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GDF11 通过 ALK5 依赖的 PI3K-Akt 信号通路调控 PC12 神经干细胞。

GDF11 Regulates PC12 Neural Stem Cells via ALK5-Dependent PI3K-Akt Signaling Pathway.

机构信息

Institute of Blood Transfusion, Chinese Academy of Medical Sciences & Peking Union Medical College, Chengdu 610052, China.

Sichuan Blood Safety and Blood Substitute International Science and Technology Cooperation Base, Chengdu 610052, China.

出版信息

Int J Mol Sci. 2022 Oct 14;23(20):12279. doi: 10.3390/ijms232012279.

Abstract

Growth differentiation factor 11 (GDF11), belonging to the transforming factor-β superfamily, regulates anterior-posterior patterning and inhibits neurogenesis during embryonic development. However, recent studies recognized GDF11 as a rejuvenating (or anti-ageing) factor to reverse age-related cardiac hypertrophy, repair injured skeletal muscle, promote cognitive function, etc. The effects of GDF11 are contradictory and the mechanism of action is still not well clarified. The objective of the present study was to investigate effects of GDF11 on PC12 neural stem cells in vitro and to reveal the underlying mechanism. We systematically assessed the effects of GDF11 on the life activities of PC12 cells. GDF11 significantly suppressed cell proliferation and migration, promoted differentiation and apoptosis, and arrested cell cycle at G2/M phase. Both TMT-based proteomic analysis and phospho-antibody microarray revealed PI3K-Akt pathway was enriched when treated with GDF11. Inhibition of ALK5 or PI3K obviously attenuated the effects of GDF11 on PC12 neural stem cells, which exerted that GDF11 regulated neural stem cells through ALK5-dependent PI3K-Akt signaling pathway. In summary, these results demonstrated GDF11 could be a negative regulator for neurogenesis via ALK5 activating PI3K-Akt pathway when it directly acted on neural stem cells.

摘要

生长分化因子 11(GDF11)属于转化生长因子-β超家族,在胚胎发育过程中调节前后模式,并抑制神经发生。然而,最近的研究将 GDF11 识别为一种恢复活力(或抗衰老)的因子,可逆转与年龄相关的心肌肥厚、修复受损的骨骼肌、促进认知功能等。GDF11 的作用具有矛盾性,其作用机制仍未得到很好的阐明。本研究旨在探讨 GDF11 对体外 PC12 神经干细胞的影响,并揭示其潜在的机制。我们系统评估了 GDF11 对 PC12 细胞生命活动的影响。GDF11 显著抑制细胞增殖和迁移,促进分化和凋亡,并将细胞周期阻滞在 G2/M 期。TMT 基于蛋白质组学分析和磷酸化抗体微阵列显示,GDF11 处理后 PI3K-Akt 通路富集。ALK5 或 PI3K 的抑制明显减弱了 GDF11 对 PC12 神经干细胞的作用,表明 GDF11 通过 ALK5 依赖性 PI3K-Akt 信号通路调节神经干细胞。总之,这些结果表明,GDF11 可以通过 ALK5 激活 PI3K-Akt 通路直接作用于神经干细胞,作为神经发生的负调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2843/9602726/4bf29f9c2642/ijms-23-12279-g001.jpg

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