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1.
Am J Hum Genet ; 111(6): 1140-1164, 2024 Jun 06.
Artículo en Inglés | MEDLINE | ID: mdl-38776926

RESUMEN

Detection of structural variants (SVs) is currently biased toward those that alter copy number. The relative contribution of inversions toward genetic disease is unclear. In this study, we analyzed genome sequencing data for 33,924 families with rare disease from the 100,000 Genomes Project. From a database hosting >500 million SVs, we focused on 351 genes where haploinsufficiency is a confirmed disease mechanism and identified 47 ultra-rare rearrangements that included an inversion (24 bp to 36.4 Mb, 20/47 de novo). Validation utilized a number of orthogonal approaches, including retrospective exome analysis. RNA-seq data supported the respective diagnoses for six participants. Phenotypic blending was apparent in four probands. Diagnostic odysseys were a common theme (>50 years for one individual), and targeted analysis for the specific gene had already been performed for 30% of these individuals but with no findings. We provide formal confirmation of a European founder origin for an intragenic MSH2 inversion. For two individuals with complex SVs involving the MECP2 mutational hotspot, ambiguous SV structures were resolved using long-read sequencing, influencing clinical interpretation. A de novo inversion of HOXD11-13 was uncovered in a family with Kantaputra-type mesomelic dysplasia. Lastly, a complex translocation disrupting APC and involving nine rearranged segments confirmed a clinical diagnosis for three family members and resolved a conundrum for a sibling with a single polyp. Overall, inversions play a small but notable role in rare disease, likely explaining the etiology in around 1/750 families across heterogeneous clinical cohorts.


Asunto(s)
Inversión Cromosómica , Enfermedades Raras , Humanos , Enfermedades Raras/genética , Masculino , Femenino , Inversión Cromosómica/genética , Linaje , Genoma Humano , Secuenciación Completa del Genoma , Proteína 2 de Unión a Metil-CpG/genética , Mutación , Proteínas de Homeodominio/genética , Persona de Mediana Edad
2.
Am J Hum Genet ; 102(1): 175-187, 2018 01 04.
Artículo en Inglés | MEDLINE | ID: mdl-29276005

RESUMEN

Histone lysine methyltransferases (KMTs) and demethylases (KDMs) underpin gene regulation. Here we demonstrate that variants causing haploinsufficiency of KMTs and KDMs are frequently encountered in individuals with developmental disorders. Using a combination of human variation databases and existing animal models, we determine 22 KMTs and KDMs as additional candidates for dominantly inherited developmental disorders. We show that KMTs and KDMs that are associated with, or are candidates for, dominant developmental disorders tend to have a higher level of transcription, longer canonical transcripts, more interactors, and a higher number and more types of post-translational modifications than other KMT and KDMs. We provide evidence to firmly associate KMT2C, ASH1L, and KMT5B haploinsufficiency with dominant developmental disorders. Whereas KMT2C or ASH1L haploinsufficiency results in a predominantly neurodevelopmental phenotype with occasional physical anomalies, KMT5B mutations cause an overgrowth syndrome with intellectual disability. We further expand the phenotypic spectrum of KMT2B-related disorders and show that some individuals can have severe developmental delay without dystonia at least until mid-childhood. Additionally, we describe a recessive histone lysine-methylation defect caused by homozygous or compound heterozygous KDM5B variants and resulting in a recognizable syndrome with developmental delay, facial dysmorphism, and camptodactyly. Collectively, these results emphasize the significance of histone lysine methylation in normal human development and the importance of this process in human developmental disorders. Our results demonstrate that systematic clinically oriented pathway-based analysis of genomic data can accelerate the discovery of rare genetic disorders.


Asunto(s)
Discapacidades del Desarrollo/enzimología , Discapacidades del Desarrollo/genética , Histona Demetilasas/genética , N-Metiltransferasa de Histona-Lisina/genética , Adolescente , Niño , Preescolar , Femenino , Haploinsuficiencia , Humanos , Masculino , Mutación
3.
Genet Med ; 23(7): 1202-1210, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-33674768

RESUMEN

PURPOSE: The variant spectrum and the phenotype of X-linked Kabuki syndrome type 2 (KS2) are poorly understood. METHODS: Genetic and clinical details of new and published individuals with pathogenic KDM6A variants were compiled and analyzed. RESULTS: Sixty-one distinct pathogenic KDM6A variants (50 truncating, 11 missense) from 80 patients (34 males, 46 females) were identified. Missense variants clustered in the TRP 2, 3, 7 and Jmj-C domains. Truncating variants were significantly more likely to be de novo. Thirteen individuals had maternally inherited variants and one had a paternally inherited variant. Neonatal feeding difficulties, hypoglycemia, postnatal growth retardation, poor weight gain, motor delay, intellectual disability (ID), microcephaly, congenital heart anomalies, palate defects, renal malformations, strabismus, hearing loss, recurrent infections, hyperinsulinism, seizures, joint hypermobility, and gastroesophageal reflux were frequent clinical findings. Facial features of over a third of patients were not typical for KS. Males were significantly more likely to be born prematurely, have shorter stature, and severe developmental delay/ID. CONCLUSION: We expand the KDM6A variant spectrum and delineate the KS2 phenotype. We demonstrate that the variability of the KS2 phenotypic depends on sex and the variant type. We also highlight the overlaps and differences between the phenotypes of KS2 and KS1.


Asunto(s)
Histona Demetilasas/genética , Discapacidad Intelectual , Caracteres Sexuales , Anomalías Múltiples , Proteínas de Unión al ADN/genética , Cara/anomalías , Femenino , Estudios de Asociación Genética , Enfermedades Hematológicas , Humanos , Recién Nacido , Discapacidad Intelectual/genética , Masculino , Proteínas de Neoplasias/genética , Fenotipo , Enfermedades Vestibulares
4.
Am J Hum Genet ; 100(1): 91-104, 2017 Jan 05.
Artículo en Inglés | MEDLINE | ID: mdl-27939640

RESUMEN

Identification of over 500 epigenetic regulators in humans raises an interesting question regarding how chromatin dysregulation contributes to different diseases. Bromodomain and PHD finger-containing protein 1 (BRPF1) is a multivalent chromatin regulator possessing three histone-binding domains, one non-specific DNA-binding module, and several motifs for interacting with and activating three lysine acetyltransferases. Genetic analyses of fish brpf1 and mouse Brpf1 have uncovered an important role in skeletal, hematopoietic, and brain development, but it remains unclear how BRPF1 is linked to human development and disease. Here, we describe an intellectual disability disorder in ten individuals with inherited or de novo monoallelic BRPF1 mutations. Symptoms include infantile hypotonia, global developmental delay, intellectual disability, expressive language impairment, and facial dysmorphisms. Central nervous system and spinal abnormalities are also seen in some individuals. These clinical features overlap with but are not identical to those reported for persons with KAT6A or KAT6B mutations, suggesting that BRPF1 targets these two acetyltransferases and additional partners in humans. Functional assays showed that the resulting BRPF1 variants are pathogenic and impair acetylation of histone H3 at lysine 23, an abundant but poorly characterized epigenetic mark. We also found a similar deficiency in different lines of Brpf1-knockout mice. These data indicate that aberrations in the chromatin regulator gene BRPF1 cause histone H3 acetylation deficiency and a previously unrecognized intellectual disability syndrome.


Asunto(s)
Proteínas Adaptadoras Transductoras de Señales/genética , Cromatina/metabolismo , Histonas/metabolismo , Discapacidad Intelectual/genética , Mutación , Proteínas Nucleares/genética , Acetilación , Adolescente , Alelos , Animales , Proteínas Portadoras/genética , Niño , Cromatina/química , Proteínas de Unión al ADN , Discapacidades del Desarrollo/genética , Cara/anomalías , Femenino , Histona Acetiltransferasas/genética , Humanos , Lisina/metabolismo , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Hipotonía Muscular/genética , Síndrome
5.
Am J Hum Genet ; 101(5): 664-685, 2017 Nov 02.
Artículo en Inglés | MEDLINE | ID: mdl-29100083

RESUMEN

Developmental and epileptic encephalopathy (DEE) is a group of conditions characterized by the co-occurrence of epilepsy and intellectual disability (ID), typically with developmental plateauing or regression associated with frequent epileptiform activity. The cause of DEE remains unknown in the majority of cases. We performed whole-genome sequencing (WGS) in 197 individuals with unexplained DEE and pharmaco-resistant seizures and in their unaffected parents. We focused our attention on de novo mutations (DNMs) and identified candidate genes containing such variants. We sought to identify additional subjects with DNMs in these genes by performing targeted sequencing in another series of individuals with DEE and by mining various sequencing datasets. We also performed meta-analyses to document enrichment of DNMs in candidate genes by leveraging our WGS dataset with those of several DEE and ID series. By combining these strategies, we were able to provide a causal link between DEE and the following genes: NTRK2, GABRB2, CLTC, DHDDS, NUS1, RAB11A, GABBR2, and SNAP25. Overall, we established a molecular diagnosis in 63/197 (32%) individuals in our WGS series. The main cause of DEE in these individuals was de novo point mutations (53/63 solved cases), followed by inherited mutations (6/63 solved cases) and de novo CNVs (4/63 solved cases). De novo missense variants explained a larger proportion of individuals in our series than in other series that were primarily ascertained because of ID. Moreover, these DNMs were more frequently recurrent than those identified in ID series. These observations indicate that the genetic landscape of DEE might be different from that of ID without epilepsy.


Asunto(s)
Encefalopatías/genética , Epilepsia/genética , Mutación/genética , Niño , Preescolar , Femenino , Genoma Humano/genética , Estudio de Asociación del Genoma Completo/métodos , Humanos , Discapacidad Intelectual/genética , Masculino , Recurrencia , Convulsiones/genética
7.
Genet Med ; 22(5): 867-877, 2020 05.
Artículo en Inglés | MEDLINE | ID: mdl-31949313

RESUMEN

PURPOSE: To investigate if specific exon 38 or 39 KMT2D missense variants (MVs) cause a condition distinct from Kabuki syndrome type 1 (KS1). METHODS: Multiple individuals, with MVs in exons 38 or 39 of KMT2D that encode a highly conserved region of 54 amino acids flanked by Val3527 and Lys3583, were identified and phenotyped. Functional tests were performed to study their pathogenicity and understand the disease mechanism. RESULTS: The consistent clinical features of the affected individuals, from seven unrelated families, included choanal atresia, athelia or hypoplastic nipples, branchial sinus abnormalities, neck pits, lacrimal duct anomalies, hearing loss, external ear malformations, and thyroid abnormalities. None of the individuals had intellectual disability. The frequency of clinical features, objective software-based facial analysis metrics, and genome-wide peripheral blood DNA methylation patterns in these patients were significantly different from that of KS1. Circular dichroism spectroscopy indicated that these MVs perturb KMT2D secondary structure through an increased disordered to ɑ-helical transition. CONCLUSION: KMT2D MVs located in a specific region spanning exons 38 and 39 and affecting highly conserved residues cause a novel multiple malformations syndrome distinct from KS1. Unlike KMT2D haploinsufficiency in KS1, these MVs likely result in disease through a dominant negative mechanism.


Asunto(s)
Anomalías Múltiples , Enfermedades Hematológicas , Enfermedades Vestibulares , Anomalías Múltiples/genética , Cara/anomalías , Enfermedades Hematológicas/diagnóstico , Enfermedades Hematológicas/genética , Humanos , Mutación , Enfermedades Vestibulares/diagnóstico , Enfermedades Vestibulares/genética
8.
Genet Med ; 22(3): 524-537, 2020 03.
Artículo en Inglés | MEDLINE | ID: mdl-31578471

RESUMEN

PURPOSE: Lamb-Shaffer syndrome (LAMSHF) is a neurodevelopmental disorder described in just over two dozen patients with heterozygous genetic alterations involving SOX5, a gene encoding a transcription factor regulating cell fate and differentiation in neurogenesis and other discrete developmental processes. The genetic alterations described so far are mainly microdeletions. The present study was aimed at increasing our understanding of LAMSHF, its clinical and genetic spectrum, and the pathophysiological mechanisms involved. METHODS: Clinical and genetic data were collected through GeneMatcher and clinical or genetic networks for 41 novel patients harboring various types ofSOX5 alterations. Functional consequences of selected substitutions were investigated. RESULTS: Microdeletions and truncating variants occurred throughout SOX5. In contrast, most missense variants clustered in the pivotal SOX-specific high-mobility-group domain. The latter variants prevented SOX5 from binding DNA and promoting transactivation in vitro, whereas missense variants located outside the high-mobility-group domain did not. Clinical manifestations and severity varied among patients. No clear genotype-phenotype correlations were found, except that missense variants outside the high-mobility-group domain were generally better tolerated. CONCLUSIONS: This study extends the clinical and genetic spectrum associated with LAMSHF and consolidates evidence that SOX5 haploinsufficiency leads to variable degrees of intellectual disability, language delay, and other clinical features.


Asunto(s)
Proteínas de Unión al ADN/genética , Discapacidad Intelectual/genética , Trastornos del Neurodesarrollo/genética , Factores de Transcripción SOXD/genética , Adolescente , Adulto , Animales , Niño , Preescolar , Femenino , Predisposición Genética a la Enfermedad , Haploinsuficiencia/genética , Humanos , Lactante , Discapacidad Intelectual/diagnóstico , Discapacidad Intelectual/patología , Trastornos del Desarrollo del Lenguaje/diagnóstico , Trastornos del Desarrollo del Lenguaje/genética , Trastornos del Desarrollo del Lenguaje/patología , Masculino , Mutación Missense/genética , Trastornos del Neurodesarrollo/diagnóstico , Trastornos del Neurodesarrollo/patología , Linaje , Fenotipo , Adulto Joven
9.
Am J Med Genet A ; 182(7): 1637-1654, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32319732

RESUMEN

With advances in genetic testing and improved access to such advances, whole exome sequencing is becoming a first-line investigation in clinical work-up of children with developmental delay/intellectual disability (ID). As a result, the need to understand the importance of genetic variants and its effect on the clinical phenotype is increasing. Here, we report on the largest cohort of patients with HNRNPU variants. These 21 patients follow on from the previous study published by Yates et al. in 2017 from our group predominantly identified from the Deciphering Developmental Disorders study that reported seven patients with HNRNPU variants. All the probands reported here have a de novo loss-of-function variant. These probands have craniofacial dysmorphic features, in the majority including widely spaced teeth, microcephaly, high arched eyebrows, and palpebral fissure abnormalities. Many of the patients in the group also have moderate to severe ID and seizures that tend to start in early childhood. This series has allowed us to define a novel neurodevelopmental syndrome, with a likely mechanism of haploinsufficiency, and expand substantially on already published literature on HNRNPU-related neurodevelopmental syndrome.


Asunto(s)
Ribonucleoproteína Heterogénea-Nuclear Grupo U/genética , Trastornos del Neurodesarrollo/etiología , Adolescente , Encéfalo/diagnóstico por imagen , Niño , Preescolar , Anomalías Craneofaciales/etiología , Femenino , Haploinsuficiencia/genética , Humanos , Lactante , Discapacidad Intelectual/genética , Masculino , Microcefalia/etiología , Trastornos del Neurodesarrollo/genética , Embarazo , Convulsiones/genética , Síndrome
10.
Genet Med ; 21(6): 1295-1307, 2019 06.
Artículo en Inglés | MEDLINE | ID: mdl-30349098

RESUMEN

PURPOSE: Pathogenic variants in ARID1B are one of the most frequent causes of intellectual disability (ID) as determined by large-scale exome sequencing studies. Most studies published thus far describe clinically diagnosed Coffin-Siris patients (ARID1B-CSS) and it is unclear whether these data are representative for patients identified through sequencing of unbiased ID cohorts (ARID1B-ID). We therefore sought to determine genotypic and phenotypic differences between ARID1B-ID and ARID1B-CSS. In parallel, we investigated the effect of different methods of phenotype reporting. METHODS: Clinicians entered clinical data in an extensive web-based survey. RESULTS: 79 ARID1B-CSS and 64 ARID1B-ID patients were included. CSS-associated dysmorphic features, such as thick eyebrows, long eyelashes, thick alae nasi, long and/or broad philtrum, small nails and small or absent fifth distal phalanx and hypertrichosis, were observed significantly more often (p < 0.001) in ARID1B-CSS patients. No other significant differences were identified. CONCLUSION: There are only minor differences between ARID1B-ID and ARID1B-CSS patients. ARID1B-related disorders seem to consist of a spectrum, and patients should be managed similarly. We demonstrated that data collection methods without an explicit option to report the absence of a feature (such as most Human Phenotype Ontology-based methods) tended to underestimate gene-related features.


Asunto(s)
Proteínas de Unión al ADN/genética , Proteínas de Unión al ADN/metabolismo , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Anomalías Múltiples/genética , Adolescente , Adulto , Niño , Preescolar , Proteínas Cromosómicas no Histona/genética , Exoma , Cara/anomalías , Femenino , Estudios de Asociación Genética/métodos , Variación Genética/genética , Deformidades Congénitas de la Mano/genética , Humanos , Lactante , Recién Nacido , Discapacidad Intelectual/genética , Masculino , Micrognatismo/genética , Persona de Mediana Edad , Mutación , Cuello/anomalías , Penetrancia
12.
Am J Med Genet A ; 179(4): 615-627, 2019 04.
Artículo en Inglés | MEDLINE | ID: mdl-30758909

RESUMEN

Mutations in the ERF gene, coding for ETS2 repressor factor, a member of the ETS family of transcription factors cause a recently recognized syndromic form of craniosynostosis (CRS4) with facial dysmorphism, Chiari-1 malformation, speech and language delay, and learning difficulties and/or behavioral problems. The overall prevalence of ERF mutations in patients with syndromic craniosynostosis is around 2%, and 0.7% in clinically nonsyndromic craniosynostosis. Here, we present findings from 16 unrelated probands with ERF-related craniosynostosis, with additional data from 20 family members sharing the mutations. Most of the probands exhibited multisutural (including pan-) synostosis but a pattern involving the sagittal and lambdoid sutures (Mercedes-Benz pattern) predominated. Importantly the craniosynostosis was often postnatal in onset, insidious and progressive with subtle effects on head morphology resulting in a median age at presentation of 42 months among the probands and, in some instances, permanent visual impairment due to unsuspected raised intracranial pressure (ICP). Facial dysmorphism (exhibited by all of the probands and many of the affected relatives) took the form of orbital hypertelorism, mild exorbitism and malar hypoplasia resembling Crouzon syndrome but, importantly, a Class I occlusal relationship. Speech delay, poor gross and/or fine motor control, hyperactivity and poor concentration were common. Cranial vault surgery for raised ICP and/or Chiari-1 malformation was expected when multisutural synostosis was observed. Variable expressivity and nonpenetrance among genetically affected relatives was encountered. These observations form the most complete phenotypic and developmental profile of this recently identified craniosynostosis syndrome yet described and have important implications for surgical intervention and follow-up.


Asunto(s)
Craneosinostosis/genética , Craneosinostosis/patología , Mutación , Proteínas Represoras/genética , Adolescente , Adulto , Edad de Inicio , Niño , Preescolar , Femenino , Humanos , Lactante , Recién Nacido , Masculino , Fenotipo , Síndrome , Adulto Joven
13.
J Med Genet ; 55(1): 28-38, 2018 01.
Artículo en Inglés | MEDLINE | ID: mdl-29021403

RESUMEN

INTRODUCTION: Recent evidence has emerged linking mutations in CDK13 to syndromic congenital heart disease. We present here genetic and phenotypic data pertaining to 16 individuals with CDK13 mutations. METHODS: Patients were investigated by exome sequencing, having presented with developmental delay and additional features suggestive of a syndromic cause. RESULTS: Our cohort comprised 16 individuals aged 4-16 years. All had developmental delay, including six with autism spectrum disorder. Common findings included feeding difficulties (15/16), structural cardiac anomalies (9/16), seizures (4/16) and abnormalities of the corpus callosum (4/11 patients who had undergone MRI). All had craniofacial dysmorphism, with common features including short, upslanting palpebral fissures, hypertelorism or telecanthus, medial epicanthic folds, low-set, posteriorly rotated ears and a small mouth with thin upper lip vermilion. Fifteen patients had predicted missense mutations, including five identical p.(Asn842Ser) substitutions and two p.(Gly717Arg) substitutions. One patient had a canonical splice acceptor site variant (c.2898-1G>A). All mutations were located within the protein kinase domain of CDK13. The affected amino acids are highly conserved, and in silico analyses including comparative protein modelling predict that they will interfere with protein function. The location of the missense mutations in a key catalytic domain suggests that they are likely to cause loss of catalytic activity but retention of cyclin K binding, resulting in a dominant negative mode of action. Although the splice-site mutation was predicted to produce a stable internally deleted protein, this was not supported by expression studies in lymphoblastoid cells. A loss of function contribution to the underlying pathological mechanism therefore cannot be excluded, and the clinical significance of this variant remains uncertain. CONCLUSIONS: These patients demonstrate that heterozygous, likely dominant negative mutations affecting the protein kinase domain of the CDK13 gene result in a recognisable, syndromic form of intellectual disability, with or without congenital heart disease.


Asunto(s)
Proteína Quinasa CDC2/química , Proteína Quinasa CDC2/genética , Discapacidades del Desarrollo/genética , Discapacidad Intelectual/genética , Mutación/genética , Adolescente , Niño , Secuencia Conservada , Femenino , Heterocigoto , Humanos , Masculino , Modelos Moleculares , Mutación Missense/genética , Dominios Proteicos , Síndrome , Termodinámica
14.
Am J Hum Genet ; 94(4): 618-24, 2014 Apr 03.
Artículo en Inglés | MEDLINE | ID: mdl-24680889

RESUMEN

To identify further Mendelian causes of intellectual disability (ID), we screened a cohort of 996 individuals with ID for variants in 565 known or candidate genes by using a targeted next-generation sequencing approach. Seven loss-of-function (LoF) mutations-four nonsense (c.1195A>T [p.Lys399(∗)], c.1333C>T [p.Arg445(∗)], c.1866C>G [p.Tyr622(∗)], and c.3001C>T [p.Arg1001(∗)]) and three frameshift (c.2177_2178del [p.Thr726Asnfs(∗)39], c.3771dup [p.Ser1258Glufs(∗)65], and c.3856del [p.Ser1286Leufs(∗)84])-were identified in SETD5, a gene predicted to encode a methyltransferase. All mutations were compatible with de novo dominant inheritance. The affected individuals had moderate to severe ID with additional variable features of brachycephaly; a prominent high forehead with synophrys or striking full and broad eyebrows; a long, thin, and tubular nose; long, narrow upslanting palpebral fissures; and large, fleshy low-set ears. Skeletal anomalies, including significant leg-length discrepancy, were a frequent finding in two individuals. Congenital heart defects, inguinal hernia, or hypospadias were also reported. Behavioral problems, including obsessive-compulsive disorder, hand flapping with ritualized behavior, and autism, were prominent features. SETD5 lies within the critical interval for 3p25 microdeletion syndrome. The individuals with SETD5 mutations showed phenotypic similarity to those previously reported with a deletion in 3p25, and thus loss of SETD5 might be sufficient to account for many of the clinical features observed in this condition. Our findings add to the growing evidence that mutations in genes encoding methyltransferases regulating histone modification are important causes of ID. This analysis provides sufficient evidence that rare de novo LoF mutations in SETD5 are a relatively frequent (0.7%) cause of ID.


Asunto(s)
Deleción Cromosómica , Cromosomas Humanos Par 3 , Discapacidad Intelectual/genética , Metiltransferasas/genética , Mutación , Adolescente , Niño , Humanos , Masculino
15.
Genome Res ; 24(4): 673-87, 2014 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-24356988

RESUMEN

Exome sequencing of parent-offspring trios is a popular strategy for identifying causative genetic variants in children with rare diseases. This method owes its strength to the leveraging of inheritance information, which facilitates de novo variant calling, inference of compound heterozygosity, and the identification of inheritance anomalies. Uniparental disomy describes the inheritance of a homologous chromosome pair from only one parent. This aberration is important to detect in genetic disease studies because it can result in imprinting disorders and recessive diseases. We have developed a software tool to detect uniparental disomy from child-mother-father genotype data that uses a binomial test to identify chromosomes with a significant burden of uniparentally inherited genotypes. This tool is the first to read VCF-formatted genotypes, to perform integrated copy number filtering, and to use a statistical test inherently robust for use in platforms of varying genotyping density and noise characteristics. Simulations demonstrated superior accuracy compared with previously developed approaches. We implemented the method on 1057 trios from the Deciphering Developmental Disorders project, a trio-based rare disease study, and detected six validated events, a significant enrichment compared with the population prevalence of UPD (1 in 3500), suggesting that most of these events are pathogenic. One of these events represents a known imprinting disorder, and exome analyses have identified rare homozygous candidate variants, mainly in the isodisomic regions of UPD chromosomes, which, among other variants, provide targets for further genetic and functional evaluation.


Asunto(s)
Discapacidades del Desarrollo/genética , Genotipo , Programas Informáticos , Disomía Uniparental/genética , Niño , Mapeo Cromosómico , Bases de Datos Genéticas , Humanos , Relaciones Padres-Hijo , Polimorfismo de Nucleótido Simple , Disomía Uniparental/etiología
16.
Cytogenet Genome Res ; 152(3): 132-136, 2017.
Artículo en Inglés | MEDLINE | ID: mdl-28898887

RESUMEN

Angelman syndrome (AS) is characterised by developmental delay, lack of speech, seizures, a characteristic behavioural profile with a happy demeanour, microcephaly, and ataxia. More than two-thirds of cases are due to an approximately 5-Mb interstitial deletion of the imprinted region 15q11.2q13, which is usually de novo. The rest are associated with point mutations in the UBE3A gene, imprinting defects, and paternal uniparental disomy. Small intragenic UBE3A deletions have rarely been described. They are usually maternally inherited, increasing the recurrence risk to 50%, and may be missed by conventional testing (methylation studies and UBE3A gene sequencing). We describe a boy with AS due to an 11.7-kb intragenic deletion. The deletion was identified by array-CGH and was subsequently detected in his affected first cousin and unaffected maternal grandfather, mother, and aunt, confirming the silencing of the paternal allele. The patient had developmental delay, speech impairment, a happy demeanour, microcephaly, and an abnormal EEG, but no seizures by the age of 4 years. Delineation of the underlying genetic mechanism is of utmost importance for reasons of genetic counselling, as well as appropriate management and prognosis. Alternative techniques, such as array-CGH and MLPA, are necessary when conventional testing for AS has failed to identify the underlying genetic mechanism.


Asunto(s)
Síndrome de Angelman/genética , Exones/genética , Herencia Materna/genética , Eliminación de Secuencia , Ubiquitina-Proteína Ligasas/genética , Alelos , Síndrome de Angelman/fisiopatología , Braquidactilia/diagnóstico , Braquidactilia/genética , Braquidactilia/fisiopatología , Preescolar , Aberraciones Cromosómicas , Cromosomas Humanos Par 15/genética , Dedos/anomalías , Humanos , Hipertelorismo/diagnóstico , Hipertelorismo/genética , Hipertelorismo/fisiopatología , Discapacidad Intelectual/genética , Masculino , Fenotipo , Estrabismo/diagnóstico , Estrabismo/genética , Estrabismo/fisiopatología
17.
Brain ; 139(Pt 4): 1036-44, 2016 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-26917597

RESUMEN

Progressive encephalopathy with oedema, hypsarrhythmia and optic atrophy (PEHO) syndrome is a rare Mendelian phenotype comprising severe retardation, early onset epileptic seizures, optic nerve/cerebellar atrophy, pedal oedema, and early death. Atypical cases are often known as PEHO-like, and there is an overlap with 'early infantile epileptic encephalopathy'. PEHO is considered to be recessive, but surprisingly since initial description in 1991, no causative recessive gene(s) have been described. Hence, we report a multiplex consanguineous family with the PEHO phenotype where affected individuals had a homozygous frame-shift deletion in CCDC88A (c.2313delT, p.Leu772*ter). Analysis of cDNA extracted from patient lymphocytes unexpectedly failed to show non-sense mediated decay, and we demonstrate that the mutation produces a truncated protein lacking the crucial C-terminal half of CCDC88A (girdin). To further investigate the possible role of CCDC88A in human neurodevelopment we re-examined the behaviour and neuroanatomy of Ccdc88a knockout pups. These mice had mesial-temporal lobe epilepsy, microcephaly and corpus callosum deficiency, and by postnatal Day 21, microcephaly; the mice died at an early age. As the mouse knockout phenotype mimics the human PEHO phenotype this suggests that loss of CCDC88A is a cause of the PEHO phenotype, and that CCDC88A is essential for multiple aspects of normal human neurodevelopment.


Asunto(s)
Edema Encefálico/diagnóstico , Edema Encefálico/genética , Proteínas de Microfilamentos/genética , Mutación/genética , Enfermedades Neurodegenerativas/diagnóstico , Enfermedades Neurodegenerativas/genética , Atrofia Óptica/diagnóstico , Atrofia Óptica/genética , Espasmos Infantiles/diagnóstico , Espasmos Infantiles/genética , Proteínas de Transporte Vesicular/genética , Animales , Encéfalo/patología , Niño , Femenino , Humanos , Lactante , Masculino , Ratones , Ratones Noqueados , Linaje
18.
Hum Mutat ; 37(8): 737-44, 2016 08.
Artículo en Inglés | MEDLINE | ID: mdl-27120253

RESUMEN

HPMRS or Mabry syndrome is a heterogeneous glycosylphosphatidylinositol (GPI) anchor deficiency that is caused by an impairment of synthesis or maturation of the GPI-anchor. The expressivity of the clinical features in HPMRS varies from severe syndromic forms with multiple organ malformations to mild nonsyndromic intellectual disability. In about half of the patients with the clinical diagnosis of HPMRS, pathogenic mutations can be identified in the coding region in one of the six genes, one among them is PGAP3. In this work, we describe a screening approach with sequence specific baits for transcripts of genes of the GPI pathway that allows the detection of functionally relevant mutations also including introns and the 5' and 3' UTR. By this means, we also identified pathogenic noncoding mutations, which increases the diagnostic yield for HPMRS on the basis of intellectual disability and elevated serum alkaline phosphatase. In eight affected individuals from different ethnicities, we found seven novel pathogenic mutations in PGAP3. Besides five missense mutations, we identified an intronic mutation, c.558-10G>A, that causes an aberrant splice product and a mutation in the 3'UTR, c.*559C>T, that is associated with substantially lower mRNA levels. We show that our novel screening approach is a useful rapid detection tool for alterations in genes coding for key components of the GPI pathway.


Asunto(s)
Anomalías Múltiples/genética , Anomalías Múltiples/patología , Discapacidad Intelectual/genética , Discapacidad Intelectual/patología , Mutación Missense , Trastornos del Metabolismo del Fósforo/genética , Trastornos del Metabolismo del Fósforo/patología , Polimorfismo de Nucleótido Simple , ARN Mensajero/genética , Receptores de Superficie Celular/genética , Regiones no Traducidas 3' , Adolescente , Adulto , Hidrolasas de Éster Carboxílico , Células Cultivadas , Niño , Preescolar , Femenino , Predisposición Genética a la Enfermedad , Humanos , Intrones , Masculino , Linaje , Análisis de Secuencia de ADN/métodos , Adulto Joven
19.
Am J Med Genet A ; 170(11): 2835-2846, 2016 11.
Artículo en Inglés | MEDLINE | ID: mdl-27667800

RESUMEN

KBG syndrome is characterized by short stature, distinctive facial features, and developmental/cognitive delay and is caused by mutations in ANKRD11, one of the ankyrin repeat-containing cofactors. We describe 32 KBG patients aged 2-47 years from 27 families ascertained via two pathways: targeted ANKRD11 sequencing (TS) in a group who had a clinical diagnosis of KBG and whole exome sequencing (ES) in a second group in whom the diagnosis was unknown. Speech delay and learning difficulties were almost universal and variable behavioral problems frequent. Macrodontia of permanent upper central incisors was seen in 85%. Other clinical features included short stature, conductive hearing loss, recurrent middle ear infection, palatal abnormalities, and feeding difficulties. We recognized a new feature of a wide anterior fontanelle with delayed closure in 22%. The subtle facial features of KBG syndrome were recognizable in half the patients. We identified 20 ANKRD11 mutations (18 novel: all truncating) confirmed by Sanger sequencing in 32 patients. Comparison of the two ascertainment groups demonstrated that facial/other typical features were more subtle in the ES group. There were no conclusive phenotype-genotype correlations. Our findings suggest that mutation of ANKRD11 is a common Mendelian cause of developmental delay. Affected patients may not show the characteristic KBG phenotype and the diagnosis is therefore easily missed. We propose updated diagnostic criteria/clinical recommendations for KBG syndrome and suggest that inclusion of ANKRD11 will increase the utility of gene panels designed to investigate developmental delay. © 2016 The Authors. American Journal of Medical Genetics Part A Published by Wiley Periodicals, Inc.


Asunto(s)
Anomalías Múltiples/diagnóstico , Anomalías Múltiples/genética , Enfermedades del Desarrollo Óseo/diagnóstico , Enfermedades del Desarrollo Óseo/genética , Estudios de Asociación Genética , Predisposición Genética a la Enfermedad , Discapacidad Intelectual/diagnóstico , Discapacidad Intelectual/genética , Anomalías Dentarias/diagnóstico , Anomalías Dentarias/genética , Deleción Cromosómica , Cromosomas Humanos Par 16 , Hibridación Genómica Comparativa , Facies , Femenino , Humanos , Masculino , Fenotipo , Proteínas Represoras/genética
20.
Nat Genet ; 38(7): 752-4, 2006 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-16783378

RESUMEN

Neurodegenerative disorders with high brain iron include Parkinson disease, Alzheimer disease and several childhood genetic disorders categorized as neuroaxonal dystrophies. We mapped a locus for infantile neuroaxonal dystrophy (INAD) and neurodegeneration with brain iron accumulation (NBIA) to chromosome 22q12-q13 and identified mutations in PLA2G6, encoding a calcium-independent group VI phospholipase A2, in NBIA, INAD and the related Karak syndrome. This discovery implicates phospholipases in the pathogenesis of neurodegenerative disorders with iron dyshomeostasis.


Asunto(s)
Encéfalo/metabolismo , Trastornos Heredodegenerativos del Sistema Nervioso/genética , Trastornos Heredodegenerativos del Sistema Nervioso/metabolismo , Hierro/metabolismo , Mutación , Fosfolipasas A/genética , Cromosomas Humanos Par 22/genética , Femenino , Humanos , Masculino , Distrofias Neuroaxonales/genética , Distrofias Neuroaxonales/metabolismo , Fosfolipasas A/química , Fosfolipasas A2 , Síndrome
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