Literature DB >> 23768512

Mutations in GDP-mannose pyrophosphorylase B cause congenital and limb-girdle muscular dystrophies associated with hypoglycosylation of α-dystroglycan.

Keren J Carss1, Elizabeth Stevens, A Reghan Foley, Sebahattin Cirak, Moniek Riemersma, Silvia Torelli, Alexander Hoischen, Tobias Willer, Monique van Scherpenzeel, Steven A Moore, Sonia Messina, Enrico Bertini, Carsten G Bönnemann, Jose E Abdenur, Carla M Grosmann, Akanchha Kesari, Jaya Punetha, Ros Quinlivan, Leigh B Waddell, Helen K Young, Elizabeth Wraige, Shu Yau, Lina Brodd, Lucy Feng, Caroline Sewry, Daniel G MacArthur, Kathryn N North, Eric Hoffman, Derek L Stemple, Matthew E Hurles, Hans van Bokhoven, Kevin P Campbell, Dirk J Lefeber, Yung-Yao Lin, Francesco Muntoni.   

Abstract

Congenital muscular dystrophies with hypoglycosylation of α-dystroglycan (α-DG) are a heterogeneous group of disorders often associated with brain and eye defects in addition to muscular dystrophy. Causative variants in 14 genes thought to be involved in the glycosylation of α-DG have been identified thus far. Allelic mutations in these genes might also cause milder limb-girdle muscular dystrophy phenotypes. Using a combination of exome and Sanger sequencing in eight unrelated individuals, we present evidence that mutations in guanosine diphosphate mannose (GDP-mannose) pyrophosphorylase B (GMPPB) can result in muscular dystrophy variants with hypoglycosylated α-DG. GMPPB catalyzes the formation of GDP-mannose from GTP and mannose-1-phosphate. GDP-mannose is required for O-mannosylation of proteins, including α-DG, and it is the substrate of cytosolic mannosyltransferases. We found reduced α-DG glycosylation in the muscle biopsies of affected individuals and in available fibroblasts. Overexpression of wild-type GMPPB in fibroblasts from an affected individual partially restored glycosylation of α-DG. Whereas wild-type GMPPB localized to the cytoplasm, five of the identified missense mutations caused formation of aggregates in the cytoplasm or near membrane protrusions. Additionally, knockdown of the GMPPB ortholog in zebrafish caused structural muscle defects with decreased motility, eye abnormalities, and reduced glycosylation of α-DG. Together, these data indicate that GMPPB mutations are responsible for congenital and limb-girdle muscular dystrophies with hypoglycosylation of α-DG.
Copyright © 2013 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 23768512      PMCID: PMC3710768          DOI: 10.1016/j.ajhg.2013.05.009

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  61 in total

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Journal:  Hum Mutat       Date:  2008-11       Impact factor: 4.878

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  74 in total

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3.  Cryo-EM structures of human GMPPA-GMPPB complex reveal how cells maintain GDP-mannose homeostasis.

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4.  Systems glycomics of adult zebrafish identifies organ-specific sialylation and glycosylation patterns.

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5.  Early and lethal neurodegeneration with myasthenic and myopathic features: A new ALG14-CDG.

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6.  Intrafamilial variability in GMPPB-associated dystroglycanopathy: Broadening of the phenotype.

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Review 7.  Enzyme complexity in intermediary metabolism.

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9.  A homozygous mutation in GMPPB leads to centronuclear myopathy with combined pre- and postsynaptic defects of neuromuscular transmission.

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Review 10.  Mannose metabolism: more than meets the eye.

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Journal:  Biochem Biophys Res Commun       Date:  2014-06-12       Impact factor: 3.575

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