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PMID: 17588958 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Functional capacity of dystrophins carrying deletions in the N-terminal actin-binding domain.

Human molecular genetics ·Vol. 16 ·No. 17 ·2007-09-01 ·Pages 2105-13

Banks GB, Gregorevic P, Allen JM, Finn EE, Chamberlain JS

Abstract

Duchenne muscular dystrophy and Becker muscular dystrophy (BMD) are caused by mutations in the dystrophin gene. Although many in-frame deletions in the dystrophin gene lead to mild cases of BMD, truncations within the N-terminal actin-binding domain (ABD1) typically decrease dystrophin expression and lead to more severe cases of BMD. Because of the large reduction in protein expression, the functional capacity of dystrophin proteins deleted for subportions of ABD1 has been difficult to ascertain. ABD1 contains three actin-binding sequences designated ABS1-3. In the present study, we examined the pathophysiological effects of in-frame actin-binding sequence deletions in the context of a highly functional microdystrophin (DeltaR4-R23/DeltaCT). We delivered microdystrophins into the tibialis anterior muscles of 2-day-old dystrophin-deficient mdx mice using recombinant adeno-associated viral vectors. Muscles expressing microdystrophin with an intact ABD1 displayed normal morphology and specific force generation and were partially protected from contraction-induced injury when evaluated at 4 months of age. In contrast, muscles expressing microdystrophins lacking ABS2 and 3 or ABS3 alone developed significantly lower levels of specific force and were highly susceptible to contraction-induced injury. Microdystrophins with deletions within ABD1 were also less able to protect myofibers from degeneration than was a microdystrophin with the complete ABD1. We conclude that an intact ABD1 is required to support normal contractile properties of skeletal muscle and to protect against myofiber necrosis.

MeSH Terms
Actins/metabolism Amino Acid Sequence Animals Binding Sites/genetics Dystrophin/genetics,physiology Fluorescent Antibody Technique Mice Mice, Inbred C57BL Models, Genetic Molecular Sequence Data Muscle, Skeletal/physiology Protein Structure, Tertiary/genetics Sequence Deletion
Chemicals
Actins Dystrophin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Banks Glen B
Department of Neurology, Senator Paul D Wellstone Muscular Dystrophy Cooperative Research Center, University of Washington, Seattle, WA 98195, USA.
Gregorevic Paul
Allen James M
Finn Eric E
Chamberlain Jeffrey S
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2007-09-01
Epub
2007-00-22
Pages
2105-13
Language
English
Region
England
NLM ID
9208958
Subset
IM
Grants
NIAMS NIH HHS · AR44533 · United States
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