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负伸长因子调节肌肉祖细胞的扩增,以有效修复肌纤维和重新填充干细胞库。

Negative elongation factor regulates muscle progenitor expansion for efficient myofiber repair and stem cell pool repopulation.

机构信息

Sprott Center for Stem Cell Research, Regenerative Medicine Program Ottawa Hospital Research Institute, Ottawa, ON K1H 8L6, Canada; Department of Cellular and Molecular Medicine, University of Ottawa, Ottawa, ON K1H 8L6, Canada.

Sprott Center for Stem Cell Research, Regenerative Medicine Program Ottawa Hospital Research Institute, Ottawa, ON K1H 8L6, Canada.

出版信息

Dev Cell. 2021 Apr 5;56(7):1014-1029.e7. doi: 10.1016/j.devcel.2021.02.025. Epub 2021 Mar 17.

Abstract

Negative elongation factor (NELF) is a critical transcriptional regulator that stabilizes paused RNA polymerase to permit rapid gene expression changes in response to environmental cues. Although NELF is essential for embryonic development, its role in adult stem cells remains unclear. In this study, through a muscle-stem-cell-specific deletion, we showed that NELF is required for efficient muscle regeneration and stem cell pool replenishment. In mechanistic studies using PRO-seq, single-cell trajectory analyses and myofiber cultures revealed that NELF works at a specific stage of regeneration whereby it modulates p53 signaling to permit massive expansion of muscle progenitors. Strikingly, transplantation experiments indicated that these progenitors are also necessary for stem cell pool repopulation, implying that they are able to return to quiescence. Thus, we identified a critical role for NELF in the expansion of muscle progenitors in response to injury and revealed that progenitors returning to quiescence are major contributors to the stem cell pool repopulation.

摘要

负延伸因子 (NELF) 是一种关键的转录调控因子,它稳定暂停的 RNA 聚合酶,以允许快速的基因表达变化来响应环境线索。尽管 NELF 对胚胎发育至关重要,但它在成人干细胞中的作用尚不清楚。在这项研究中,通过肌肉干细胞特异性缺失,我们表明 NELF 是有效肌肉再生和干细胞库补充所必需的。在使用 PRO-seq、单细胞轨迹分析和肌纤维培养进行的机制研究中,揭示了 NELF 在再生的特定阶段发挥作用,它调节 p53 信号以允许肌肉祖细胞的大规模扩增。引人注目的是,移植实验表明这些祖细胞对于干细胞库的重新填充也是必需的,这意味着它们能够回到静止状态。因此,我们确定了 NELF 在损伤反应中肌肉祖细胞扩增中的关键作用,并揭示了重新进入静止状态的祖细胞是干细胞库重新填充的主要贡献者。

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