抑制 STAT3 可通过恢复肌肉干细胞的自噬功能来恢复老化肌肉的再生。

IF 3.3 2区 生物学 Q1 BIOLOGY
Life Science Alliance Pub Date : 2024-06-06 Print Date: 2024-08-01 DOI:10.26508/lsa.202302503
Giorgia Catarinella, Andrea Bracaglia, Emilia Skafida, Paola Procopio, Veronica Ruggieri, Cristina Parisi, Marco De Bardi, Giovanna Borsellino, Luca Madaro, Pier Lorenzo Puri, Alessandra Sacco, Lucia Latella
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引用次数: 0

摘要

与年龄相关的肌肉干细胞(MuSC)再生能力下降与全身和骨骼肌环境改变引起的细胞自主和非细胞自主变化有关,最终导致MuSC数量和功能下降。先前的研究表明,STAT3 在损伤激活再生后,通过调节活化的 MuSCs 的自噬,在驱动 MuSC 扩增和分化方面发挥着关键作用。然而,MuSCs 的自噬功能会在其生命周期中逐渐衰退,并导致 MuSC 介导的老年肌肉再生功能受损。在这里,我们发现 STAT3 抑制能恢复衰老 MuSCs 的自噬过程,从而恢复 MuSC 促进老年小鼠肌肉再生的能力。我们发现,STAT3抑制可通过促进自噬相关基因的转录在核水平激活自噬,并通过靶向STAT3/PKR磷酸化eIF2α在细胞质水平激活自噬。这些结果表明,STAT3抑制是一种潜在的干预措施,可逆转与年龄有关的自噬阻滞,这种阻滞会损害造血干细胞再生老年肌肉的能力。这些结果还揭示了 STAT3 通过依赖转录和不依赖转录的自噬调控来调节 MuSC 的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STAT3 inhibition recovers regeneration of aged muscles by restoring autophagy in muscle stem cells.

Age-related reduction in muscle stem cell (MuSC) regenerative capacity is associated with cell-autonomous and non-cell-autonomous changes caused by alterations in systemic and skeletal muscle environments, ultimately leading to a decline in MuSC number and function. Previous studies demonstrated that STAT3 plays a key role in driving MuSC expansion and differentiation after injury-activated regeneration, by regulating autophagy in activated MuSCs. However, autophagy gradually declines in MuSCs during lifespan and contributes to the impairment of MuSC-mediated regeneration of aged muscles. Here, we show that STAT3 inhibition restores the autophagic process in aged MuSCs, thereby recovering MuSC ability to promote muscle regeneration in geriatric mice. We show that STAT3 inhibition could activate autophagy at the nuclear level, by promoting transcription of autophagy-related genes, and at the cytoplasmic level, by targeting STAT3/PKR phosphorylation of eIF2α. These results point to STAT3 inhibition as a potential intervention to reverse the age-related autophagic block that impairs MuSC ability to regenerate aged muscles. They also reveal that STAT3 regulates MuSC function by both transcription-dependent and transcription-independent regulation of autophagy.

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来源期刊
Life Science Alliance
Life Science Alliance Agricultural and Biological Sciences-Plant Science
CiteScore
5.80
自引率
2.30%
发文量
241
审稿时长
10 weeks
期刊介绍: Life Science Alliance is a global, open-access, editorially independent, and peer-reviewed journal launched by an alliance of EMBO Press, Rockefeller University Press, and Cold Spring Harbor Laboratory Press. Life Science Alliance is committed to rapid, fair, and transparent publication of valuable research from across all areas in the life sciences.
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