collected and subjected to whole exome sequencing (WES). Bioinformatic analysis and Sanger sequencing verification were carried out to verify the candidate variants. Impact of the candidate variants on the protein structure was also predicted. RESULTS: The clinical manifestations of the four children included vomiting, convulsion and disturbance of consciousness. WES revealed that the child 1 was heterozygous for a c.421C>T (p.R141X) variant in exon 5, children 2 and 3 were hemizygous for a c.119G>A (p.R40H) variant in exon 2, and child 4 was hemizygous for a c.607T>A (p.S203T) variant in exon 5 of the OTC gene. Among these, the c.607T>A variant was unreported previously and predicted to be pathogenic (PM1+PM2_Supporting+PP3+PP4). Bioinformatic analysis has predicted that the variant may result in breakage of hydrogen bonds and alter the protein structure and function. Sanger sequencing confirmed that the variants in children 2 to 4 have derived from their mothers. CONCLUSION: The pathogenic variants of the OTC gene probably underlay the delayed OTCD in 4 children. The discovery of the c.607T>A variant has enriched the mutational spectrum of the OTC gene.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Criança , Humanos , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Éxons , Convulsões , Biologia Computacional , Heterozigoto
10.
Mol Genet Metab ; 137(3): 301-307, 2022 11.
Artigo em Inglês | MEDLINE | ID: mdl-36252454

RESUMO

Ornithine transcarbamylase deficiency (OTCD), caused by X-linked OTC mutations, is characterized by life-threatening hyperammonemia. Heterozygous female patients are often asymptomatic and usually have milder disease than affected male patients, but can have higher morbidity and mortality rates if the disease progresses prior to diagnosis. Our purpose was to establish a screening method for female heterozygotes with OTCD. We retrospectively identified female patients who underwent plasma amino acid analysis at the National Center for Child Health and Development, using data from electronic medical records from March 2002 to September 2021. We extracted patient age, medical history, and biochemical data, including plasma amino acid levels. Patients were categorized into several groups according to their underlying diseases; those with underlying diseases that could potentially affect plasma amino acid levels, such as mitochondrial disease or short bowel syndrome, were excluded, except for untreated OTCD. Biochemical values were compared between OTCD patients and others using the Mann-Whitney U test. The receiver operator characteristic analysis was performed to assess the diagnostic capability for detecting OTCD in each subject. For patients with multiple test data, the most recent of the measurement dates was used in the analysis. The data sets of 976 patients were included. There were significant differences in values of glutamine, citrulline, arginine, and ammonia, but the diagnostic capacity of each alone was inadequate. By contrast, the (glutamine + glycine)/(citrulline + arginine) ratio was appropriate for discriminating heterozygous female patients with OTCD, with a sensitivity of 100% and specificity of 98.6% when the cutoff level was 15.8; the AUC for this discrimination was 0.996 (95% confidence interval, 0.992 to 1.000). These findings could help identify heterozygous female patients with OTCD before the onset of clinical disease.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Criança , Feminino , Humanos , Arginina/genética , Citrulina , Glutamina/genética , Heterozigoto , Ornitina Carbamoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/tratamento farmacológico , Estudos Retrospectivos
11.
J Inherit Metab Dis ; 45(4): 710-718, 2022 07.
Artigo em Inglês | MEDLINE | ID: mdl-35605046

RESUMO

Ornithine transcarbamylase deficiency (OTCD) is an X-linked inborn error caused by loss of function variants in the OTC gene typically associated with severe neonatal hyperammonemia. Rare examples of late-onset OTCD have also been described. Here, we describe an OTC promoter variant, c.-106C>A, in a conserved HNF4a binding site, identified in two male siblings in Family 1 whose first and only recognized episodes of severe hyperammonemia occurred at ages 14 and 39 years, respectively. We identified the same OTC variant segregating in a large family with late-onset OTCD with variable expressivity (Family 2). We show that this OTC promoter variant reduces expression >5-fold in a dual-luciferase assay that tests promoter function. Addition of an upstream OTC enhancer increases expression of both the wild type and the c.-106C>A variant promoter constructs >5-fold with the mutant promoter still about fourfold lower than the wild type. Thus, in both contexts, the promoter variant results in substantially lower OTC expression. Under normal demand on urea cycle function, OTC expression in hemizygous males, although reduced, is sufficient to meet the demand for waste nitrogen excretion. However, in response to severe metabolic stress with attendant increased requirements on urea cycle function, the impaired promoter function results in inadequate OTC expression with resultant hyperammonemia. In the absence of precipitating events, hemizygotes with this allele are asymptomatic, explaining the late age of onset of hyperammonemia in affected individuals and the incomplete penetrance observed in some individuals in Family 2.


Assuntos
Hiperamonemia , Doença da Deficiência de Ornitina Carbomoiltransferase , Ornitina Carbamoiltransferase/genética , Adolescente , Adulto , Idade de Início , Alelos , Humanos , Hiperamonemia/etiologia , Masculino , Doença da Deficiência de Ornitina Carbomoiltransferase/complicações , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Ureia/metabolismo , Adulto Jovem
12.
BMC Gastroenterol ; 22(1): 144, 2022 Mar 28.
Artigo em Inglês | MEDLINE | ID: mdl-35346058

RESUMO

BACKGROUND: Ornithine transcarbamylase deficiency (OTCD) is most common among urea cycle disorders (UCDs), defined by defects in enzymes associated with ureagenesis. Corticosteroid administration to UCD patients, including OTCD patients, is suggested to be avoided, as it may induce life-threatening hyperammonemia. The mechanism has been considered nitrogen overload due to the catabolic effect of corticosteroids; however, the pathophysiological process is unclear. METHODS: To elucidate the mechanism of hyperammonemia induced by corticosteroid administration in OTCD patients, we analyzed a mouse model by administering corticosteroids to OTCspf-ash mice deficient in the OTC gene. Dexamethasone (DEX; 20 mg/kg) was administered to the OTCspf-ash and wild-type (WT) mice at 0 and 24 h, and the serum ammonia concentrations, the levels of the hepatic metabolites, and the gene expressions related with ammonia metabolism in the livers and muscles were analyzed. RESULTS: The ammonia levels in Otcspf-ash mice that were administered DEX tended to increase at 24 h and increased significantly at 48 h. The metabolomic analysis showed that the levels of citrulline, arginine, and ornithine did not differ significantly between Otcspf-ash mice that were administered DEX and normal saline; however, the level of aspartate was increased drastically in Otcspf-ash mice owing to DEX administration (P < 0.01). Among the enzymes associated with the urea cycle, mRNA expressions of carbamoyl-phosphate synthase 1, ornithine transcarbamylase, arginosuccinate synthase 1, and arginosuccinate lyase in the livers were significantly downregulated by DEX administration in both the Otcspf-ash and WT mice (P < 0.01). Among the enzymes associated with catabolism, mRNA expression of Muscle RING-finger protein-1 in the muscles was significantly upregulated in the muscles of WT mice by DEX administration (P < 0.05). CONCLUSIONS: We elucidated that corticosteroid administration induced hyperammonemia in Otcspf-ash mice by not only muscle catabolism but also suppressing urea-cycle-related gene expressions. Since the urea cycle intermediate amino acids, such as arginine, might not be effective because of the suppressed expression of urea-cycle-related genes by corticosteroid administration, we should consider an early intervention by renal replacement therapy in cases of UCD patients induced by corticosteroids to avoid brain injuries or fatal outcomes.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Corticosteroides , Animais , Citrulina/genética , Expressão Gênica , Humanos , Camundongos , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/metabolismo , Ureia/metabolismo
13.
Pediatr Dev Pathol ; 25(3): 278-284, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-34958254

RESUMO

INTRODUCTION: Ornithine transcarbamylase (OTC) deficiency is the most common urea cycle disorder, inherited in an X-linked manner. Males are severely affected. Female phenotypes vary from asymptomatic to severe, and symptoms may be triggered by high metabolic states like childbirth. Literature on OTC deficiency in pregnancy and placental pathology is limited. METHODS: Pathology records were searched at a single referral center from 2000-2020 and identified three placental cases from two mothers heterozygous for OTC deficiency. Placental pathology and maternal and neonatal history were reviewed in detail. RESULTS: The placenta from one symptomatic mother carrying an affected male fetus showed widespread high-grade fetal vascular malperfusion (FVM) lesions of varying age. These lesions were not seen in the two placentas from the asymptomatic mother. DISCUSSION: In cases of symptomatic maternal OTC deficiency, our findings highlight the need for placental examination. Since thrombotic events in the placenta have the potential to associate with fetal and neonatal endothelial damage, a high index of suspicion for neonatal thrombosis may be warranted.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Feminino , Heterozigoto , Humanos , Masculino , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/patologia , Placenta/patologia , Gravidez
14.
Mol Ther ; 29(5): 1903-1917, 2021 05 05.
Artigo em Inglês | MEDLINE | ID: mdl-33484963

RESUMO

Ornithine transcarbamylase deficiency (OTCD) is a monogenic disease of ammonia metabolism in hepatocytes. Severe disease is frequently treated by orthotopic liver transplantation. An attractive approach is the correction of a patient's own cells to regenerate the liver with gene-repaired hepatocytes. This study investigates the efficacy and safety of ex vivo correction of primary human hepatocytes. Hepatocytes isolated from an OTCD patient were genetically corrected ex vivo, through the deletion of a mutant intronic splicing site achieving editing efficiencies >60% and the restoration of the urea cycle in vitro. The corrected hepatocytes were transplanted into the liver of FRGN mice and repopulated to high levels (>80%). Animals transplanted and liver repopulated with genetically edited patient hepatocytes displayed normal ammonia, enhanced clearance of an ammonia challenge and OTC enzyme activity, as well as lower urinary orotic acid when compared to mice repopulated with unedited patient hepatocytes. Gene expression was shown to be similar between mice transplanted with unedited or edited patient hepatocytes. Finally, a genome-wide screening by performing CIRCLE-seq and deep sequencing of >70 potential off-targets revealed no unspecific editing. Overall analysis of disease phenotype, gene expression, and possible off-target editing indicated that the gene editing of a severe genetic liver disease was safe and effective.


Assuntos
Edição de Genes/métodos , Hepatócitos/transplante , Mutação , Doença da Deficiência de Ornitina Carbomoiltransferase/terapia , Ornitina Carbamoiltransferase/genética , Adulto , Idoso , Amônia/metabolismo , Animais , Células Cultivadas , Criança , Modelos Animais de Doenças , Feminino , Regulação da Expressão Gênica , Hepatócitos/química , Hepatócitos/citologia , Humanos , Íntrons , Masculino , Camundongos , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Ácido Orótico/urina , Splicing de RNA
15.
Pract Neurol ; 22(3): 224-227, 2022 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-35046116

RESUMO

A previously healthy 27-year-old man was brought to hospital after been found late at night confused, agitated and talking incoherently. He represented 12 days later with focal seizures, progressing to anarthria and encephalopathy. MR scan of brain showed diffuse cerebral oedema and his plasma ammonia was >2000 µmol/L (12-55 µmol/L). He developed refractory status epilepticus and subsequently died. Genetic analysis identified an ornithine transcarbamylase (OTC) gene mutation on the X chromosome. We discuss this atypical presentation of OTC deficiency as a rare but treatable cause of hyperammonaemic encephalopathy.


Assuntos
Encefalopatias , Doença da Deficiência de Ornitina Carbomoiltransferase , Estado Epiléptico , Adulto , Testes Genéticos , Humanos , Masculino , Doença da Deficiência de Ornitina Carbomoiltransferase/complicações , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Convulsões
16.
Hum Mutat ; 42(8): 978-989, 2021 08.
Artigo em Inglês | MEDLINE | ID: mdl-34015158

RESUMO

Understanding the role of common polymorphisms in modulating the clinical phenotype when they co-occur with a disease-causing lesion is of critical importance in medical genetics. We explored the impact of apparently neutral common polymorphisms, using the gene encoding the urea cycle enzyme, ornithine transcarbamylase (OTC), as a model system. Distinct combinations of genetic backgrounds embracing two missense polymorphisms were created in cis with the pathogenic p.Arg40His replacement. In vitro enzymatic assays revealed that the polymorphic variants were able to modulate OTC activity both in the presence or absence of the pathogenic lesion. First, we found that the combination of the minor alleles of polymorphisms p.Lys46Arg and p.Gln270Arg significantly enhanced enzymatic activity in the wild-type protein. Second, enzymatic assays revealed that the minor allele of the p.Gln270Arg polymorphism was capable of ameliorating OTC activity when combined in cis with the pathogenic p.Arg40His replacement. Structural analysis predicted that the minor allele of the p.Gln270Arg polymorphism would serve to stabilize the OTC wild-type protein, thereby corroborating the results of the experimental assays. Our findings demonstrate the potential importance of cis-interactions between common polymorphic variants and pathogenic missense mutations and illustrate how standing genetic variation can modulate protein function.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase , Ornitina Carbamoiltransferase , Alelos , Humanos , Mutação de Sentido Incorreto , Ornitina Carbamoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Polimorfismo Genético
17.
J Inherit Metab Dis ; 44(3): 618-628, 2021 05.
Artigo em Inglês | MEDLINE | ID: mdl-33336822

RESUMO

Ornithine transcarbamylase deficiency (OTCD) is a metabolic and genetic disease caused by dysfunction of the hepatocytic urea cycle. To develop new drugs or therapies for OTCD, it is ideal to use models that are more closely related to human metabolism and pathology. Primary human hepatocytes (HHs) isolated from two patients (a 6-month-old boy and a 5-year-old girl) and a healthy donor were transplanted into host mice (hemi-, hetero-OTCD mice, and control mice, respectively). HHs were isolated from these mice and used for serial transplantation into the next host mouse or for in vitro experiments. Histological, biochemical, and enzyme activity analyses were performed. Cultured HHs were treated with ammonium chloride or therapeutic drugs. Replacement rates exceeded 80% after serial transplantation in both OTCD mice. These highly humanized OTCD mice showed characteristics similar to OTCD patients that included increased blood ammonia levels and urine orotic acid levels enhanced by allopurinol. Hemi-OTCD mice showed defects in OTC expression and significantly low enzymatic activities, while hetero-OTCD mice showed residual OTC expression and activities. A reduction in ammonium metabolism was observed in cultured HHs from OTCD mice, and treatment with the therapeutic drug reduced the ammonia levels in the culture medium. In conclusion, we established in vivo OTC mouse models with hemi- and hetero-patient HHs. HHs isolated from the mice were useful as an in vitro model of OTCD. These OTC models could be a source of valuable patient-derived hepatocytes that would enable large scale and reproducible experiments using the same donor.


Assuntos
Hepatócitos/transplante , Doença da Deficiência de Ornitina Carbomoiltransferase/terapia , Ornitina Carbamoiltransferase/genética , Amônia/sangue , Animais , Pré-Escolar , Modelos Animais de Doenças , Feminino , Regulação da Expressão Gênica , Hepatócitos/química , Hepatócitos/citologia , Humanos , Lactente , Masculino , Camundongos , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Ácido Orótico/urina
18.
J Pediatr Gastroenterol Nutr ; 71(2): 208-210, 2020 08.
Artigo em Inglês | MEDLINE | ID: mdl-32265410

RESUMO

Ornithine transcarbamylase deficiency (OTCD) is the most common of the urea cycle disorders and follows an X-linked inheritance pattern. The classical form in male infants causes vomiting and lethargy in the neonatal period; if untreated the severe hyperammonaemia can cause acute neurotoxic complications and permanent disability. OTCD may also occur in heterozygote female individuals, though the manifestations are variable. We report 2 cases of female paediatric patients with OTCD, who presented with acute liver failure. Both patients had limited oral intake at the time of presentation, causing an absence of orotic aciduria, which delayed the diagnosis. These cases demonstrate the need to consider urea cycle disorders in children presenting with acute liver failure, and that repeating the urine metabolic screen at the time of an unrestricted diet is warranted if there is a high clinical suspicion.


Assuntos
Hiperamonemia , Falência Hepática Aguda , Doença da Deficiência de Ornitina Carbomoiltransferase , Criança , Feminino , Heterozigoto , Humanos , Hiperamonemia/diagnóstico , Hiperamonemia/etiologia , Lactente , Recém-Nascido , Falência Hepática Aguda/diagnóstico , Falência Hepática Aguda/etiologia , Doença da Deficiência de Ornitina Carbomoiltransferase/complicações , Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética
19.
Int J Mol Sci ; 21(22)2020 Nov 19.
Artigo em Inglês | MEDLINE | ID: mdl-33228018

RESUMO

OTC splicing mutations are generally associated with the severest and early disease onset of ornithine transcarbamylase deficiency (OTCD), the most common urea cycle disorder. Noticeably, splicing defects can be rescued by spliceosomal U1snRNA variants, which showed their efficacy in cellular and animal models. Here, we challenged an U1snRNA variant in the OTCD mouse model (spf/ash) carrying the mutation c.386G > A (p.R129H), also reported in OTCD patients. It is known that the R129H change does not impair protein function but affects pre-mRNA splicing since it is located within the 5' splice site. Through in vitro studies, we identified an Exon Specific U1snRNA (ExSpeU1O3) that targets an intronic region downstream of the defective exon 4 and rescues exon inclusion. The adeno-associated virus (AAV8)-mediated delivery of the ExSpeU1O3 to mouse hepatocytes, although in the presence of a modest transduction efficiency, led to increased levels of correct OTC transcripts (from 6.1 ± 1.4% to 17.2 ± 4.5%, p = 0.0033). Consistently, this resulted in increased liver expression of OTC protein, as demonstrated by Western blotting (~3 fold increase) and immunostaining. Altogether data provide the early proof-of-principle of the efficacy of ExSpeU1 in the spf/ash mouse model and encourage further studies to assess the potential of RNA therapeutics for OTCD caused by aberrant splicing.


Assuntos
Dependovirus/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Doença da Deficiência de Ornitina Carbomoiltransferase/terapia , Ornitina Carbamoiltransferase/genética , Splicing de RNA , RNA Nuclear Pequeno/genética , Animais , Sequência de Bases , Dependovirus/metabolismo , Modelos Animais de Doenças , Éxons , Terapia Genética/métodos , Vetores Genéticos/química , Vetores Genéticos/metabolismo , Humanos , Íntrons , Fígado/enzimologia , Fígado/patologia , Masculino , Camundongos , Camundongos Transgênicos , Mutação , Ornitina Carbamoiltransferase/metabolismo , Doença da Deficiência de Ornitina Carbomoiltransferase/enzimologia , Doença da Deficiência de Ornitina Carbomoiltransferase/patologia , Sítios de Splice de RNA , RNA Nuclear Pequeno/metabolismo
20.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 37(2): 106-109, 2020 Feb 10.
Artigo em Zh | MEDLINE | ID: mdl-32034732

RESUMO

OBJECTIVE: To detect genetic variants among 7 pedigrees affected with ornithine transcarbamylase deficiency (OTCD) and provide prenatal diagnosis for them. METHODS: The pedigrees were subjected to targeted next-generation sequencing (NGS) with a gene panel for inherited metabolic diseases. Suspected pathological variants were confirmed by Sanger sequencing of the probands and their family members. Prenatal diagnosis was provided for 4 of the pedigrees. RESULTS: Seven variants of the OTC gene, including c.583G>A (p.Gly195Arg), c.626C>T (p.Ala209Val), c.674C>T(p.Pro225Leu), c.482A>G (p.Asn161Ser), IVS1-2A>G, c.116G>T(p.Gly39Val), c.898delT(p.300Phefs*22), were detected, among which IVS1-2A>G, c.116G>A (p.Gly39Val) and c.898delT (p.300Phefs*22) were unreported previously. Three male fetuses were found to carry hemizygotic variants upon prenatal diagnosis. One female fetus were found to be heterozygous for a variant, and appeared to be normal at birth as well as by newborn screening. CONCLUSION: OTC gene variant is the etiology of OTCD in the 7 pedigrees. Genetic testing of OTC could assist physicians in OTCD diagnosis and provide genetic counseling and prenatal diagnosis for the pedigrees.


Assuntos
Doença da Deficiência de Ornitina Carbomoiltransferase/diagnóstico , Doença da Deficiência de Ornitina Carbomoiltransferase/genética , Feminino , Testes Genéticos , Humanos , Recém-Nascido , Masculino , Mutação , Ornitina Carbamoiltransferase/genética , Linhagem , Gravidez , Diagnóstico Pré-Natal
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