Mutations in a gene encoding a novel SH3/TPR domain protein cause autosomal recessive Charcot-Marie-Tooth type 4C neuropathy.
Jan Senderek,Carsten Bergmann,Claudia Stendel,Jutta Kirfel,Nathalie Verpoorten,Peter De Jonghe,Vincent Timmerman,Roman Chrast,Mark H.G. Verheijen,Greg Lemke,Esra Battaloglu,Yesim Parman,Sevim Erdem,Ersin Tan,Haluk Topaloglu,Andreas Hahn,Wolfgang Müller-Felber,Nicolo' Rizzuto,Gian Maria Fabrizi,Manfred Stuhrmann,Sabine Rudnik-Schöneborn,Stephan Züchner,J. Michael Schröder,Eckhard Buchheim,Volker Straub,Jörg Klepper,Kathrin Huehne,Bernd Rautenstrauss,Reinhard Büttner,Eva Nelis,Klaus Zerres +30 more
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TL;DR: Comparative sequence alignments indicate that members of this protein family contain multiple SH3 and TPR domains that are likely involved in the formation of protein complexes, and defines a new protein family of unknown function with putative orthologues in vertebrates.
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Abstract: Charcot-Marie-Tooth disease type 4C (CMT4C) is a childhood-onset demyelinating form of hereditary motor and sensory neuropathy associated with an early-onset scoliosis and a distinct Schwann cell pathology. CMT4C is inherited as an autosomal recessive trait and has been mapped to a 13-cM linkage interval on chromosome 5q23-q33. By homozygosity mapping and allele-sharing analysis, we refined the CMT4C locus to a suggestive critical region of 1.7 Mb. We subsequently identified mutations in an uncharacterized transcript, KIAA1985, in 12 families with autosomal recessive neuropathy. We observed eight distinct protein-truncating mutations and three nonconservative missense mutations affecting amino acids conserved through evolution. In all families, we identified a mutation on each disease allele, either in the homozygous or in the compound heterozygous state. The CMT4C gene is strongly expressed in neural tissues, including peripheral nerve tissue. The translated protein defines a new protein family of unknown function with putative orthologues in vertebrates. Comparative sequence alignments indicate that members of this protein family contain multiple SH3 and TPR domains that are likely involved in the formation of protein complexes.
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Characterisation of Patients with SH3TC2 Associated Neuropathy in an Indian Cohort
Madhu Nagappa,Shivani Sharma,Periyasamy Govindaraj,YashaT Chickabasaviah,Ramesh Siram,A. Shroti,Doniparthi V. Seshagiri,Monojit Debnath,Sanjib Sinha,Parayil Sankaran Bindu,ArunB Taly +10 more
TL;DR: Though the majority were not symptomatic for hearing impairment, evoked potentials disclosed abnormalities in all, and further studies are required to establish the functional consequences of novel variants and their interacting molecular partners identified in the present study to strengthen their association with the phenotype.
2
Hereditäre Neuropathien: Welcher Test und wann?
Auer-Grumbach M
- 26 Sep 2013
TL;DR: Hereditary Neuropathies – Guidelines for Genetic Testing are among the most frequent hereditary neurological diseases with a prevalence of 1:2500 and are clinically and genetically very heterogeneous.
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Molecular Mechanisms of Inherited Demyelinating
Steven S. Scherer,Lawrence Wrabetz +1 more
- 01 Jan 2008
TL;DR: Recent developments from work on the molecular mechanisms of these disorders and their implications for treatment strategies are reviewed.
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Introduzione sugli aspetti genetici delle neuropatie
V. Planté-Bordeneuve,H. Salhi +1 more
TL;DR: In this article, a revisione introduce gli aspetti clinici, di diagnosi e di genetica molecolare delle neuropatie ereditarie piu frequenti di tipo Charcot-Marie-Tooth (CMT) and malattie genetiche piu rare, which determinano una neuropatia fra other patologie sistemiche.
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Homozygous defects in LMNA, encoding lamin A/C nuclear-envelope proteins, cause autosomal recessive axonal neuropathy in human (Charcot-Marie-Tooth disorder type 2) and mouse.
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