|  Help  |  About  |  Contact Us

Publication : Variable rescue of microtubule and physiological phenotypes in mdx muscle expressing different miniaturized dystrophins.

First Author  Nelson DM Year  2018
Journal  Hum Mol Genet Volume  27
Issue  12 Pages  2090-2100
PubMed ID  29618008 Mgi Jnum  J:262966
Mgi Id  MGI:6160517 Doi  10.1093/hmg/ddy113
Citation  Nelson DM, et al. (2018) Variable rescue of microtubule and physiological phenotypes in mdx muscle expressing different miniaturized dystrophins. Hum Mol Genet 27(12):2090-2100
abstractText  Delivery of miniaturized dystrophin genes via adeno-associated viral vectors is one leading approach in development to treat Duchenne muscular dystrophy. Here we directly compared the functionality of five mini- and micro-dystrophins via skeletal muscle-specific transgenic expression in dystrophin-deficient mdx mice. We evaluated their ability to rescue defects in the microtubule network, passive stiffness and contractility of skeletal muscle. Transgenic mdx mice expressing the short dystrophin isoform Dp116 served as a negative control. All mini- and micro-dystrophins restored elevated detyrosinated alpha-tubulin and microtubule density of mdx muscle to values not different from C57BL/10, however, only mini-dystrophins restored the transverse component of the microtubule lattice back to C57BL/10. Passive stiffness values in mdx muscles expressing mini- or micro-dystrophins were not different from C57BL/10. While all mini- and micro-dystrophins conferred significant protection from eccentric contraction-induced force loss in vivo and ex vivo compared to mdx, removal of repeats two and three resulted in less protection from force drop caused by eccentric contraction ex vivo. Our data reveal subtle yet significant differences in the relative functionalities for different therapeutic constructs of miniaturized dystrophin in terms of protection from ex vivo eccentric contraction-induced force loss and restoration of an organized microtubule lattice.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

10 Bio Entities

0 Expression