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损伤诱导的 Erk1/2 信号在组织特异性上与 Ca 活性相互作用,是脊髓和骨骼肌再生所必需的。

Injury-induced Erk1/2 signaling tissue-specifically interacts with Ca activity and is necessary for regeneration of spinal cord and skeletal muscle.

机构信息

Department of Physiology & Membrane Biology, Shriners Hospital for Children Northern California, University of California Davis, School of Medicine, 2425 Stockton Blvd, Sacramento CA 95817, United States of America.

Department of Physiology & Membrane Biology, Shriners Hospital for Children Northern California, University of California Davis, School of Medicine, 2425 Stockton Blvd, Sacramento CA 95817, United States of America.

出版信息

Cell Calcium. 2022 Mar;102:102540. doi: 10.1016/j.ceca.2022.102540. Epub 2022 Jan 15.

Abstract

The transition of stem cells from quiescence to proliferation enables tissues to self-repair. The signaling mechanisms driving these stem-cell-status decisions are still unclear. Ca and the extracellular signal-regulated kinase (Erk1/2) are two signaling pathways that have the potential to coordinate multiple signals to promote a specific cellular response. They both play important roles during nervous system development but their roles during spinal cord and muscle regeneration are not fully deciphered. Here we show in Xenopus laevis larvae that both Ca and Erk1/2 signaling pathways are activated after tail amputation. In response to injury, we find that Erk1/2 signaling is activated in neural and muscle stem cells and is necessary for spinal cord and skeletal muscle regeneration. Finally, we show in vivo that Erk1/2 activity is necessary for an injury-induced increase in intracellular store-dependent Ca dynamics in skeletal muscle-associated tissues but that in spinal cord, injury increases Ca influx-dependent Ca activity independent of Erk1/2 signaling. This study suggests that precise temporal and tissue-specific activation of Ca and Erk1/2 pathways is essential for regulating spinal cord and muscle regeneration.

摘要

干细胞从静止状态到增殖的转变使组织能够自我修复。驱动这些干细胞状态决策的信号机制尚不清楚。钙和细胞外信号调节激酶 (Erk1/2) 是两种具有协调多种信号以促进特定细胞反应的潜力的信号通路。它们在神经系统发育过程中都发挥着重要作用,但它们在脊髓和肌肉再生中的作用尚未完全阐明。在这里,我们在非洲爪蟾幼虫中表明,尾巴切除后,Ca 和 Erk1/2 信号通路都会被激活。在受到损伤后,我们发现 Erk1/2 信号在神经和肌肉干细胞中被激活,并且对于脊髓和骨骼肌的再生是必需的。最后,我们在体内表明,Erk1/2 活性对于损伤诱导的骨骼肌相关组织中细胞内储存依赖的 Ca 动力学增加是必需的,但在脊髓中,损伤增加了 Ca 流入依赖的 Ca 活性,而不依赖于 Erk1/2 信号。这项研究表明,Ca 和 Erk1/2 通路的精确时空和组织特异性激活对于调节脊髓和肌肉再生是至关重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/205e/9542431/0dfe8bb68109/nihms-1837153-f0001.jpg

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