Zishen Huoxue decoction (ZSHX) alleviates ischemic myocardial injury (MI) via Sirt5-��-tubulin mediated synergistic mechanism of "mitophagy-unfolded protein response" and mitophagy.

Xing Chang, Siyuan Zhou, Yu Huang, Jinfeng Liu, Yanli Wang, Xuanke Guan, Qiaomin Wu, Zhiming Liu, Ruxiu Liu
Author Information
  1. Xing Chang: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  2. Siyuan Zhou: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  3. Yu Huang: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  4. Jinfeng Liu: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  5. Yanli Wang: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  6. Xuanke Guan: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  7. Qiaomin Wu: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053.
  8. Zhiming Liu: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053,. Electronic address: ZhimingLiuGAM@163.com.
  9. Ruxiu Liu: Guang'anmen Hospital, China Academy of Chinese Medical Sciences, Beijing, 100053,. Electronic address: liuruxiu1@163.com.

Abstract

Zishen Huoxue decoction (ZSHX) enhances cardiomyocyte viability following hypoxic stress; however, its upstream therapeutic targets remain unclear. Network pharmacology and RNA sequencing analyses revealed that ZSHX target genes were closely associated with mitophagy and apoptosis in the mitochondrial pathway. In vitro, ZSHX inhibited pathological mitochondrial fission following hypoxic stress, regulated FUN14 domain-containing protein 1 (FUNDC1)-related mitophagy, and increased the levels of mitophagy lysosomes and microtubule-associated protein 1 light chain 3 beta II (LC3II)/translocase of outer mitochondrial membrane 20 (TOM20) expression while inhibiting the over-activated mitochondrial unfolded protein response. Additionally, ZSHX regulated the stability of beta-tubulin through Sirtuin 5 (SIRT5) and could modulate FUNDC1-related synergistic mechanisms of mitophagy and unfolded protein response in the mitochondria (UPR) via the SIRT5 and -��-tubulin axis. This targeting pathway may be crucial for cardiomyocytes to resist hypoxia. Collectively, these findings suggest that ZSHX can protect against cardiomyocyte injury via the SIRT5-��-tubulin axis, which may be associated with the synergistic protective mechanism of SIRT5-��-tubulin axis-related mitophagy and UPR on cardiomyocytes.

Keywords

MeSH Term

Mitophagy
Drugs, Chinese Herbal
Animals
Sirtuins
Unfolded Protein Response
Myocytes, Cardiac
Tubulin
Myocardial Ischemia
Humans
Mice
Mitochondria
Apoptosis

Chemicals

Drugs, Chinese Herbal
Sirtuins
Tubulin

Word Cloud

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