Title of article
Short Telomeres and Stem Cell Exhaustion Model Duchenne Muscular Dystrophy in mdx/mTR Mice
Author/Authors
Alessandra Sacco، نويسنده , , Foteini Mourkioti، نويسنده , , Rose Tran، نويسنده , , Jinkuk Choi، نويسنده , , Michael Llewellyn، نويسنده , , Peggy Kraft، نويسنده , , Marina Shkreli، نويسنده , , Scott Delp، نويسنده , , Jason H. Pomerantz، نويسنده , , Steven E. Artandi، نويسنده , , Helen M. Blau، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2010
Pages
13
From page
1059
To page
1071
Abstract
In Duchenne muscular dystrophy (DMD), dystrophin mutation leads to progressive lethal skeletal muscle degeneration. For unknown reasons, dystrophin deficiency does not recapitulate DMD in mice (mdx), which have mild skeletal muscle defects and potent regenerative capacity. We postulated that human DMD progression is a consequence of loss of functional muscle stem cells (MuSC), and the mild mouse mdx phenotype results from greater MuSC reserve fueled by longer telomeres. We report that mdx mice lacking the RNA component of telomerase (mdx/mTR) have shortened telomeres in muscle cells and severe muscular dystrophy that progressively worsens with age. Muscle wasting severity parallels a decline in MuSC regenerative capacity and is ameliorated histologically by transplantation of wild-type MuSC. These data show that DMD progression results, in part, from a cell-autonomous failure of MuSC to maintain the damage-repair cycle initiated by dystrophin deficiency. The essential role of MuSC function has therapeutic implications for DMD.
Journal title
CELL
Serial Year
2010
Journal title
CELL
Record number
1020538
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