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性类固醇通过肌动蛋白细胞骨架对细胞运动的快速调节作用。

Rapid regulatory actions of sex steroids on cell movement through the actin cytoskeleton.

作者信息

Giretti Maria Silvia, Simoncini Tommaso

机构信息

Molecular and Cellular Gynecological Endocrinology Laboratory, Department of Reproductive Medicine and Child Development, University of Pisa, Italy.

出版信息

Steroids. 2008 Oct;73(9-10):895-900. doi: 10.1016/j.steroids.2008.01.011. Epub 2008 Jan 19.

Abstract

Cell movement is required in relevant physiological processes such as embryonic development, tissue and organ differentiation, inflammation, immune response and wound healing, along with pathological phenomena, such as cancer metastatic spread. Cell motility is tightly controlled by a complex and often redundant array of intracellular signaling pathways largely devoted to the dynamic regulation of the actin cytoskeletal network and of its relationship with the cell membrane and the extracellular matrix. Sex steroids, particularly estrogen and progesterone, are effective regulators of cell migration and tissue organization, and recent evidence indicates that this is in part obtained through the regulation of the cytoskeleton. Intriguingly, many of these regulatory actions related to cell movement are achieved through rapid, non-classical signaling of sex steroid receptors to kinase cascades, independently from nuclear alteration of gene expression or protein synthesis. The identification of the mechanistic basis for these rapid actions on cell cytoskeleton and cell movement has special relevance for the characterization of the effects of sex steroids in physiological conditions, such their role in the control of inflammation, brain or vascular cell remodelling, angiogenesis or wound healing, as well as in the context of pathological conditions such as steroid-sensitive cancer cell invasion and metastasis. This review highlights the physiological and clinical conditions where the regulatory effects on the cytoskeleton and cell movement of sex steroids might have a special importance, as well as the recent advances in the characterization of the mechanisms, providing insights and working hypotheses on possible clinical applications for the modulation of these pathways.

摘要

细胞运动在胚胎发育、组织和器官分化、炎症、免疫反应及伤口愈合等相关生理过程中是必需的,同时也涉及癌症转移扩散等病理现象。细胞运动性受一系列复杂且常常冗余的细胞内信号通路严格控制,这些通路主要致力于对肌动蛋白细胞骨架网络及其与细胞膜和细胞外基质关系的动态调节。性激素,尤其是雌激素和孕激素,是细胞迁移和组织构建的有效调节因子,最近的证据表明,这部分是通过对细胞骨架的调节实现的。有趣的是,许多与细胞运动相关的调节作用是通过性激素受体向激酶级联的快速、非经典信号传导实现的,与基因表达或蛋白质合成的核改变无关。确定这些对细胞骨架和细胞运动的快速作用的机制基础,对于表征性激素在生理条件下的作用具有特殊意义,例如它们在控制炎症、脑或血管细胞重塑、血管生成或伤口愈合中的作用,以及在诸如类固醇敏感性癌细胞侵袭和转移等病理条件下的作用。本综述重点介绍了性激素对细胞骨架和细胞运动的调节作用可能具有特殊重要性的生理和临床情况,以及在机制表征方面的最新进展,为调节这些通路的可能临床应用提供见解和工作假设。

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