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1.
Cytogenet Genome Res ; 163(5-6): 290-294, 2023.
Article in English | MEDLINE | ID: mdl-38128492

ABSTRACT

INTRODUCTION: Bicuspid aortic valve is the most common congenital cardiac malformation (CCM) in adults and is 30-50 times more frequent in Turner syndrome (TS). We hypothesize that both X and Y chromosome dosages contribute to the prevalence of CCM in TS. The recognition of genotype-phenotype correlations may improve risk stratification of patients with 45,X karyotypes who have cryptic Y chromosome mosaicism. METHODS: Utilizing data and samples from the UTHealth Turner Syndrome Research Registry, we correlated Y chromosome DNA identified by multiplex quantitative PCR and SNP microarrays with the presence of congenital heart lesions. RESULTS: We identified Y chromosome DNA in more than 10% of registry participants, including 2 participants who had no detectable Y DNA by karyotype or SNP microarray. CONCLUSIONS: There were no significant correlations between the presence of Y DNA and CCM.


Subject(s)
Chromosomes, Human, Y , Turner Syndrome , Humans , Turner Syndrome/genetics , Turner Syndrome/complications , Female , Chromosomes, Human, Y/genetics , Adult , Polymorphism, Single Nucleotide , Chromosomes, Human, X/genetics , Mosaicism , Adolescent , Heart Defects, Congenital/genetics , Karyotype , Bicuspid Aortic Valve Disease/genetics , Bicuspid Aortic Valve Disease/complications , Karyotyping , Child , Cohort Studies , Genetic Association Studies , Young Adult , Aortic Valve/abnormalities
2.
Genet Med ; 25(7): 100845, 2023 Jul.
Article in English | MEDLINE | ID: mdl-37061874

ABSTRACT

PURPOSE: Pregnancies affected by maternal or fetal achondroplasia present unique challenges. The optimal route of delivery in fetuses with achondroplasia has not been established. Our objective was to determine whether the route of delivery affects postnatal achondroplasia-related surgical burden. METHODS: We conducted a secondary analysis of Achondroplasia Natural History Study (CLARITY), which is a multicenter natural history cohort study of patients with achondroplasia. Achondroplasia-related surgical morbidity, which we defined as the need for one or more postnatal achondroplasia-related surgeries, was assessed in relation to the route of delivery and whether the mother also had achondroplasia. Rate of each individual surgery type (otolaryngology, brain, foramen magnum, spine, and extremity) was also assessed in relation to the route of delivery. RESULTS: Eight hundred fifty-seven patients with achondroplasia with known route of delivery and known maternal stature were included. Three hundred sixty (42%) patients were delivered vaginally, and 497 (58%) patients were delivered by a cesarean delivery. There was no difference in the odds of requiring any postnatal achondroplasia-related surgery in those with achondroplasia who were delivered vaginally compared with those delivered by cesarean birth (odds ratio 0.95, 95% CI = 0.68-1.34, P = .80). No difference was present in the odds of requiring any postnatal achondroplasia-related surgery when route of delivery was compared for fetuses born to 761 average stature mothers (odds ratio 1.05, 95% CI = 0.74-1.51, P = .78). There was also no difference in the odds of requiring each of the individual achondroplasia-related surgeries by route of delivery, including cervicomedullary decompression. CONCLUSION: Our study suggests that it is reasonable for average stature patients carrying a fetus with achondroplasia to undergo a trial of labor in the absence of routine obstetric contraindications.


Subject(s)
Achondroplasia , Cesarean Section , Pregnancy , Female , Humans , Cohort Studies , Achondroplasia/surgery , Achondroplasia/complications , Fetus , Morbidity , Retrospective Studies
3.
J Neurophysiol ; 128(1): 40-61, 2022 07 01.
Article in English | MEDLINE | ID: mdl-35583973

ABSTRACT

We identified six novel de novo human KCNQ5 variants in children with motor/language delay, intellectual disability (ID), and/or epilepsy by whole exome sequencing. These variants, comprising two nonsense and four missense alterations, were functionally characterized by electrophysiology in HEK293/CHO cells, together with four previously reported KCNQ5 missense variants (Lehman A, Thouta S, Mancini GM, Naidu S, van Slegtenhorst M, McWalter K, Person R, Mwenifumbo J, Salvarinova R; CAUSES Study; EPGEN Study; Guella I, McKenzie MB, Datta A, Connolly MB, Kalkhoran SM, Poburko D, Friedman JM, Farrer MJ, Demos M, Desai S, Claydon T. Am J Hum Genet 101: 65-74, 2017). Surprisingly, all eight missense variants resulted in gain of function (GOF) due to hyperpolarized voltage dependence of activation or slowed deactivation kinetics, whereas the two nonsense variants were confirmed to be loss of function (LOF). One severe GOF allele (P369T) was tested and found to extend a dominant GOF effect to heteromeric KCNQ5/3 channels. Clinical presentations were associated with altered KCNQ5 channel gating: milder presentations with LOF or smaller GOF shifts in voltage dependence [change in voltage at half-maximal conduction (ΔV50) = ∼-15 mV] and severe presentations with larger GOF shifts in voltage dependence (ΔV50 = ∼-30 mV). To examine LOF pathogenicity, two Kcnq5 LOF mouse lines were created with CRISPR/Cas9. Both lines exhibited handling- and thermal-induced seizures and abnormal cortical EEGs consistent with epileptiform activity. Our study thus provides evidence for in vivo KCNQ5 LOF pathogenicity and strengthens the contribution of both LOF and GOF mutations to global pediatric neurological impairment, including ID/epilepsy.NEW & NOTEWORTHY Six novel de novo human KCNQ5 variants were identified from children with neurodevelopmental delay, intellectual disability, and/or epilepsy. Expression of these variants along with four previously reported KCNQ5 variants from a similar cohort revealed GOF potassium channels, negatively shifted in V50 of activation and/or delayed deactivation kinetics. GOF is extended to KCNQ5/3 heteromeric channels, making these the predominant channels affected in heterozygous de novo patients. Kcnq5 LOF mice exhibited seizures, consistent with in vivo pathogenicity.


Subject(s)
Epilepsy , Intellectual Disability , Animals , Child , Cricetinae , Cricetulus , Epilepsy/genetics , HEK293 Cells , Humans , Intellectual Disability/genetics , KCNQ Potassium Channels , Mice , Mutation, Missense , Seizures
4.
Cytogenet Genome Res ; 162(11-12): 599-608, 2022.
Article in English | MEDLINE | ID: mdl-37231787

ABSTRACT

Copy number variants (CNVs) are a common finding in the clinical setting and contribute to both genetic variation and disease. Studies have described the accumulation of multiple CNVs as a disease-modifying mechanism. While it has been described how additional CNVs may play a role in phenotype, in which ways and to what extent sex chromosomes are involved in dual CNV scenario has not been fully defined. To describe the distribution of CNVs, a secondary data analysis using the DECIPHER database on 2,273 de-identified individuals with two CNVs was performed. CNVs were designated larger and secondary based on size and characteristics. We found that the X chromosome was observed to be the most common chromosome involved in secondary CNVs. Further analysis showed CNVs on the sex chromosome have significant differences compared to autosomes when comparing median size (p = 0.013), pathogenicity groups (p < 0.001), and variant classification (p = 0.001). Lastly, we identified chromosome combinations for larger and secondary CNVs and observed the plurality of secondary CNVs fell in the same chromosome as the larger. The observations of this study provide additional information on sex chromosome CNV involvement in a variety of indications.

5.
Am J Med Genet A ; 188(6): 1688-1692, 2022 06.
Article in English | MEDLINE | ID: mdl-35146903

ABSTRACT

NEXMIF pathogenic variants have been known to produce a wide spectrum of X-linked intellectual disability (ID) in both males and females. Thus far, few individuals from diverse populations have been described with NEXMIF-related disorders. Herein, we report three individuals with NEXMIF pathogenic variants, the first two are the only males of Korean and Vietnamese descent described with this disorder to our knowledge. The last patient is a Hispanic female who harbors the same pathogenic variant as a previously described Caucasian individual, but with differing clinical presentation. These patients present with many classic symptoms of NEXMIF-related disorders including ID, epilepsy, developmental delay, and dysmorphic features. In addition, they have symptoms that have not been thoroughly described in the literature, including allergies with multiple anaphylactic events and hypothyroidism. This report is intended to raise awareness and educate about the clinical signs that may prompt testing for NEXMIF-related disorders.


Subject(s)
Intellectual Disability , Nerve Tissue Proteins , Asian People/genetics , Female , Genes, X-Linked , Humans , Intellectual Disability/diagnosis , Intellectual Disability/genetics , Intellectual Disability/metabolism , Male , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism , Republic of Korea
6.
Am J Med Genet A ; 188(1): 13-23, 2022 01.
Article in English | MEDLINE | ID: mdl-34472185

ABSTRACT

A genetic etiology is identifiable in 20%-30% of patients with congenital heart defects (CHD). Chromosomal microarray analysis (CMA) can detect copy number variants (CNV) associated with CHD. In previous studies, the diagnostic yield of postnatal CMA testing ranged from 4% to 28% in CHD patients. However, incidental pathogenic CNV and variants of unknown significance are often discovered without any known association with CHD. The study objective was to describe the rate of pathogenic CNV associated with neurodevelopmental impairment (NDI) and compare clinical findings in CHD neonates with genetic results. A single-center retrospective review was performed on all consecutive newborns with CHD admitted to a tertiary neonatal intensive care unit from January 2013 to March 2019 (n = 525). CHD phenotypes were classified as per the National Birth Defect Prevention Study. CMA detected pathogenic CNV in 21.3% (61/287) of neonates, and karyotype or fluorescence in situ hybridization detected aneuploidies in an additional 11% of the overall cohort (58/525). Atrioventricular septal defects and conotruncal defects showed the highest diagnostic yield by CMA (28.6% and 27.2%, respectively). Among neonates with pathogenic CNV on CMA, 78.7% (48/61) were associated with NDI. Neonates with pathogenic CNV were smaller in length at birth compared to those with benign CNV or variants of unknown significance (p = 0.005) and were more likely to be discharged with an enteral feeding tube (p = 0.027). CMA can discover genetic variants associated with NDI and are common in neonates with CHD. Genetic testing in the neonatal period can heighten awareness of genetic risk for NDI.


Subject(s)
DNA Copy Number Variations , Heart Defects, Congenital , Chromosome Aberrations , DNA Copy Number Variations/genetics , Female , Heart Defects, Congenital/diagnosis , Heart Defects, Congenital/genetics , Humans , In Situ Hybridization, Fluorescence , Infant, Newborn , Karyotype , Pregnancy , Prenatal Diagnosis/methods
7.
Am J Hum Genet ; 102(3): 487-493, 2018 03 01.
Article in English | MEDLINE | ID: mdl-29478779

ABSTRACT

Emerging evidence from murine studies suggests that mammalian sex determination is the outcome of an imbalance between mutually antagonistic male and female regulatory networks that canalize development down one pathway while actively repressing the other. However, in contrast to testis formation, the gene regulatory pathways governing mammalian ovary development have remained elusive. We performed exome or Sanger sequencing on 79 46,XX SRY-negative individuals with either unexplained virilization or with testicular/ovotesticular disorders/differences of sex development (TDSD/OTDSD). We identified heterozygous frameshift mutations in NR2F2, encoding COUP-TF2, in three children. One carried a c.103_109delGGCGCCC (p.Gly35Argfs∗75) mutation, while two others carried a c.97_103delCCGCCCG (p.Pro33Alafs∗77) mutation. In two of three children the mutation was de novo. All three children presented with congenital heart disease (CHD), one child with congenital diaphragmatic hernia (CDH), and two children with blepharophimosis-ptosis-epicanthus inversus syndrome (BPES). The three children had androgen production, virilization of external genitalia, and biochemical or histological evidence of testicular tissue. We demonstrate a highly significant association between the NR2F2 loss-of-function mutations and this syndromic form of DSD (p = 2.44 × 10-8). We show that COUP-TF2 is highly abundant in a FOXL2-negative stromal cell population of the fetal human ovary. In contrast to the mouse, these data establish COUP-TF2 as a human "pro-ovary" and "anti-testis" sex-determining factor in female gonads. Furthermore, the data presented here provide additional evidence of the emerging importance of nuclear receptors in establishing human ovarian identity and indicate that nuclear receptors may have divergent functions in mouse and human biology.


Subject(s)
46, XX Disorders of Sex Development/genetics , COUP Transcription Factor II/genetics , Loss of Function Mutation/genetics , Testis/abnormalities , Testis/growth & development , Amino Acid Sequence , Base Sequence , COUP Transcription Factor II/chemistry , Child , Female , Forkhead Box Protein L2/metabolism , Frameshift Mutation/genetics , Heterozygote , Humans , Male , Ovary/growth & development , Ovary/metabolism , Phenotype
8.
Genet Med ; 23(8): 1498-1505, 2021 08.
Article in English | MEDLINE | ID: mdl-34006999

ABSTRACT

PURPOSE: Achondroplasia is the most common short stature skeletal dysplasia (1:20,000-30,000), but the risk of adverse health outcomes from cardiovascular diseases, pain, poor function, excess weight, and sleep apnea is unclear. A multicenter retrospective natural history study was conducted to understand medical and surgical practices in achondroplasia. METHODS: Data from patients with achondroplasia evaluated by clinical geneticists at Johns Hopkins University, A.I. duPont Hospital for Children, McGovern Medical School UTHealth, and University of Wisconsin were populated into a REDCap database. All available retrospective medical records of anthropometry (length/height, weight, occipitofrontal circumference), surgery, polysomnography (PSG), and imaging (e.g., X-ray, magnetic resonance imaging) were included. RESULTS: Data from 1,374 patients (48.8% female; mean age 15.4 ± 13.9 years) constitute the primary achondroplasia cohort (PAC) with 496 subjects remaining clinically active and eligible for prospective studies. Within the PAC, 76.0% had a de novo FGFR3 pathologic variant and 1,094 (79.6%) had one or more achondroplasia-related surgeries. There are ≥37,000 anthropometry values, 1,631 PSGs and 10,727 imaging studies. CONCLUSION: This is the largest multicenter achondroplasia natural history study, providing a vast array of medical information for use in caring for these patients. This well-phenotyped cohort is a reference population against which future medical and surgical interventions can be compared.


Subject(s)
Achondroplasia , Osteochondrodysplasias , Achondroplasia/diagnostic imaging , Achondroplasia/epidemiology , Achondroplasia/genetics , Adolescent , Adult , Child , Child, Preschool , Female , Humans , Infant , Male , Polysomnography , Prospective Studies , Retrospective Studies , United States/epidemiology , Young Adult
9.
Genet Med ; 23(2): 374-383, 2021 02.
Article in English | MEDLINE | ID: mdl-33077894

ABSTRACT

PURPOSE: JARID2, located on chromosome 6p22.3, is a regulator of histone methyltransferase complexes that is expressed in human neurons. So far, 13 individuals sharing clinical features including intellectual disability (ID) were reported with de novo heterozygous deletions in 6p22-p24 encompassing the full length JARID2 gene (OMIM 601594). However, all published individuals to date have a deletion of at least one other adjoining gene, making it difficult to determine if JARID2 is the critical gene responsible for the shared features. We aim to confirm JARID2 as a human disease gene and further elucidate the associated clinical phenotype. METHODS: Chromosome microarray analysis, exome sequencing, and an online matching platform (GeneMatcher) were used to identify individuals with single-nucleotide variants or deletions involving JARID2. RESULTS: We report 16 individuals in 15 families with a deletion or single-nucleotide variant in JARID2. Several of these variants are likely to result in haploinsufficiency due to nonsense-mediated messenger RNA (mRNA) decay. All individuals have developmental delay and/or ID and share some overlapping clinical characteristics such as facial features with those who have larger deletions involving JARID2. CONCLUSION: We report that JARID2 haploinsufficiency leads to a clinically distinct neurodevelopmental syndrome, thus establishing gene-disease validity for the purpose of diagnostic reporting.


Subject(s)
Intellectual Disability , Neurodevelopmental Disorders , Haploinsufficiency/genetics , Heterozygote , Humans , Intellectual Disability/diagnosis , Intellectual Disability/genetics , Neurodevelopmental Disorders/diagnosis , Neurodevelopmental Disorders/genetics , Phenotype , Polycomb Repressive Complex 2/genetics , Syndrome , Exome Sequencing
10.
Genet Med ; 23(7): 1234-1245, 2021 07.
Article in English | MEDLINE | ID: mdl-33824499

ABSTRACT

PURPOSE: Proline Rich 12 (PRR12) is a gene of unknown function with suspected DNA-binding activity, expressed in developing mice and human brains. Predicted loss-of-function variants in this gene are extremely rare, indicating high intolerance of haploinsufficiency. METHODS: Three individuals with intellectual disability and iris anomalies and truncating de novo PRR12 variants were described previously. We add 21 individuals with similar PRR12 variants identified via matchmaking platforms, bringing the total number to 24. RESULTS: We observed 12 frameshift, 6 nonsense, 1 splice-site, and 2 missense variants and one patient with a gross deletion involving PRR12. Three individuals had additional genetic findings, possibly confounding the phenotype. All patients had developmental impairment. Variable structural eye defects were observed in 12/24 individuals (50%) including anophthalmia, microphthalmia, colobomas, optic nerve and iris abnormalities. Additional common features included hypotonia (61%), heart defects (52%), growth failure (54%), and kidney anomalies (35%). PrediXcan analysis showed that phecodes most strongly associated with reduced predicted PRR12 expression were enriched for eye- (7/30) and kidney- (4/30) phenotypes, such as wet macular degeneration and chronic kidney disease. CONCLUSION: These findings support PRR12 haploinsufficiency as a cause for a novel disorder with a wide clinical spectrum marked chiefly by neurodevelopmental and eye abnormalities.


Subject(s)
Haploinsufficiency , Intellectual Disability , Animals , Haploinsufficiency/genetics , Humans , Intellectual Disability/genetics , Mice , Muscle Hypotonia , Mutation, Missense , Phenotype
11.
Am J Med Genet A ; 185(11): 3510-3516, 2021 11.
Article in English | MEDLINE | ID: mdl-34472180

ABSTRACT

Mucopolysaccharidosis type IVA (OMIM 253000) is an autosomal recessive disorder caused by defective activity of the N-acetylgalactosamine 6-sulfatase (GALNS) enzyme. In 2014, enzyme replacement therapy (ERT) using recombinant human GALNS became available for affected patients. There is a limited number of studies to date that have explored the effect of ERT in infancy and there is also a lack of data assessing the effect of ERT in systems other than the skeletal. Here, we report on the effect of ERT in the youngest pair of siblings treated to date: Patient A, currently 4 years old, who started treatment at the age of 5 months; and Patient B, currently 3 years old, who started treatment at 58 days of life. Moreover, we investigate the effect of early ERT on the cardiovascular system. Our results show that, even when ERT is started before 2 months of age, it cannot fully prevent disease progression. As for the effect of ERT on the cardiovascular system, our preliminary results suggest that early treatment might play a role in preserving a normal left ventricular mass index in affected patients at least up to 1 year, but further observation over time will be required. Overall, this report shows that early diagnosis remains crucial and that prompt initiation of ERT has limited effect in slowing progression of the skeletal phenotype, thus confirming the need for new therapeutic approaches that target the skeletal system in affected patients.


Subject(s)
Chondroitinsulfatases/genetics , Enzyme Replacement Therapy , Mucopolysaccharidosis IV/drug therapy , Child, Preschool , Humans , Infant , Male , Mucopolysaccharidosis IV/genetics , Mucopolysaccharidosis IV/pathology , Siblings
12.
Am J Med Genet A ; 185(4): 1168-1174, 2021 04.
Article in English | MEDLINE | ID: mdl-33496070

ABSTRACT

Achondroplasia is the most common disproportionate short statured skeletal dysplasia with a prevalence of approximately 1:20,000-30,000. We created the largest database to date of a historical cohort of 1374 patients with achondroplasia (CLARITY-aChondropLasia nAtuRal hIsTory studY). This cohort was queried for the presence of unrecognized or under-recognized features associated with achondroplasia. Craniosynostosis was found to co-occur with achondroplasia in 9 (0.65%) patients in this cohort, which is much higher than the general population prevalence of 3.1-7.2 per 10,000. In addition, 27 patients had seizures (2.0%), an apparent excess as compared to the general population. Only two people had diabetes despite a high rate of adult obesity. This report documents for the first time an increased prevalence of craniosynostosis in persons with achondroplasia, and adds support to previous observations of an apparently higher than expected prevalence of seizures and lower prevalence of diabetes mellitus.


Subject(s)
Achondroplasia/epidemiology , Craniosynostoses/epidemiology , Osteochondrodysplasias/epidemiology , Seizures/epidemiology , Achondroplasia/diagnosis , Achondroplasia/pathology , Adult , Craniosynostoses/diagnosis , Craniosynostoses/pathology , Diabetes Mellitus/diagnosis , Diabetes Mellitus/genetics , Diabetes Mellitus/pathology , Female , Humans , Male , Mutation/genetics , Osteochondrodysplasias/diagnosis , Osteochondrodysplasias/pathology , Phenotype , Seizures/diagnosis , Seizures/pathology , Young Adult
13.
Am J Hum Genet ; 100(6): 907-925, 2017 Jun 01.
Article in English | MEDLINE | ID: mdl-28575647

ABSTRACT

Yin and yang 1 (YY1) is a well-known zinc-finger transcription factor with crucial roles in normal development and malignancy. YY1 acts both as a repressor and as an activator of gene expression. We have identified 23 individuals with de novo mutations or deletions of YY1 and phenotypic features that define a syndrome of cognitive impairment, behavioral alterations, intrauterine growth restriction, feeding problems, and various congenital malformations. Our combined clinical and molecular data define "YY1 syndrome" as a haploinsufficiency syndrome. Through immunoprecipitation of YY1-bound chromatin from affected individuals' cells with antibodies recognizing both ends of the protein, we show that YY1 deletions and missense mutations lead to a global loss of YY1 binding with a preferential retention at high-occupancy sites. Finally, we uncover a widespread loss of H3K27 acetylation in particular on the YY1-bound enhancers, underscoring a crucial role for YY1 in enhancer regulation. Collectively, these results define a clinical syndrome caused by haploinsufficiency of YY1 through dysregulation of key transcriptional regulators.


Subject(s)
Chromatin/metabolism , Haploinsufficiency/genetics , Intellectual Disability/genetics , Transcription, Genetic , YY1 Transcription Factor/genetics , Acetylation , Adolescent , Base Sequence , Child, Preschool , Chromatin Immunoprecipitation , Cohort Studies , Enhancer Elements, Genetic/genetics , Female , Gene Ontology , Haplotypes/genetics , Hemizygote , Histones/metabolism , Humans , Lymphocytes/metabolism , Male , Methylation , Models, Molecular , Mutation, Missense/genetics , Protein Binding/genetics , Protein Domains , YY1 Transcription Factor/chemistry
15.
Genet Med ; 21(12): 2755-2764, 2019 12.
Article in English | MEDLINE | ID: mdl-31263215

ABSTRACT

PURPOSE: Haploinsufficiency of DYRK1A causes a recognizable clinical syndrome. The goal of this paper is to investigate congenital anomalies of the kidney and urinary tract (CAKUT) and genital defects (GD) in patients with DYRK1A variants. METHODS: A large database of clinical exome sequencing (ES) was queried for de novo DYRK1A variants and CAKUT/GD phenotypes were characterized. Xenopus laevis (frog) was chosen as a model organism to assess Dyrk1a's role in renal development. RESULTS: Phenotypic details and variants of 19 patients were compiled after an initial observation that one patient with a de novo pathogenic variant in DYRK1A had GD. CAKUT/GD data were available from 15 patients, 11 of whom presented with CAKUT/GD. Studies in Xenopus embryos demonstrated that knockdown of Dyrk1a, which is expressed in forming nephrons, disrupts the development of segments of embryonic nephrons, which ultimately give rise to the entire genitourinary (GU) tract. These defects could be rescued by coinjecting wild-type human DYRK1A RNA, but not with DYRK1AR205* or DYRK1AL245R RNA. CONCLUSION: Evidence supports routine GU screening of all individuals with de novo DYRK1A pathogenic variants to ensure optimized clinical management. Collectively, the reported clinical data and loss-of-function studies in Xenopus substantiate a novel role for DYRK1A in GU development.


Subject(s)
Intellectual Disability/genetics , Protein Serine-Threonine Kinases/genetics , Protein-Tyrosine Kinases/genetics , Urogenital Abnormalities/genetics , Adolescent , Adult , Animals , Child , Child, Preschool , Databases, Genetic , Disease Models, Animal , Exome/genetics , Female , Haploinsufficiency/genetics , Humans , Intellectual Disability/complications , Kidney/abnormalities , Kidney/embryology , Male , Nephrons/metabolism , Protein Serine-Threonine Kinases/metabolism , Protein-Tyrosine Kinases/metabolism , Urinary Tract/embryology , Urinary Tract/metabolism , Exome Sequencing/methods , Xenopus laevis/genetics , Xenopus laevis/metabolism , Young Adult , Dyrk Kinases
16.
Prenat Diagn ; 39(5): 351-360, 2019 04.
Article in English | MEDLINE | ID: mdl-30734934

ABSTRACT

OBJECTIVE: We evaluated what prenatal genetic counselor's (GCs) practices, attitudes, and barriers are in regards to prenatal microarray since the publication of the American College of Obstetricians and Gynecologists (ACOG) and the Society for Maternal-Fetal Medicine (SMFM) guidelines for microarray use. METHODS: This was a survey-based cross-sectional study of English-speaking, board certified or eligible GCs who currently practice prenatal genetic counseling. RESULTS: Of 192 respondents, 183 (95%) have incorporated chromosome microarray (CMA) into clinical practice, with 64% believing that the benefits of CMA outweigh the harms and 52% agreeing that CMA should be offered to all women regardless of indication. Those who reported being experts/comfortable in their knowledge of CMA (85%) and familiar with current clinical guidelines (86%) were significantly more likely to offer CMA to patients undergoing invasive testing and patients with fetal anomalies. Patient-specific concerns were the largest reported barrier (51%) when GCs do not offer CMA to patients. CONCLUSION: Our study demonstrates GCs follow guidelines for CMA use when specific indications are involved, but further guidelines are needed regarding CMA use for other routine indications where utility of CMA is not clearly understood. On this basis, ACOG and SMFM should continue revising their guidelines as more information comes to light regarding utility of prenatal CMA for all indications, and organizations like the National Society of Genetic Counselors (NSGC) should consider publishing guidelines on prenatal CMA that are specialized to the GCs sphere of practice.


Subject(s)
Chromosome Aberrations , Genetic Counseling , Microarray Analysis , Prenatal Diagnosis , Cross-Sectional Studies , Female , Humans , Pregnancy
17.
J Genet Couns ; 28(4): 802-811, 2019 08.
Article in English | MEDLINE | ID: mdl-30946507

ABSTRACT

The purpose of this study was to describe current genetic counseling practice in the United States following a non-invasive prenatal testing (NIPT) result positive for a sex chromosome abnormality (SCA). Screening for SCAs can be confounded by confined placental mosaicism, natural loss of the X chromosome from maternal cells during aging, and undiagnosed maternal SCA or copy number variant (CNV). Furthermore, with the exception of 45,X, individuals with SCAs usually have no ultrasound or postnatal findings. This makes follow-up for unresolved positive NIPT necessary; however, there are currently no clinical guidelines. This study used a cross-sectional design with an anonymous questionnaire to survey 176 genetic counselors. The majority of prenatal respondents always offered diagnostic testing (>88%) and anatomy ultrasound (~90%), but the percent consistently offering maternal karyotype (22%-52%) and postnatal evaluation (28%-87%) varied. Maternal karyotype was offered more often when NIPT was positive for 45,X or 47,XXX and patients had normal prenatal diagnostic testing (p < 0.02) or declined testing (p < 0.02). Offer of postnatal evaluation was more likely when diagnostic testing was declined (p < 0.001). The majority of pediatric providers always offered a postnatal karyotype for the newborn (>72%) but the percent offering maternal karyotype (6%-46%) varied widely. With the current inconsistencies, many newborns with undiagnosed SCAs who could benefit from growth hormone therapy, early intervention, and/or targeted surveillance may be missed. Therefore, there is a need for professional guidelines to help improve the consistency of clinical care for patients with NIPT results positive for SCAs.


Subject(s)
Genetic Counseling , Genetic Testing/methods , Prenatal Diagnosis/methods , Sex Chromosome Aberrations , Cross-Sectional Studies , DNA Copy Number Variations , Female , Humans , Infant, Newborn , Karyotyping , Mosaicism , Pregnancy , United States
18.
Am J Med Genet A ; 167A(4): 872-7, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25708669

ABSTRACT

We report on a pair of normally conceived monochorionic/dizygotic (MC/DZ) sex discordant twins. The comparison of blood and skin genotypes revealed that the chimerism was also present in the skin. We conjecture about the developmental origins of this case.


Subject(s)
46, XX Disorders of Sex Development/diagnosis , Abnormalities, Multiple/diagnosis , Twins, Dizygotic/genetics , 46, XX Disorders of Sex Development/genetics , Abnormalities, Multiple/genetics , Chimerism , Female , Humans , Infant , Male , Polymorphism, Single Nucleotide , Skin/pathology
19.
Curr Opin Pediatr ; 27(6): 675-84, 2015 Dec.
Article in English | MEDLINE | ID: mdl-26335769

ABSTRACT

PURPOSE OF REVIEW: Disorders of sexual development (DSD) are a genetic and phenotypic heterogeneous group of congenital disorders. This review focuses on the genetics of DSD and aims to recognize and contextualize, in a systematic way, based on the classification and the genetic mechanisms, the latest developments in the field of DSD diagnostics. RECENT FINDINGS: Due to the current diagnostic armamentarium, during the past decade, the field of DSD diagnostics has changed dramatically from the recognition of few genes and cytogenetic abnormalities, to the identification of multiple genes and a wide arrange of genetic mechanisms involved in the genesis of DSD. In addition, the phenotypes associated with the genetic mechanism have expanded tremendously. SUMMARY: Despite the current diagnostic limitations, the landscape for genetics of DSD is encouraging due to discovery of new genes, their interactions, and the recognition of the variety of mechanisms involved.


Subject(s)
Chromosomes, Human, X/genetics , Gene Expression Regulation, Developmental/genetics , Gonadal Dysgenesis, 46,XX/genetics , Mutation/genetics , Oligonucleotide Array Sequence Analysis/methods , Physical Examination/methods , Chimerism , Gonadal Dysgenesis, 46,XX/diagnosis , Gonadal Dysgenesis, 46,XX/physiopathology , Gonadal Steroid Hormones/blood , Humans , Karyotype , Medical History Taking , Mosaicism , Phenotype
20.
Front Med (Lausanne) ; 10: 1235187, 2023.
Article in English | MEDLINE | ID: mdl-37780576

ABSTRACT

Introduction: Turner syndrome (TS) is associated with distinct manifestations in women and girls including short stature, cardiac abnormalities, premature ovarian failure as well as dermatological features, including lymphedema, keloids, onychodystrophy, and acne. Although many dermatological concerns present during the first few decades of life, the overwhelming majority of respondents are not provided with dermatology referrals at diagnosis. Methods: This cross-sectional study utilized an author designed survey to assess self-reported dermatological manifestations, dermatology referral experience, common therapies for select dermatological conditions, as well as a validated 10-question Dermatology Life Quality Index (DLQI) to assess quality-of-life impact in women and girls with Turner syndrome. Results: In our cohort, 64% (n = 149) had been referred to a dermatologist at some point in their life time. The majority of individuals self-identified their dermatological concern (79.6%) and were referred after a dermatological concern had already occurred (90.2%). The most common dermatological findings reported were xerosis cutis (78.7%), lymphedema (73%), and more than 20 acquired melanocytic nevi (70%). The overall mean DLQI score was 3.52, indicative of a small effect on the patient's life. Onychodystrophy, history of skin biopsy, and lymphedema were statistically significant to have a higher impact on quality of life. Discussion: Our data reveal that skin conditions are highly prevalent in the TS population during the early decades of life and affirm utilizing these conditions in the TS diagnostic process, as well as emphasize the need for specialized dermatology referrals to address the detrimental impacts related to skin concerns on quality of life.

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