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纤溶酶原受体:细胞表面纤溶酶原激活的必要条件。

Plasminogen receptors: the sine qua non of cell surface plasminogen activation.

作者信息

Miles Lindsey A, Hawley Stephen B, Baik Nagyung, Andronicos Nicholas M, Castellino Francis J, Parmer Robert J

机构信息

Department of Cell Biology, Division of Vascular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Front Biosci. 2005 May 1;10:1754-62. doi: 10.2741/1658.

Abstract

Localization of plasminogen and plasminogen activators on cell surfaces promotes plasminogen activation and serves to arm cells with the broad spectrum proteolytic activity of plasmin. Cell surface proteolysis by plasmin is an essential feature of physiological and pathological processes requiring extracellular matrix degradation for cell migration including macrophage recruitment during the inflammatory response, tissue remodeling, wound healing, tumor cell invasion and metastasis and skeletal myogenesis. Cell associated plasmin on platelets and endothelial cells is optimally localized for promotion of clot lysis. In more recently recognized functions that are likely to be independent of matrix degradation, cell surface-bound plasmin participates in prohormone processing as well as stimulation of intracellular signaling. This issue of Frontiers in Bioscience on Plasminogen Receptors encompasses chapters focusing on the kinetics of cell surface plasminogen activation and the regulation of plasminogen receptor activity as well as the contribution of plasminogen receptors to the physiological and pathophysiological processes of myogenesis, muscle regeneration and cancer. The molecular identity of plasminogen receptors is cell-type specific, with distinct molecular entities providing plasminogen receptor function on different cells. This issue includes chapters on the well studied plasminogen receptor functions.

摘要

纤溶酶原及纤溶酶原激活剂在细胞表面的定位可促进纤溶酶原的激活,并使细胞具备纤溶酶的广谱蛋白水解活性。纤溶酶介导的细胞表面蛋白水解是生理和病理过程的一个基本特征,这些过程需要细胞外基质降解以实现细胞迁移,包括炎症反应期间的巨噬细胞募集、组织重塑、伤口愈合、肿瘤细胞侵袭和转移以及骨骼肌生成。血小板和内皮细胞上与细胞相关的纤溶酶在促进血栓溶解方面定位最佳。在最近认识到的可能与基质降解无关的功能中,细胞表面结合的纤溶酶参与激素原加工以及细胞内信号传导的刺激。本期《生物科学前沿》关于纤溶酶原受体的内容涵盖了多个章节,重点关注细胞表面纤溶酶原激活的动力学、纤溶酶原受体活性的调节以及纤溶酶原受体对肌生成、肌肉再生和癌症的生理及病理生理过程的贡献。纤溶酶原受体的分子身份具有细胞类型特异性,不同的分子实体在不同细胞上发挥纤溶酶原受体功能。本期包括关于已充分研究的纤溶酶原受体功能的章节。

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