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细胞-基质相互作用:聚焦蛋白聚糖-蛋白酶相互作用及癌症的药物靶点。

Cell-matrix interactions: focus on proteoglycan-proteinase interplay and pharmacological targeting in cancer.

机构信息

Biochemistry, Biochemical Analysis & Matrix Pathobiology Res. Group, Laboratory of Biochemistry, Department of Chemistry, University of Patras, Greece.

出版信息

FEBS J. 2014 Nov;281(22):5023-42. doi: 10.1111/febs.12927. Epub 2014 Nov 6.

Abstract

Proteoglycans are major constituents of extracellular matrices, as well as cell surfaces and basement membranes. They play key roles in supporting the dynamic extracellular matrix by generating complex structural networks with other macromolecules and by regulating cellular phenotypes and signaling. It is becoming evident, however, that proteolytic enzymes are required partners for matrix remodeling and for modulating cell signaling via matrix constituents. Proteinases contribute to all stages of diseases, particularly cancer development and progression, and contextually participate in either the removal of damaged products or in the processing of matrix molecules and signaling receptors. The dynamic interplay between proteoglycans and proteolytic enzymes is a crucial biological step that contributes to the pathophysiology of cancer and inflammation. Moreover, proteoglycans are implicated in the expression and secretion of proteolytic enzymes and often modulate their activities. In this review, we describe the emerging biological roles of proteoglycans and proteinases, with a special emphasis on their complex interplay. We critically evaluate this important proteoglycan-proteinase interactome and discuss future challenges with respect to targeting this axis in the treatment of cancer.

摘要

蛋白聚糖是细胞外基质、细胞表面和基底膜的主要成分。它们通过与其他大分子生成复杂的结构网络,以及通过调节细胞表型和信号转导,在支持动态细胞外基质方面发挥着关键作用。然而,越来越明显的是,蛋白水解酶是基质重塑所必需的伴侣,也是通过基质成分调节细胞信号转导所必需的。蛋白酶参与了所有疾病阶段,特别是癌症的发生和发展,并在上下文上参与了受损产物的清除或基质分子和信号受体的处理。蛋白聚糖和蛋白水解酶之间的动态相互作用是促进癌症和炎症病理生理学的关键生物学步骤。此外,蛋白聚糖参与蛋白水解酶的表达和分泌,并经常调节其活性。在这篇综述中,我们描述了蛋白聚糖和蛋白水解酶的新兴生物学作用,特别强调了它们之间的复杂相互作用。我们批判性地评估了这个重要的蛋白聚糖-蛋白水解酶互作网络,并讨论了在癌症治疗中靶向这个轴的未来挑战。

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