4.7 Article

Salvianolic acid A targeting the transgelin-actin complex to enhance vasoconstriction

期刊

EBIOMEDICINE
卷 37, 期 -, 页码 246-258

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.ebiom.2018.10.041

关键词

Transgelin; Actin; SAA; Vascular smooth muscle cell; Myocardial ischemia

资金

  1. National Natural Science Foundation of China [81572838, 81402973, 81703581]
  2. Tianjin Natural Science and Technology Fund [15JCYBJC26400]
  3. Tianjin Science and Technology Project [15PTGCCX00140]
  4. National Science and Technology Major Project [2017ZX09306007]

向作者/读者索取更多资源

Background: Salvia miltiorrhiza is used extensively to treat cardiovascular diseases. SAA is a major bioactive component in Salvia miltiorrhiza and mediates myocardial ischemia (MI). However, the industrial production of SAA is limited due to low yields. In addition, the direct targets of SAA are unknown. Here we explore cardioprotective mechanisms and targets of SAA in the cardiovascular system. Methods: Transgel in and actin were identified as targets of SAA using a chemical biology method and were validated by Biacore analysis, miaoscale thermophoresis and single-molecule imaging. Studies of transgelin ( -/- ) knockout mice further verify the target. Cardioprotective mechanisms and targets of SAA were studied in cultured vascular smooth muscle cells and transgenic mice. Findings: In WT mice, SAA targeted transgelin and had a protective effect on myocardium but did not have the same protective effect on transgelin (-/-) mice. SAA stabilizes the transgelin-actin complex, modulates the reorganization of the actin cytoskeleton, facilitates F-actin bundling, further enhances the contractility and blood flows of coronary arteries, and improves outcomes of myocardial ischemia. Based on the target, a more active SAA derivative offering myocardial protection. SAA-30, was obtained. Interpretation: We report on the direct targets of SAA and mechanisms of myocardial ischemia treatment. We also find that transgelin may act as a novel therapeutic target of myocardial ischemia. Furthermore, a more effective derivative of SAA provides the basis for further clinical translational research. (C) 2018 The Authors. Published by Elsevier B.V.

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