Roberts David D
Laboratory of Pathology, Center for Cancer Research, National Cancer Institute, National Institutes of Health , Bethesda, Maryland.
Antioxid Redox Signal. 2017 Oct 20;27(12):771-773. doi: 10.1089/ars.2017.7308. Epub 2017 Sep 6.
Cells in multicellular organisms communicate extensively with neighboring cells and distant organs using a variety of secreted proteins and small molecules. Cells also reside in a structural extracellular matrix (ECM), and changes in its composition, mechanical properties, and post-translational modifications provide additional layers of communication. This Forum addresses emerging mechanisms by which redox signaling controls and is controlled by changes in the ECM, focusing on the roles of matricellular proteins. These proteins engage specific cell surface signaling receptors, integrins, and proteoglycans to regulate the biosynthesis and catabolism of redox signaling molecules and the activation of their signal transducers. These signaling pathways, in turn, regulate the composition of ECM and its function. Covalent post-translational modifications of ECM by redox molecules further regulate its structure and function. Recent studies of acute injuries and chronic disease have identified important pathophysiological roles for this cross-talk and new therapeutic opportunities. Antioxid. Redox Signal. 27, 771-773.
多细胞生物中的细胞利用多种分泌蛋白和小分子与邻近细胞和远处器官进行广泛通讯。细胞还存在于结构性细胞外基质(ECM)中,其组成、力学性质和翻译后修饰的变化提供了额外的通讯层次。本论坛探讨氧化还原信号传导控制细胞外基质变化以及受其变化控制的新出现机制,重点关注基质细胞蛋白的作用。这些蛋白与特定的细胞表面信号受体、整合素和蛋白聚糖相互作用,以调节氧化还原信号分子的生物合成和分解代谢及其信号转导器的激活。反过来,这些信号通路调节细胞外基质的组成及其功能。氧化还原分子对细胞外基质的共价翻译后修饰进一步调节其结构和功能。近期对急性损伤和慢性疾病的研究已经确定了这种相互作用的重要病理生理作用和新的治疗机会。《抗氧化剂与氧化还原信号》。27卷,771 - 773页。
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