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分子生物学
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Kindlin-2 links mechano-environment to proline synthesis and tumor growth

Guo Ling, Cui Chunhong, Zhang Kuo, Wang Jiaxin, Wang Yilin, Lu Yixuan, Chen Ka, Yuan Jifan, Xiao Guozhi, Tang Bin, Sun Ying, Wu Chuanyue

Journal:Nature Communications

IF:11.88

DOI:10.1038/s41467-019-08772-3

PMID:30783087

Published:2019-02-19

research field:神经科学脑卒中治疗药物递送抗氧化治疗纳米医学

Abstract

Cell metabolism is strongly influenced by mechano-environment. We show here that a fraction of kindlin-2 localizes to mitochondria and interacts with pyrroline-5-carboxylate reductase 1 (PYCR1), a key enzyme for proline synthesis. Extracellular matrix (ECM) stiffening promotes kindlin-2 translocation into mitochondria and its interaction with PYCR1, resulting in elevation of PYCR1 level and consequent increase of proline synthesis and cell proliferation. Depletion of kindlin-2 reduces PYCR1 level, increases reactive oxygen species (ROS) production and apoptosis, and abolishes ECM stiffening-induced increase of proline synthesis and cell proliferation. In vivo, both kindlin-2 and PYCR1 levels are markedly increased in lung adenocarcinoma. Ablation of kindlin-2 in lung adenocarcinoma substantially reduces PYCR1 and proline levels, and diminishes fibrosis in vivo, resulting in marked inhibition of tumor growth and reduction of mortality rate. Our findings reveal a mechanoresponsive kindlin-2-PYCR1 complex that links mechano-environment to proline metabolism and signaling, and suggest a strategy to inhibit tumor growth.

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