Dysferlin, annexin A1, and mitsugumin 53 are upregulated in muscular dystrophy and localize to longitudinal tubules of the T-system with stretch.

dc.contributor.author

Waddell, LB

dc.contributor.author

Lemckert, FA

dc.contributor.author

Zheng, XF

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Tran, J

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Evesson, FJ

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Hawkes, JM

dc.contributor.author

Lek, A

dc.contributor.author

Street, NE

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Lin, P

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Clarke, NF

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Landstrom, AP

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Ackerman, MJ

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Weisleder, N

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Ma, J

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North, KN

dc.contributor.author

Cooper, ST

dc.date.accessioned

2020-04-01T13:43:02Z

dc.date.available

2020-04-01T13:43:02Z

dc.date.issued

2011-04

dc.date.updated

2020-04-01T13:42:53Z

dc.description.abstract

Mutations in dysferlin cause an inherited muscular dystrophy because of defective membrane repair. Three interacting partners of dysferlin are also implicated in membrane resealing: caveolin-3 (in limb girdle muscular dystrophy type 1C), annexin A1, and the newly identified protein mitsugumin 53 (MG53). Mitsugumin 53 accumulates at sites of membrane damage, and MG53-knockout mice display a progressive muscular dystrophy. This study explored the expression and localization of MG53 in human skeletal muscle, how membrane repair proteins are modulated in various forms of muscular dystrophy, and whether MG53 is a primary cause of human muscle disease. Mitsugumin 53 showed variable sarcolemmal and/or cytoplasmic immunolabeling in control human muscle and elevated levels in dystrophic patients. No pathogenic MG53 mutations were identified in 50 muscular dystrophy patients, suggesting that MG53 is unlikely to be a common cause of muscular dystrophy in Australia. Western blot analysis confirmed upregulation of MG53, as well as of dysferlin, annexin A1, and caveolin-3 to different degrees, in different muscular dystrophies. Importantly, MG53, annexin A1, and dysferlin localize to the t-tubule network and show enriched labeling at longitudinal tubules of the t-system in overstretch. Our results suggest that longitudinal tubules of the t-system may represent sites of physiological membrane damage targeted by this membrane repair complex.

dc.identifier.issn

0022-3069

dc.identifier.issn

1554-6578

dc.identifier.uri

https://hdl.handle.net/10161/20328

dc.language

eng

dc.publisher

Oxford University Press (OUP)

dc.relation.ispartof

Journal of neuropathology and experimental neurology

dc.relation.isversionof

10.1097/NEN.0b013e31821350b0

dc.subject

Muscle, Skeletal

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Sarcolemma

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Cytoplasm

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Microtubules

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Humans

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Muscular Dystrophies, Limb-Girdle

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Carrier Proteins

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Annexin A1

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Muscle Proteins

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Membrane Proteins

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DNA

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Microscopy, Confocal

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Biopsy

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Blotting, Western

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Immunohistochemistry

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Physical Stimulation

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Up-Regulation

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Adolescent

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Adult

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Aged

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Middle Aged

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Child

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Child, Preschool

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Infant

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Young Adult

dc.subject

Dysferlin

dc.title

Dysferlin, annexin A1, and mitsugumin 53 are upregulated in muscular dystrophy and localize to longitudinal tubules of the T-system with stretch.

dc.type

Journal article

duke.contributor.orcid

Landstrom, AP|0000-0002-1878-9631

pubs.begin-page

302

pubs.end-page

313

pubs.issue

4

pubs.organisational-group

School of Medicine

pubs.organisational-group

Cell Biology

pubs.organisational-group

Pediatrics, Cardiology

pubs.organisational-group

Duke

pubs.organisational-group

Basic Science Departments

pubs.organisational-group

Pediatrics

pubs.organisational-group

Clinical Science Departments

pubs.publication-status

Published

pubs.volume

70

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