共查询到20条相似文献,搜索用时 15 毫秒
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Muhammad Arshad Rafiq Andreas W. Kuss Lucia Puettmann Abdul Noor Annapoorani Ramiah Ghazanfar Ali Hao Hu Nadir Ali Kerio Yong Xiang Masoud Garshasbi Muzammil Ahmad Khan Gisele E. Ishak Rosanna Weksberg Reinhard Ullmann Andreas Tzschach Kimia Kahrizi Khalid Mahmood Farooq Naeem Muhammad Ayub Kelley W. Moremen John B. Vincent Hans Hilger Ropers Muhammad Ansar Hossein Najmabadi 《American journal of human genetics》2011,89(1):176-182
We have used genome-wide genotyping to identify an overlapping homozygosity-by-descent locus on chromosome 9q34.3 (MRT15) in four consanguineous families affected by nonsyndromic autosomal-recessive intellectual disability (NS-ARID) and one in which the patients show additional clinical features. Four of the families are from Pakistan, and one is from Iran. Using a combination of next-generation sequencing and Sanger sequencing, we have identified mutations in the gene MAN1B1, encoding a mannosyl oligosaccharide, alpha 1,2-mannosidase. In one Pakistani family, MR43, a homozygous nonsense mutation (RefSeq number : c.1418G>A [p.Trp473∗]), segregated with intellectual disability and additional dysmorphic features. We also identified the missense mutation c. 1189G>A (p.Glu397Lys; RefSeq number NM_016219.3), which segregates with NS-ARID in three families who come from the same village and probably have shared inheritance. In the Iranian family, the missense mutation c.1000C>T (p.Arg334Cys; RefSeq number NM_016219.3) also segregates with NS-ARID. Both missense mutations are at amino acid residues that are conserved across the animal kingdom, and they either reduce kcat by ∼1300-fold or disrupt stable protein expression in mammalian cells. MAN1B1 is one of the few NS-ARID genes with an elevated mutation frequency in patients with NS-ARID from different populations. NM_016219.3相似文献
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Anna C. Thomas Hywel WilliamsNúria Setó-Salvia Chiara BacchelliDagan Jenkins Mary O’SullivanKonstantinos Mengrelis Miho IshidaLouise Ocaka Estelle ChanudetChela James Francesco LescaiGlenn Anderson Deborah MorroghMina Ryten Andrew J. DuncanYun Jin Pai Jorge M. SaraivaFabiana Ramos Bernadette FarrenDawn Saunders Bertrand VernayPaul Gissen Anna Straatmaan-IwanowskaFrank Baas Nicholas W. WoodJoshua Hersheson Henry HouldenJane Hurst Richard ScottMaria Bitner-Glindzicz Gudrun E. MooreSérgio B. Sousa Philip Stanier 《American journal of human genetics》2015,96(6):1008-1009
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《American journal of human genetics》2014,95(5):611-621
Intellectual disability and cerebellar atrophy occur together in a large number of genetic conditions and are frequently associated with microcephaly and/or epilepsy. Here we report the identification of causal mutations in Sorting Nexin 14 (SNX14) found in seven affected individuals from three unrelated consanguineous families who presented with recessively inherited moderate-severe intellectual disability, cerebellar ataxia, early-onset cerebellar atrophy, sensorineural hearing loss, and the distinctive association of progressively coarsening facial features, relative macrocephaly, and the absence of seizures. We used homozygosity mapping and whole-exome sequencing to identify a homozygous nonsense mutation and an in-frame multiexon deletion in two families. A homozygous splice site mutation was identified by Sanger sequencing of SNX14 in a third family, selected purely by phenotypic similarity. This discovery confirms that these characteristic features represent a distinct and recognizable syndrome. SNX14 encodes a cellular protein containing Phox (PX) and regulator of G protein signaling (RGS) domains. Weighted gene coexpression network analysis predicts that SNX14 is highly coexpressed with genes involved in cellular protein metabolism and vesicle-mediated transport. All three mutations either directly affected the PX domain or diminished SNX14 levels, implicating a loss of normal cellular function. This manifested as increased cytoplasmic vacuolation as observed in cultured fibroblasts. Our findings indicate an essential role for SNX14 in neural development and function, particularly in development and maturation of the cerebellum. 相似文献
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Ziv Gan-Or Naima BouslamNazha Birouk Alexandra LissoubaDaniel B. Chambers Julie VérièpeAlaura Androschuk Sandra B. LaurentDaniel Rochefort Dan SpiegelmanAlexandre Dionne-Laporte Anna SzutoMeijiang Liao Denise A. FiglewiczAhmed Bouhouche Ali BenomarMohamed Yahyaoui Reda OuazzaniGrace Yoon Nicolas DupréOksana Suchowersky Francois V. BolducJ. Alex Parker Patrick A. DionPierre Drapeau Guy A. RouleauBouchra Ouled Amar Bencheikh 《American journal of human genetics》2016,98(6):1271
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Zafar Iqbal Marjolein?H. Willemsen Marie-Amélie Papon Luciana Musante Marco Benevento Hao Hu Hanka Venselaar Willemijn?M. Wissink-Lindhout Anneke?T. Vulto-van?Silfhout Lisenka?E.L.M. Vissers Arjan?P.M. de?Brouwer Sylviane Marouillat Thomas?F. Wienker Hans?Hilger Ropers Kimia Kahrizi Nael Nadif?Kasri Hossein Najmabadi Frédéric Laumonnier Tjitske Kleefstra Hans van?Bokhoven 《American journal of human genetics》2015,96(3):386-396
We report on Dutch and Iranian families with affected individuals who present with moderate to severe intellectual disability and additional phenotypes including progressive tremor, speech impairment, and behavioral problems in certain individuals. A combination of exome sequencing and homozygosity mapping revealed homozygous mutations c.484G>A (p.Gly162Arg) and c.1898C>G (p.Pro633Arg) in SLC6A17. SLC6A17 is predominantly expressed in the brain, encodes a synaptic vesicular transporter of neutral amino acids and glutamate, and plays an important role in the regulation of glutamatergic synapses. Prediction programs and 3D modeling suggest that the identified mutations are deleterious to protein function. To directly test the functional consequences, we investigated the neuronal subcellular localization of overexpressed wild-type and mutant variants in mouse primary hippocampal neuronal cells. Wild-type protein was present in soma, axons, dendrites, and dendritic spines. p.Pro633Arg altered SLC6A17 was found in soma and proximal dendrites but did not reach spines. p.Gly162Arg altered SLC6A17 showed a normal subcellular distribution but was associated with an abnormal neuronal morphology mainly characterized by the loss of dendritic spines. In summary, our genetic findings implicate homozygous SLC6A17 mutations in autosomal-recessive intellectual disability, and their pathogenic role is strengthened by genetic evidence and in silico and in vitro functional analyses. 相似文献
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Kezhi Yan Justine Rousseau Rebecca Okashah Littlejohn Courtney Kiss Anna Lehman Jill A. Rosenfeld Constance T.R. Stumpel Alexander P.A. Stegmann Laurie Robak Fernando Scaglia Thi Tuyet Mai Nguyen He Fu Norbert F. Ajeawung Maria Vittoria Camurri Lin Li Alice Gardham Bianca Panis Mohammed Almannai Xiang-Jiao Yang 《American journal of human genetics》2017,100(1):91-104
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Ziv Gan-Or Naima Bouslam Nazha Birouk Alexandra Lissouba Daniel?B. Chambers Julie Vérièpe Alaura Androschuck Sandra?B. Laurent Daniel Rochefort Dan Spiegelman Alexandre Dionne-Laporte Anna Szuto Meijiang Liao Denise?A. Figlewicz Ahmed Bouhouche Ali Benomar Mohamed Yahyaoui Reda Ouazzani Grace Yoon Nicolas Dupré Oksana Suchowersky Francois?V. Bolduc J.?Alex Parker Patrick?A. Dion Pierre Drapeau Guy?A. Rouleau Bouchra?Ouled?Amar Bencheikh 《American journal of human genetics》2016,98(5):1038-1046
Hereditary spastic paraplegia (HSP) is a genetically and clinically heterogeneous disease characterized by spasticity and weakness of the lower limbs with or without additional neurological symptoms. Although more than 70 genes and genetic loci have been implicated in HSP, many families remain genetically undiagnosed, suggesting that other genetic causes of HSP are still to be identified. HSP can be inherited in an autosomal-dominant, autosomal-recessive, or X-linked manner. In the current study, we performed whole-exome sequencing to analyze a total of nine affected individuals in three families with autosomal-recessive HSP. Rare homozygous and compound-heterozygous nonsense, missense, frameshift, and splice-site mutations in CAPN1 were identified in all affected individuals, and sequencing in additional family members confirmed the segregation of these mutations with the disease (spastic paraplegia 76 [SPG76]). CAPN1 encodes calpain 1, a protease that is widely present in the CNS. Calpain 1 is involved in synaptic plasticity, synaptic restructuring, and axon maturation and maintenance. Three models of calpain 1 deficiency were further studied. In Caenorhabditis elegans, loss of calpain 1 function resulted in neuronal and axonal dysfunction and degeneration. Similarly, loss-of-function of the Drosophila melanogaster ortholog calpain B caused locomotor defects and axonal anomalies. Knockdown of calpain 1a, a CAPN1 ortholog in Danio rerio, resulted in abnormal branchiomotor neuron migration and disorganized acetylated-tubulin axonal networks in the brain. The identification of mutations in CAPN1 in HSP expands our understanding of the disease causes and potential mechanisms. 相似文献
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Walid El-Sayed David A. Parry Mushtaq Ahmed Yasmin Rashid Sharifa Al Harasi Chris F. Inglehearn 《American journal of human genetics》2009,85(5):699-705
Healthy dental enamel is the hardest and most highly mineralized human tissue. Though acellular, nonvital, and without capacity for turnover or repair, it can nevertheless last a lifetime. Amelogenesis imperfecta (AI) is a collective term for failure of normal enamel development, covering diverse clinical phenotypes that typically show Mendelian inheritance patterns. One subset, known as hypomaturation AI, is characterised by near-normal volumes of organic enamel matrix but with weak, creamy-brown opaque enamel that fails prematurely after tooth eruption. Mutations in genes critical to enamel matrix formation have been documented, but current understanding of other key events in enamel biomineralization is limited. We investigated autosomal-recessive hypomaturation AI in a consanguineous Pakistani family. A whole-genome SNP autozygosity screen identified a locus on chromosome 15q21.3. Sequencing candidate genes revealed a point mutation in the poorly characterized WDR72 gene. Screening of WDR72 in a panel of nine additional hypomaturation AI families revealed the same mutation in a second, apparently unrelated, Pakistani family and two further nonsense mutations in Omani families. Immunohistochemistry confirmed intracellular localization in maturation-stage ameloblasts. WDR72 function is unknown, but as a putative β propeller is expected to be a scaffold for protein-protein interactions. The nearest homolog, WDR7, is involved in vesicle mobilization and Ca2+-dependent exocytosis at synapses. Vesicle trafficking is important in maturation-stage ameloblasts with respect to secretion into immature enamel and removal of cleaved enamel matrix proteins via endocytosis. This raises the intriguing possibility that WDR72 is critical to ameloblast vesicle turnover during enamel maturation. 相似文献
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Karen Gr?nskov Christopher?M. Dooley Elsebet ?stergaard Robert?N. Kelsh Lars Hansen Mitchell?P. Levesque Kaj Vilhelmsen Kjeld M?llg?rd Derek?L. Stemple Thomas Rosenberg 《American journal of human genetics》2013,92(3):415-421
Autosomal-recessive albinism is a hypopigmentation disorder with a broad phenotypic range. A substantial fraction of individuals with albinism remain genetically unresolved, and it has been hypothesized that more genes are to be identified. By using homozygosity mapping of an inbred Faroese family, we identified a 3.5 Mb homozygous region (10q22.2–q22.3) on chromosome 10. The region contains five protein-coding genes, and sequencing of one of these, C10orf11, revealed a nonsense mutation that segregated with the disease and showed a recessive inheritance pattern. Investigation of additional albinism-affected individuals from the Faroe Islands revealed that five out of eight unrelated affected persons had the nonsense mutation in C10orf11. Screening of a cohort of autosomal-recessive-albinism-affected individuals residing in Denmark showed a homozygous 1 bp duplication in C10orf11 in an individual originating from Lithuania. Immunohistochemistry showed localization of C10orf11 in melanoblasts and melanocytes in human fetal tissue, but no localization was seen in retinal pigment epithelial cells. Knockdown of the zebrafish (Danio rerio) homolog with the use of morpholinos resulted in substantially decreased pigmentation and a reduction of the apparent number of pigmented melanocytes. The morphant phenotype was rescued by wild-type C10orf11, but not by mutant C10orf11. In conclusion, we have identified a melanocyte-differentiation gene, C10orf11, which when mutated causes autosomal-recessive albinism in humans. 相似文献
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Maja Hempel Kirsten Cremer Charlotte?W. Ockeloen Klaske?D. Lichtenbelt Johanna?C. Herkert Jonas Denecke Tobias?B. Haack Alexander?M. Zink Jessica Becker Eva Wohlleber Jessika Johannsen Bader Alhaddad Rolph Pfundt Sigrid Fuchs Dagmar Wieczorek Tim?M. Strom Koen?L.I. van?Gassen Tjitske Kleefstra Christian Kubisch Hartmut Engels Davor Lessel 《American journal of human genetics》2015,97(3):493-500
CHAMP1 encodes a protein with a function in kinetochore-microtubule attachment and in the regulation of chromosome segregation, both of which are known to be important for neurodevelopment. By trio whole-exome sequencing, we have identified de novo deleterious mutations in CHAMP1 in five unrelated individuals affected by intellectual disability with severe speech impairment, motor developmental delay, muscular hypotonia, and similar dysmorphic features including short philtrum and a tented upper and everted lover lip. In addition to two frameshift and one nonsense mutations, we found an identical nonsense mutation, c.1192C>T (p.Arg398∗), in two affected individuals. All mutations, if resulting in a stable protein, are predicted to lead to the loss of the functionally important zinc-finger domains in the C terminus of the protein, which regulate CHAMP1 localization to chromosomes and the mitotic spindle, thereby providing a mechanistic understanding for their pathogenicity. We thus establish deleterious de novo mutations in CHAMP1 as a cause of intellectual disability. 相似文献
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Dikla Bandah-Rozenfeld Rob W.J. Collin Eyal Banin Karlien L.M. Coene Anna M. Siemiatkowska Lina Zelinger Dirk J. Lefeber Inbar Erdinest Francesca Simonelli Ellen A.W. Blokland Caroline C.W. Klaver Raheel Qamar Sandro Banfi Dror Sharon Anneke I. den Hollander 《American journal of human genetics》2010,87(2):199-208
Retinitis pigmentosa (RP) is a heterogeneous group of inherited retinal diseases caused by progressive degeneration of the photoreceptor cells. Using autozygosity mapping, we identified two families, each with three affected siblings sharing large overlapping homozygous regions that harbored the IMPG2 gene on chromosome 3. Sequence analysis of IMPG2 in the two index cases revealed homozygous mutations cosegregating with the disease in the respective families: three affected siblings of Iraqi Jewish ancestry displayed a nonsense mutation, and a Dutch family displayed a 1.8 kb genomic deletion that removes exon 9 and results in the absence of seven amino acids in a conserved SEA domain of the IMPG2 protein. Transient transfection of COS-1 cells showed that a construct expressing the wild-type SEA domain is properly targeted to the plasma membrane, whereas the mutant lacking the seven amino acids appears to be retained in the endoplasmic reticulum. Mutation analysis in ten additional index cases that were of Dutch, Israeli, Italian, and Pakistani origin and had homozygous regions encompassing IMPG2 revealed five additional mutations; four nonsense mutations and one missense mutation affecting a highly conserved phenylalanine residue. Most patients with IMPG2 mutations showed an early-onset form of RP with progressive visual-field loss and deterioration of visual acuity. The patient with the missense mutation, however, was diagnosed with maculopathy. The IMPG2 gene encodes the interphotoreceptor matrix proteoglycan IMPG2, which is a constituent of the interphotoreceptor matrix. Our data therefore show that mutations in a structural component of the interphotoreceptor matrix can cause arRP. 相似文献
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Bettina Lorenz-Depiereux Dov Tiosano Gabriele Häusler 《American journal of human genetics》2010,86(2):267-272
The analysis of rare genetic disorders affecting phosphate homeostasis led to the identification of several proteins that are essential for the renal regulation of phosphate homeostasis; for example, fibroblast growth factor 23 (FGF23), which inhibits renal phosphate reabsorption and 1,25-dihydroxyvitamin D synthesis. Here, we report presumable loss-of-function mutations in the ENPP1 gene (ectonucleotide pyrophosphatase/phosphodiesterase) in members of four families affected with hypophosphatemic rickets. We provide evidence for the conclusion that ENPP1 is the fourth gene—in addition to PHEX, FGF23, and DMP1—that, if mutated, causes hypophosphatemic rickets resulting from elevated FGF23 levels. Surprisingly, ENPP1 loss-of-function mutations have previously been described in generalized arterial calcification of infancy, suggesting an as yet elusive mechanism that balances arterial calcification with bone mineralization. 相似文献
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Lucie Gueneau Anne T. Bertrand Jean-Philippe Jais Tanya Stojkovic Manfred Wehnert Simone Spuler Annie Verschueren Maud Beuvin Emmanuelle Lacene Norma B. Romero Simon Heath Thomas Voit Bruno Eymard Gisèle Bonne 《American journal of human genetics》2009,85(3):338-1959
Emery-Dreifuss muscular dystrophy (EDMD) is a rare disorder characterized by early joint contractures, muscular dystrophy, and cardiac involvement with conduction defects and arrhythmias. So far, only 35% of EDMD cases are genetically elucidated and associated with EMD or LMNA gene mutations, suggesting the existence of additional major genes. By whole-genome scan, we identified linkage to the Xq26.3 locus containing the FHL1 gene in three informative families belonging to our EMD- and LMNA-negative cohort. Analysis of the FHL1 gene identified seven mutations, in the distal exons of FHL1 in these families, three additional families, and one isolated case, which differently affect the three FHL1 protein isoforms: two missense mutations affecting highly conserved cysteines, one abolishing the termination codon, and four out-of-frame insertions or deletions. The predominant phenotype was characterized by myopathy with scapulo-peroneal and/or axial distribution, as well as joint contractures, and associated with a peculiar cardiac disease characterized by conduction defects, arrhythmias, and hypertrophic cardiomyopathy in all index cases of the seven families. Heterozygous female carriers were either asymptomatic or had cardiac disease and/or mild myopathy. Interestingly, four of the FHL1-mutated male relatives had isolated cardiac disease, and an overt hypertrophic cardiomyopathy was present in two. Expression and functional studies demonstrated that the FHL1 proteins were severely reduced in all tested patients and that this was associated with a severe delay in myotube formation in the two patients for whom myoblasts were available. In conclusion, FHL1 should be considered as a gene associated with the X-linked EDMD phenotype, as well as with hypertrophic cardiomyopathy. 相似文献
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Arcangela Iuso Marit Wiersma Hans-Joachim Schüller Ben Pode-Shakked Dina Marek-Yagel Mathias Grigat Thomas Schwarzmayr Riccardo Berutti Bader Alhaddad Bart Kanon Nicola A. Grzeschik Jürgen G. Okun Zeev Perles Yishay Salem Ortal Barel Amir Vardi Marina Rubinshtein Tal Tirosh Yair Anikster 《American journal of human genetics》2018,102(6):1018-1030