Loss of peroxiredoxin-2 exacerbates eccentric contraction-induced force loss in dystrophin-deficient muscle

Cited 32 time in scopus
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Title
Loss of peroxiredoxin-2 exacerbates eccentric contraction-induced force loss in dystrophin-deficient muscle
Author(s)
J T Olthoff; A Lindsay; R Abo-Zahrah; K A Baltgalvis; X Patrinostro; J J Belanto; Dae Yeul Yu; B J Perrin; D J Garry; G G Rodney; D A Lowe; J M Ervasti
Bibliographic Citation
Nature Communications, vol. 9, pp. 5104-5104
Publication Year
2018
Abstract
Force loss in skeletal muscle exposed to eccentric contraction is often attributed to injury. We show that EDL muscles from dystrophin-deficient mdx mice recover 65% of lost force within 120min of eccentric contraction and exhibit minimal force loss when the interval between contractions is increased from 3 to 30min. A proteomic screen of mdx muscle identified an 80% reduction in the antioxidant peroxiredoxin-2, likely due to proteolytic degradation following hyperoxidation by NADPH Oxidase 2. Eccentric contraction-induced force loss in mdx muscle was exacerbated by peroxiredoxin-2 ablation, and improved by peroxiredoxin-2 overexpression or myoglobin knockout. Finally, overexpression of γcyto- or βcyto-actin protects mdx muscle from eccentric contraction-induced force loss by blocking NADPH Oxidase 2 through a mechanism dependent on cysteine 272 unique to cytoplasmic actins. Our data suggest that eccentric contraction-induced force loss may function as an adaptive circuit breaker that protects mdx muscle from injurious contractions.
ISSN
2041-1723
Publisher
Springer-Nature Pub Group
Full Text Link
http://dx.doi.org/10.1038/s41467-018-07639-3
Type
Article
Appears in Collections:
1. Journal Articles > Journal Articles
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