4.7 Article

Inhibition of SENP2-mediated Akt deSUMOylation promotes cardiac regeneration via activating Akt pathway

期刊

CLINICAL SCIENCE
卷 135, 期 6, 页码 811-828

出版社

PORTLAND PRESS LTD
DOI: 10.1042/CS20201408

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资金

  1. National Natural Science Foundation of China [81771857, 82070315, 81970239]
  2. Guangzhou Regenerative Medicine and Health Laboratory of Guangdong [2018GZR110105009]
  3. Guangdong Provincial Science and Technology Plan [2017A020215151]

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Post-translational modification by SUMO is crucial for cell proliferation and can be reversed by SENPs, providing a potential mechanism for cardiac regeneration. Targeting Akt SUMOylation enhances cardiac regeneration, as seen with SENP2 deficiency leading to CM dedifferentiation and proliferation. Loss of SENP2 increases Akt kinase activity, promoting CM proliferation and angiogenesis through Akt pathway activation, contributing to improved cardiac function post-MI.
Post-translational modification (PTM) by small ubiquitin-like modifier (SUMO) is a key regulator of cell proliferation and can be readily reversed by a family of SUMO-specific proteases (SENPs), making SUMOylation an ideal regulatory mechanism for developing novel therapeutic strategies for promoting a cardiac regenerative response. However, the role of SUMOylation in cardiac regeneration remains unknown. In the present study, we assessed whether targeting protein kinase B (Akt) SUMOylation can promote cardiac regeneration. Quantitative PCR and Western blotting results showed that small ubiquitin-like modifier-specific protease 2 (SENP2) is up-regulated during postnatal heart development. SENP2 deficiency promoted P7 and adult cardiomyocyte (CM) dedifferentiation and proliferation both in vitro and in vivo. Mice with SENP2 deficiency exhibited improved cardiac function after MI due to CM proliferation and angiogenesis. Mechanistically, the loss of SENP2 up-regulated Akt SUMOylation levels and increased Akt kinase activity, leading to a decrease in GSK3? levels and subsequently promoting CM proliferation and angiogenesis. In summary, inhibition of SENP2-mediated Akt deSUMOylation promotes CM differentiation and proliferation by activating the Akt pathway. Our results provide new insights into the role of SUMOylation in cardiac regeneration.

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