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1.
Front Immunol ; 13: 1041315, 2022.
Article in English | MEDLINE | ID: mdl-36466854

ABSTRACT

Purpose: Receptor-interacting serine/threonine-protein kinase 1 (RIPK1) is an important regulator of necroptosis and inflammatory responses. We present the clinical features, genetic analysis and immune work-up of two patients with infantile-onset inflammatory bowel disease (IBD) resulting from RIPK1 mutations. Methods: Whole exome and Sanger sequencing was performed in two IBD patients. Mass cytometry time of flight (CyTOF) was conducted for in-depth immunophenotyping on one of the patient's peripheral blood mononuclear cells, and compared to control subjects and patients with Crohn's disease. Results: The patients presented with severe colitis and perianal fistulas in the first months of life, without severe/atypical infections. Genetic studies identified pathogenic genetic variants in RIPK1 (Patient 1, A c.1934C>T missense mutation in Exon 11; Patient 2, c.580G>A missense mutation residing in Exon 4). Protein modeling demonstrated that the mutation in Patient 1 displaces a water molecule, potentially disrupting the local environment, and the mutation in Patient 2 may lead to disruption of the packing and conformation of the kinase domain. Immunofluorescence RIPK1 staining in rectal biopsies demonstrated no expression for Patient 1 and minimal expression for Patient 2, compared to controls and patients with active Crohn's disease. Using CyTOF unbiased clustering analysis, we identified peripheral immune dysregulation in one of these patients, characterized by an increase in IFNγ CD8+ T cells along with a decrease in monocytes, dendritic cells and B cells. Moreover, RIPK1-deficient patient's immune cells exhibited decreased IL-6 production in response to lipopolysaccharide (LPS) across multiple cell types including T cells, B cells and innate immune cells. Conclusions: Mutations in RIPK1 should be considered in very young patients presenting with colitis and perianal fistulas. Given RIPK1's role in inflammasome activation, but also in epithelial cells, it is unclear whether IL1 blockade or allogeneic hematopoietic stem cell transplantation can suppress or cure the hyper-inflammatory response in these patients. Additional studies in humans are required to better define the role of RIPK1 in regulating intestinal immune responses, and how treatment can be optimized for patients with RIPK1 deficiency.


Subject(s)
Colitis , Crohn Disease , Fistula , Inflammatory Bowel Diseases , Humans , Crohn Disease/genetics , Leukocytes, Mononuclear , CD8-Positive T-Lymphocytes , Inflammatory Bowel Diseases/genetics , Mutation , Chronic Disease , Receptor-Interacting Protein Serine-Threonine Kinases/genetics
2.
Cancer Inform ; 21: 11769351221127875, 2022.
Article in English | MEDLINE | ID: mdl-36225330

ABSTRACT

Motivation: Prediction of cancer outcome is a major challenge in oncology and is essential for treatment planning. Repositories such as The Cancer Genome Atlas (TCGA) contain vast amounts of data for many types of cancers. Our goal was to create reliable prediction models using TCGA data and validate them using an external dataset. Results: For 16 TCGA cancer type cohorts we have optimized a Random Forest prediction model using parameter grid search followed by a backward feature elimination loop for dimensions reduction. For each feature that was removed, the model was retrained and the area under the curve of the receiver operating characteristic (AUC-ROC) was calculated using test data. Five prediction models gave AUC-ROC bigger than 80%. We used Clinical Proteomic Tumor Analysis Consortium v3 (CPTAC3) data for validation. The most enriched pathways for the top models were those involved in basic functions related to tumorigenesis and organ development. Enrichment for 2 prediction models of the TCGA-KIRP cohort was explored, one with 42 genes (AUC-ROC = 0.86) the other is composed of 300 genes (AUC-ROC = 0.85). The most enriched networks for both models share only 5 network nodes: DMBT1, IL11, HOXB6, TRIB3, PIM1. These genes play a significant role in renal cancer and might be used for prognosis prediction and as candidate therapeutic targets. Availability And Implementation: The prediction models were created and tested using Python SciKit-Learn package. They are freely accessible via a friendly web interface we called surviveAI at https://tinyurl.com/surviveai.

4.
Pediatr Nephrol ; 37(7): 1623-1646, 2022 07.
Article in English | MEDLINE | ID: mdl-34993602

ABSTRACT

BACKGROUND: Genetic kidney diseases contribute a significant portion of kidney diseases in children and young adults. Nephrogenetics is a rapidly evolving subspecialty; however, in the clinical setting, increased use of genetic testing poses implementation challenges. Consequently, we established a national nephrogenetics clinic to apply a multidisciplinary model. METHODS: Patients were referred from different pediatric or adult nephrology units across the country if their primary nephrologist suspected an undiagnosed genetic kidney disease. We determined the diagnostic rate and observed the effect of diagnosis on medical care. We also discuss the requirements of a nephrogenetics clinic in terms of logistics, recommended indications for referral, and building a multidisciplinary team. RESULTS: Over 24 months, genetic evaluation was completed for a total of 74 unrelated probands, with an age range of 10 days to 72 years. The most common phenotypes included congenital anomalies of the kidneys and urinary tract, nephrotic syndrome or unexplained proteinuria, nephrocalcinosis/nephrolithiasis, tubulopathies, and unexplained kidney failure. Over 80% of patients were referred due to clinical suspicion of an undetermined underlying genetic diagnosis. A molecular diagnosis was reached in 42/74 probands, yielding a diagnostic rate of 57%. Of these, over 71% of diagnoses were made via next generation sequencing (gene panel or exome sequencing). CONCLUSIONS: We identified a substantial fraction of genetic kidney etiologies among previously undiagnosed individuals which influenced subsequent clinical management. Our results support that nephrogenetics, a rapidly evolving field, may benefit from well-defined multidisciplinary co-management administered by a designated team of nephrologist, geneticist, and bioinformatician. A higher resolution version of the Graphical abstract is available as Supplementary information.


Subject(s)
Genetic Testing , Kidney Diseases , Child , Humans , Kidney Diseases/genetics , Phenotype , Referral and Consultation , Exome Sequencing/methods
5.
Nat Commun ; 12(1): 7185, 2021 12 10.
Article in English | MEDLINE | ID: mdl-34893620

ABSTRACT

The prevalent m6Am mRNA cap modification was recently identified as a valid target for removal by the human obesity gene FTO along with the previously established m6A mRNA modification. However, the deposition and dynamics of m6Am in regulating obesity are unknown. Here, we investigate the liver m6A/m methylomes in mice fed on a high fat Western-diet and in ob/ob mice. We find that FTO levels are elevated in fat mice, and that genes which lost m6Am marking under obesity are overly downregulated, including the two fatty-acid-binding proteins FABP2, and FABP5. Furthermore, the cellular perturbation of FTO correspondingly affect protein levels of its targets. Notably, generally m6Am- but not m6A-methylated genes, are found to be highly enriched in metabolic processes. Finally, we deplete all m6A background via Mettl3 knockout, and unequivocally uncover the association of m6Am methylation with increased mRNA stability, translation efficiency, and higher protein expression. Together, these results strongly implicate a dynamic role for m6Am in obesity-related translation regulation.


Subject(s)
Adenosine/analogs & derivatives , Adenosine/metabolism , Obesity/metabolism , Alpha-Ketoglutarate-Dependent Dioxygenase FTO/metabolism , Animals , Diet, Western , Epigenomics , Fatty Acid-Binding Proteins/metabolism , Male , Methylation , Mice , Mice, Inbred C57BL , Neoplasm Proteins , RNA Stability , RNA, Messenger/metabolism
6.
Sci Rep ; 11(1): 19099, 2021 09 27.
Article in English | MEDLINE | ID: mdl-34580403

ABSTRACT

Exome sequencing (ES) is an important diagnostic tool for individuals with neurodevelopmental disorders (NDD) and/or multiple congenital anomalies (MCA). However, the cost of ES limits the test's accessibility for many patients. We evaluated the yield of publicly funded clinical ES, performed at a tertiary center in Israel, over a 3-year period (2018-2020). Probands presented with (1) moderate-to-profound global developmental delay (GDD)/intellectual disability (ID); or (2) mild GDD/ID with epilepsy or congenital anomaly; and/or (3) MCA. Subjects with normal chromosomal microarray analysis who met inclusion criteria were included, totaling 280 consecutive cases. Trio ES (proband and parents) was the default option. In 252 cases (90.0%), indication of NDD was noted. Most probands were males (62.9%), and their mean age at ES submission was 9.3 years (range 1 month to 51 years). Molecular diagnosis was reached in 109 probands (38.9%), mainly due to de novo variants (91/109, 83.5%). Disease-causing variants were identified in 92 genes, 15 of which were implicated in more than a single case. Male sex, families with multiple-affected members and premature birth were significantly associated with lower ES yield (p < 0.05). Other factors, including MCA and coexistence of epilepsy, autism spectrum disorder, microcephaly or abnormal brain magnetic resonance imaging findings, were not associated with the yield. To conclude, our findings support the utility of clinical ES in a real-world setting, as part of a publicly funded genetic workup for individuals with GDD/ID and/or MCA.


Subject(s)
Abnormalities, Multiple/diagnosis , Exome Sequencing/economics , Financing, Government , Genetic Testing/economics , Neurodevelopmental Disorders/diagnosis , Abnormalities, Multiple/economics , Abnormalities, Multiple/genetics , Adolescent , Adult , Child , Child, Preschool , Cost-Benefit Analysis , Feasibility Studies , Female , Genetic Counseling/economics , Genetic Counseling/methods , Genetic Counseling/statistics & numerical data , Genetic Testing/methods , Genetic Testing/statistics & numerical data , Humans , Infant , Infant, Newborn , Israel , Male , Maternal Age , Neurodevelopmental Disorders/economics , Neurodevelopmental Disorders/genetics , Paternal Age , Pregnancy , Prenatal Diagnosis/economics , Prenatal Diagnosis/methods , Program Evaluation , Retrospective Studies , Tertiary Care Centers/economics , Tertiary Care Centers/statistics & numerical data , Exome Sequencing/statistics & numerical data , Young Adult
7.
PLoS One ; 16(2): e0247128, 2021.
Article in English | MEDLINE | ID: mdl-33630927

ABSTRACT

Human coronaviruses (HCoVs) cause mild to severe respiratory infection. Most of the common cold illnesses are caused by one of four HCoVs, namely HCoV-229E, HCoV-NL63, HCoV-HKU1 and HCoV-OC43. Several studies have applied global transcriptomic methods to understand host responses to HCoV infection, with most studies focusing on the pandemic severe acute respiratory syndrome coronavirus (SARS-CoV), Middle East respiratory syndrome CoV (MERS-CoV) and the newly emerging SARS-CoV-2. In this study, Next Generation Sequencing was used to gain new insights into cellular transcriptomic changes elicited by alphacoronavirus HCoV-229E. HCoV-229E-infected MRC-5 cells showed marked downregulation of superpathway of cholesterol biosynthesis and eIF2 signaling pathways. Moreover, upregulation of cyclins, cell cycle control of chromosomal replication, and the role of BRCA1 in DNA damage response, alongside downregulation of the cell cycle G1/S checkpoint, suggest that HCoV-229E may favors S phase for viral infection. Intriguingly, a significant portion of key factors of cell innate immunity, interferon-stimulated genes (ISGs) and other transcripts of early antiviral response genes were downregulated early in HCoV-229E infection. On the other hand, early upregulation of the antiviral response factor Apolipoprotein B mRNA editing enzyme catalytic subunit 3B (APOBEC3B) was observed. APOBEC3B cytidine deaminase signature (C-to-T) was previously observed in genomic analysis of SARS-CoV-2 but not HCoV-229E. Higher levels of C-to-T mutations were found in countries with high mortality rates caused by SARS-CoV-2. APOBEC activity could be a marker for new emerging CoVs. This study will enhance our understanding of commonly circulating HCoVs and hopefully provide critical information about still-emerging coronaviruses.


Subject(s)
Coronavirus 229E, Human/physiology , Coronavirus Infections/genetics , Transcriptome , Cell Line , High-Throughput Nucleotide Sequencing , Host-Pathogen Interactions , Humans
8.
Blood ; 137(7): 994-999, 2021 02 18.
Article in English | MEDLINE | ID: mdl-32915956
9.
Breast Cancer Res ; 22(1): 28, 2020 03 12.
Article in English | MEDLINE | ID: mdl-32164744

ABSTRACT

After the publication of the original article [1], we were notified the upper panel of the Fig. 1, where the patients' codes are listed, was cropped by mistake so the patients 1-8 are repeated.

10.
Am J Med Genet A ; 182(5): 987-993, 2020 05.
Article in English | MEDLINE | ID: mdl-32144877

ABSTRACT

The genetic basis of congenital heart malformations associated with disruption of left-right (L-R) asymmetry is broad and heterogenous, with variants in over 25 genes implicated thus far. Of these, deleterious variants in the Growth/Differentiation Factor 1 (GDF1) gene have been shown to cause heterotaxy with varied complex heart malformations of left-right patterning, in 23 individuals reported to date, either in monoallelic or biallelic state. We report three unrelated individuals exhibiting right isomerism with congenital heart defects, each originating from a consanguineous kindred of Arab-Muslim descent. Using whole exome sequencing, a shared novel homozygous truncating c.608G > A (p.W203*) variant in the GDF1 gene was revealed as the molecular basis of their disease. Subsequently, targeted sequencing of this variant showed full segregation with the disease in these families, with a total of over 15 reportedly affected individuals, enabling genetic counseling, prenatal diagnosis, and planning of future pregnancies. Our findings further confirm the association of biallelic GDF1 variants, heterotaxy and congenital heart defects of left-right patterning, and expand the previously described phenotypic spectrum and mutational profile. Moreover, we suggest targeted screening for the p.W203* variant in relevant clinical circumstances.


Subject(s)
Genetic Association Studies , Genetic Predisposition to Disease , Growth Differentiation Factor 1/genetics , Heart Defects, Congenital/genetics , Arabs/genetics , Child, Preschool , Consanguinity , Female , Heart Defects, Congenital/physiopathology , Homozygote , Humans , Infant , Isomerism , Male , Mutation/genetics , Pregnancy , Exome Sequencing
11.
Clin Immunol ; 214: 108376, 2020 05.
Article in English | MEDLINE | ID: mdl-32135276

ABSTRACT

Primary immunodeficiencies (PIDs) are a heterogeneous group of monogenic inborn errors of immunity. The genetic causes of these diseases can be identified using whole exome sequencing (WES). Here, DNA samples from 106 patients with a clinical suspicion of PID were subjected to WES in order to test the diagnostic yield of this test in a highly consanguineous community. A likely genetic diagnosis was achieved in 70% of patients. Several factors were considered to possibly influence the diagnostic rate of WES among our cohort including early age, presence of consanguinity, family history suggestive of PID, the number of family members who underwent WES and the clinical phenotype of the patient. The highest diagnostic rate was in patients with combined immunodeficiency or with a syndrome. Notably, WES findings altered the clinical management in 39% (41/106) of patients in our cohort. Our findings support the use of WES as an important diagnostic tool in patients with suspected PID, especially in highly consanguineous communities.


Subject(s)
Exome Sequencing , Mutation , Primary Immunodeficiency Diseases/diagnosis , Adolescent , Adult , Autoimmune Diseases/epidemiology , Autoimmune Diseases/genetics , Child , Child, Preschool , Clinical Decision-Making , Consanguinity , Disease Management , Female , Genotype , Hematopoietic Stem Cell Transplantation , Humans , Infant , Infant, Newborn , Inflammatory Bowel Diseases/epidemiology , Inflammatory Bowel Diseases/genetics , Israel/epidemiology , Male , Primary Immunodeficiency Diseases/epidemiology , Primary Immunodeficiency Diseases/genetics , Primary Immunodeficiency Diseases/therapy , Young Adult
12.
Breast Cancer Res ; 22(1): 16, 2020 02 03.
Article in English | MEDLINE | ID: mdl-32014063

ABSTRACT

BACKGROUND: Emerging mutations in the ESR1 gene that encodes for the estrogen receptor (ER) are associated with resistance to endocrine therapy. ESR1 mutations rarely exist in primary tumors (~ 1%) but are relatively common (10-50%) in metastatic, endocrine therapy-resistant cancers and are associated with a shorter progression-free survival. Little is known about the incidence and clinical implication of these mutations in early recurrence events, such as local recurrences or newly diagnosed metastatic disease. METHODS: We collected 130 archival tumor samples from 103 breast cancer patients treated with endocrine therapy prior to their local/metastatic recurrence. The cohort consisted of 41 patients having at least 1 sample from local/loco-regional recurrence and 62 patients with metastatic disease (of whom 41 newly diagnosed and 28 with advanced disease). The 5 most common ESR1 hotspot mutations (D538G, L536R, Y537S/N/C) were analyzed either by targeted sequencing or by droplet digital PCR. Progression-free survival (PFS), disease-free survival (DFS), and distant recurrence-free survival (DRFS) were statistically tested by Kaplan-Meier analysis. RESULTS: The prevalence of ESR1 mutations was 5/41 (12%) in newly diagnosed metastatic patients and 5/28 (18%) for advanced metastases, detected at allele frequency > 1%. All mutations in advanced metastases were detected in patients previously treated with both tamoxifen (TAM) and aromatase inhibitors (AI). However, in newly diagnosed metastatic patients, 4/5 mutations occurred in patients treated with TAM alone. PFS on AI treatment in metastatic patients was significantly shorter for ESR1 mutation carriers (p = 0.017). In the local recurrence cohort, ESR1 mutations were identified in 15/41 (36%) patients but only 4/41 (10%) were detected at allele frequency > 1%. Again, most mutations (3/4) were detected under TAM monotherapy. Notably, 1 patient developed ESR1 mutation while on neoadjuvant endocrine therapy. DFS and DRFS were significantly shorter (p = 0.04 and p = 0.017, respectively) in patients that had ESR1 mutations (> 1%) in their loco-regional recurrence tumor. CONCLUSIONS: Clinically relevant ESR1 mutations are prevalent in newly diagnosed metastatic and local recurrence of endocrine-treated breast cancer. Since local recurrences are amenable to curative therapy, these mutations may inform the selection of subsequent endocrine therapies.


Subject(s)
Antineoplastic Agents, Hormonal/pharmacology , Breast Neoplasms/mortality , Drug Resistance, Neoplasm , Estrogen Receptor alpha/genetics , Mutation , Neoplasm Recurrence, Local/mortality , Neoplasms, Hormone-Dependent/mortality , Adult , Aged , Aged, 80 and over , Breast Neoplasms/drug therapy , Breast Neoplasms/genetics , Breast Neoplasms/pathology , Female , Humans , Middle Aged , Neoplasm Metastasis , Neoplasm Recurrence, Local/drug therapy , Neoplasm Recurrence, Local/genetics , Neoplasm Recurrence, Local/pathology , Neoplasms, Hormone-Dependent/drug therapy , Neoplasms, Hormone-Dependent/genetics , Neoplasms, Hormone-Dependent/pathology , Survival Rate , Treatment Outcome
13.
Muscle Nerve ; 61(3): 395-400, 2020 03.
Article in English | MEDLINE | ID: mdl-31837156

ABSTRACT

BACKGROUND: Adult-onset hereditary motor neuropathies are caused by mutations in multiple genes. Mutations within the vaccinia-related kinase 1 (VRK1) gene were associated with a wide spectrum of recessively inherited motor neuropathies, characterized by childhood to early adulthood age of onset and an occasionally non-lower motor neuron involvement. METHODS: We describe two patients with adult-onset (aged 48 and 40 years) length-dependent motor neuropathy from unrelated consanguineous families of Moroccan Jewish descent. One also demonstrated mild nocturnal respiratory difficulty and sensory symptoms. Whole-exome sequencing (WES) was performed. RESULTS: A homozygous mutation in VRK1 (c.1160G>A (p.Arg387His)), shared by both patients, was identified. This rare mutation segregated with the disease in the two families, and was absent in 120 controls of Jewish Moroccan origin. CONCLUSIONS: Our findings support VRK1 as a causative gene for adult-onset distal hereditary motor neuropathy, and indicate its relevance for evaluation of individuals with similar motor impairment.


Subject(s)
Intracellular Signaling Peptides and Proteins/genetics , Muscular Atrophy, Spinal/genetics , Protein Serine-Threonine Kinases/genetics , Homozygote , Humans , Male , Middle Aged , Mutation, Missense , Pedigree
14.
Hum Mutat ; 41(2): 476-486, 2020 02.
Article in English | MEDLINE | ID: mdl-31692205

ABSTRACT

We describe the underlying genetic cause of a novel Rett-like phenotype accompanied by areflexia in three methyl-CpG-binding protein 2-negative individuals from two unrelated families. Discovery analysis was performed using whole-exome sequencing followed by Sanger sequencing for validation and segregation. Functional studies using short-hairpin RNA for targeted gene knockdown were implemented by the transfection of mouse cultured primary hippocampal neurons and in vivo by in utero electroporation. All patients shared a common homozygous frameshift mutation (chr9:135073515, c.376dupT, p.(Ser126PhefsTer241)) in netrin-G2 (NTNG2, NM_032536.3) with predicted nonsense-mediated decay. The mutation fully segregated with the disease in both families. The knockdown of either NTNG2 or the related netrin-G family member NTNG1 resulted in severe neurodevelopmental defects of neuronal morphology and migration. While NTNG1 has previously been linked to a Rett syndrome (RTT)-like phenotype, this is the first description of a RTT-like phenotype caused by NTNG2 mutation. Netrin-G proteins have been shown to be required for proper axonal guidance during early brain development and involved in N-methyl- d-aspartate-mediated synaptic transmission. Our results demonstrating that knockdown of murine NTNG2 causes severe impairments of neuronal morphology and cortical migration are consistent with those of RTT animal models and the shared neurodevelopmental phenotypes between the individuals described here and typical RTT patients.


Subject(s)
Charcot-Marie-Tooth Disease/diagnosis , Charcot-Marie-Tooth Disease/genetics , GPI-Linked Proteins/genetics , Genetic Association Studies , Genetic Predisposition to Disease , Netrins/genetics , Rett Syndrome/diagnosis , Rett Syndrome/genetics , Animals , Child , Child, Preschool , Consanguinity , Disease Models, Animal , Facies , Female , Genetic Association Studies/methods , Humans , Male , Mice , Neurons/metabolism , Phenotype , Sequence Analysis, DNA , Exome Sequencing
15.
Mol Genet Genomic Med ; 7(6): e665, 2019 06.
Article in English | MEDLINE | ID: mdl-31020800

ABSTRACT

BACKGROUND: Over 500 epigenetic regulators have been identified throughout the human genome. Of these, approximately 30 chromatin modifiers have been implicated thus far in human disease. Recently, variants in BRPF1, encoding a chromatin reader, have been associated with a previously unrecognized autosomal dominant syndrome manifesting with intellectual disability (ID), hypotonia, dysmorphic facial features, ptosis, and/or blepharophimosis in 22 individuals. PATIENTS AND METHODS: We report a multiply affected nonconsanguineous family of mixed Jewish descent who presented due to ID in three male siblings. Molecular analysis of the family was pursued using whole exome sequencing (WES) and subsequent Sanger sequencing. RESULTS: Whole exome sequencing analysis brought to the identification of a novel heterozygous truncating mutation (c.556C>T, p.Q186*) in the BRPF1 gene in the affected siblings and their mother. The four affected individuals showed varying degrees of intellectual disability, distinct facial features including downslanted palpebral fissures, ptosis, and/or blepharophimosis. Their clinical characteristics are discussed in the context of previously reported patients with the BRPF1-related phenotype. CONCLUSION: The reported family contributes to the current knowledge regarding this unique and newly recognized genetic disorder, and further implicates the role of BRPF1 in human brain development.


Subject(s)
Adaptor Proteins, Signal Transducing/genetics , DNA-Binding Proteins/genetics , Intellectual Disability/genetics , Adaptor Proteins, Signal Transducing/metabolism , Adult , Blepharophimosis/genetics , Blepharoptosis/genetics , DNA-Binding Proteins/metabolism , Exome , Family , Female , Humans , Male , Muscle Hypotonia/genetics , Musculoskeletal Abnormalities/genetics , Mutation , Nuclear Proteins/genetics , Pedigree , Exome Sequencing
16.
Eur J Med Genet ; 62(3): 167-171, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30006055

ABSTRACT

Diaphanospondylodysostosis (DSD) is a rare autosomal recessive skeletal disorder, characterized mainly by ossification defects in vertebrae, thorax malformations, renal cystic dysplasia and usually death in the perinatal period. DSD is caused by mutations in the bone morphogenetic protein-binding endothelial regulator (BMPER) gene. We describe the prenatal findings of a non-consanguineous Jewish couple (shared Balkan origin), with three affected fetuses that presented with malformations in the spine and chest, reduced ossification of the skull and spine, horseshoe kidney and increased nuchal translucency. The unique combination of these ultrasound (US) features raised the possibility of DSD, which was confirmed by whole exome sequencing (WES) performed on a single fetal DNA and familial segregation. In the three fetuses, a novel homozygous mutation in BMPER (c.410T > A; p.Val137Asp) was found. This mutation, which segregated in the family, was not found in 65 controls of Jewish Balkan origin, and in several large databases. Taken together, the combination of a detailed prenatal US examination and WES may be highly effective in confirming the diagnosis of a rare genetic disease, in this case DSD.


Subject(s)
Carrier Proteins/genetics , Craniofacial Abnormalities/genetics , Dysostoses/genetics , Ribs/abnormalities , Spine/abnormalities , Craniofacial Abnormalities/diagnostic imaging , Dysostoses/diagnostic imaging , Homozygote , Mutation, Missense , Ribs/diagnostic imaging , Spine/diagnostic imaging , Ultrasonography, Prenatal
18.
Nat Commun ; 8(1): 1440, 2017 11 13.
Article in English | MEDLINE | ID: mdl-29129909

ABSTRACT

Adenosine deaminase acting on RNA 1 (ADAR1) is the master RNA editor, catalyzing the deamination of adenosine to inosine. RNA editing is vital for preventing abnormal activation of cytosolic nucleic acid sensing pathways by self-double-stranded RNAs. Here we determine, by parallel analysis of RNA secondary structure sequencing (PARS-seq), the global RNA secondary structure changes in ADAR1 deficient cells. Surprisingly, ADAR1 silencing resulted in a lower global double-stranded to single-stranded RNA ratio, suggesting that A-to-I editing can stabilize a large subset of imperfect RNA duplexes. The duplexes destabilized by editing are composed of vastly complementary inverted Alus found in untranslated regions of genes performing vital biological processes, including housekeeping functions and type-I interferon responses. They are predominantly cytoplasmic and generally demonstrate higher ribosomal occupancy. Our findings imply that the editing effect on RNA secondary structure is context dependent and underline the intricate regulatory role of ADAR1 on global RNA secondary structure.


Subject(s)
Adenosine Deaminase/genetics , Nucleic Acid Conformation , RNA Editing/genetics , RNA, Double-Stranded/genetics , RNA, Messenger/genetics , RNA-Binding Proteins/genetics , Adenosine/metabolism , Base Composition/genetics , Cell Line, Tumor , Deamination , Hep G2 Cells , Humans , Inosine/metabolism , Protein Biosynthesis/genetics , RNA Interference , RNA, Small Interfering/genetics , Transcriptome/physiology
19.
Nat Methods ; 14(7): 695-698, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28504680

ABSTRACT

The ribose of RNA nucleotides can be 2'-O-methylated (Nm). Despite advances in high-throughput detection, the inert chemical nature of Nm still limits sensitivity and precludes mapping in mRNA. We leveraged the differential reactivity of 2'-O-methylated and 2'-hydroxylated nucleosides to periodate oxidation to develop Nm-seq, a sensitive method for transcriptome-wide mapping of Nm with base precision. Nm-seq uncovered thousands of Nm sites in human mRNA with features suggesting functional roles.


Subject(s)
RNA, Messenger/genetics , Base Sequence , HeLa Cells , Humans , Metagenomics , Methylation , Nucleic Acid Conformation , RNA, Messenger/chemistry , RNA, Ribosomal/chemistry , RNA, Ribosomal/genetics , Ribose/chemistry , Transcriptome
20.
Brain ; 140(3): 568-581, 2017 03 01.
Article in English | MEDLINE | ID: mdl-28364549

ABSTRACT

Cellular distribution and dynamics of mitochondria are regulated by several motor proteins and a microtubule network. In neurons, mitochondrial trafficking is crucial because of high energy needs and calcium ion buffering along axons to synapses during neurotransmission. The trafficking kinesin proteins (TRAKs) are well characterized for their role in lysosomal and mitochondrial trafficking in cells, especially neurons. Using whole exome sequencing, we identified homozygous truncating variants in TRAK1 (NM_001042646:c.287-2A > C), in six lethal encephalopathic patients from three unrelated families. The pathogenic variant results in aberrant splicing and significantly reduced gene expression at the RNA and protein levels. In comparison with normal cells, TRAK1-deficient fibroblasts showed irregular mitochondrial distribution, altered mitochondrial motility, reduced mitochondrial membrane potential, and diminished mitochondrial respiration. This study confirms the role of TRAK1 in mitochondrial dynamics and constitutes the first report of this gene in association with a severe neurodevelopmental disorder.


Subject(s)
Adaptor Proteins, Vesicular Transport/genetics , Adaptor Proteins, Vesicular Transport/metabolism , Brain Diseases/genetics , Brain Diseases/pathology , Mitochondria/metabolism , Mitochondrial Dynamics/genetics , Brain Diseases/diagnostic imaging , Brain Diseases/mortality , Cells, Cultured , Child, Preschool , Consanguinity , Family Health , Female , Fibroblasts/pathology , Fibroblasts/ultrastructure , Genetic Association Studies , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Humans , Infant , Magnetic Resonance Imaging , Male , Oxygen Consumption/genetics , Protein Transport/genetics , Transfection
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