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Recessive TRAPPC11 Mutations Cause a Disease Spectrum of Limb Girdle Muscular Dystrophy and Myopathy with Movement Disorder and Intellectual Disability

Authors :
D. Ross McLeod
Gabriel Lapointe
Jessica X. Chong
Yun Li
Bernd Wollnik
Jürgen Christoph Von Kleist-Retzow
Benedikt Schoser
Kym M. Boycott
Julia Schreml
Robert A. Hegele
Andreas Hahn
Catrina M. Loucks
Jillian S. Parboosingh
Rebecca Anderson
Radu Wirth
Oksana Suchowersky
Janine Altmüller
Nina Bögershausen
Nassim Shahrzad
Raoul Heller
Ryan E. Lamont
A. Micheil Innes
Christopher L. Brett
Darrel Waggoner
Katharina Keupp
Holger Thiele
Michael Sacher
Peter Nürnberg
Francois P. Bernier
Marilyn B. Mets
Gudrun Nürnberg
Carole Ober
Eric G. Puffenberger
Daniela Stanga
Source :
The American Journal of Human Genetics. (1):181-190
Publisher :
The American Society of Human Genetics. Published by Elsevier Inc.

Abstract

Myopathies are a clinically and etiologically heterogeneous group of disorders that can range from limb girdle muscular dystrophy (LGMD) to syndromic forms with associated features including intellectual disability. Here, we report the identification of mutations in transport protein particle complex 11 (TRAPPC11) in three individuals of a consanguineous Syrian family presenting with LGMD and in five individuals of Hutterite descent presenting with myopathy, infantile hyperkinetic movements, ataxia, and intellectual disability. By using a combination of whole-exome or genome sequencing with homozygosity mapping, we identified the homozygous c.2938G>A (p.Gly980Arg) missense mutation within the gryzun domain of TRAPPC11 in the Syrian LGMD family and the homozygous c.1287+5G>A splice-site mutation resulting in a 58 amino acid in-frame deletion (p.Ala372_Ser429del) in the foie gras domain of TRAPPC11 in the Hutterite families. TRAPPC11 encodes a component of the multiprotein TRAPP complex involved in membrane trafficking. We demonstrate that both mutations impair the binding ability of TRAPPC11 to other TRAPP complex components and disrupt the Golgi apparatus architecture. Marker trafficking experiments for the p.Ala372_Ser429del deletion indicated normal ER-to-Golgi trafficking but dramatically delayed exit from the Golgi to the cell surface. Moreover, we observed alterations of the lysosomal membrane glycoproteins lysosome-associated membrane protein 1 (LAMP1) and LAMP2 as a consequence of TRAPPC11 dysfunction supporting a defect in the transport of secretory proteins as the underlying pathomechanism.

Details

Language :
English
ISSN :
00029297
Issue :
1
Database :
OpenAIRE
Journal :
The American Journal of Human Genetics
Accession number :
edsair.doi.dedup.....1be5587e75461f0d774d61487e25c48c
Full Text :
https://doi.org/10.1016/j.ajhg.2013.05.028