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Merck
CN
  • Persistent NF-κB activation in muscle stem cells induces proliferation-independent telomere shortening.

Persistent NF-κB activation in muscle stem cells induces proliferation-independent telomere shortening.

Cell reports (2021-05-13)
Elisia D Tichy, Nuoying Ma, David Sidibe, Emanuele Loro, Jacob Kocan, Delia Z Chen, Tejvir S Khurana, Paul Hasty, Foteini Mourkioti
摘要

During the repeated cycles of damage and repair in many muscle disorders, including Duchenne muscular dystrophy (DMD), the muscle stem cell (MuSC) pool becomes less efficient at responding to and repairing damage. The underlying mechanism of such stem cell dysfunction is not fully known. Here, we demonstrate that the distinct early telomere shortening of diseased MuSCs in both mice and young DMD patients is associated with aberrant NF-κB activation. We find that prolonged NF-κB activation in MuSCs in chronic injuries leads to shortened telomeres and Ku80 dysregulation and results in severe skeletal muscle defects. Our studies provide evidence of a role for NF-κB in regulating stem-cell-specific telomere length, independently of cell replication, and could be a congruent mechanism that is applicable to additional tissues and/or diseases characterized by systemic chronic inflammation.

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泰莫西芬, ≥99%
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DAPI, for nucleic acid staining
Roche
分散酶®II (中性蛋白酶, II级), lyophilized, from bacterial, Roche, pkg of 5 × 1 g
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胶原酶 来源于溶组织梭菌, Type IA, 0.5-5.0 FALGPA units/mg solid, ≥125 CDU/mg solid, For general use
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硫酸葡聚糖 钠盐 来源于明串珠菌 属, Molecular Biology, average Mw >500,000 (dextran starting material), contains 0.5-2% phosphate buffer
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胶原蛋白 来源于小牛皮, Bornstein and Traub Type I, (0.1% solution in 0.1 M acetic acid), aseptically processed, BioReagent, suitable for cell culture