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基质金属蛋白酶2与整合素α(v)β3的结合是间充质细胞侵袭活性所必需的,但不是上皮细胞移动所必需的:一项计算延时研究。

Matrix metalloproteinase 2-integrin alpha(v)beta3 binding is required for mesenchymal cell invasive activity but not epithelial locomotion: a computational time-lapse study.

作者信息

Rupp Paul A, Visconti Richard P, Czirók András, Cheresh David A, Little Charles D

机构信息

Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City, KS 66160, USA.

出版信息

Mol Biol Cell. 2008 Dec;19(12):5529-40. doi: 10.1091/mbc.e07-05-0480. Epub 2008 Oct 15.

Abstract

Cellular invasive behavior through three-dimensional collagen gels was analyzed using computational time-lapse imaging. A subpopulation of endocardial cells, derived from explanted quail cardiac cushions, undergoes an epithelial-to-mesenchymal transition and invades the substance of the collagen gels when placed in culture. In contrast, other endocardial cells remain epithelial and move over the gel surface. Here, we show that integrin alpha(v)beta3 and matrix metalloproteinase (MMP)2 are present and active in cushion mesenchymal tissue. More importantly, functional assays show that mesenchymal invasive behavior is dependent on MMP2 activity and integrin alpha(v)beta3 binding. Inhibitors of MMP enzymatic activity and molecules that prevent integrin alpha(v)beta3 binding to MMP2, via its hemopexin domain, result in significantly reduced cellular protrusive activity and invasive behavior. Computational analyses show diminished intensity and persistence time of motility in treated invasive mesenchymal cells, but no reduction in motility of the epithelial-like cells moving over the gel surface. Thus, quantitative time-lapse data show that mesenchymal cell invasive behavior, but not epithelial cell locomotion over the gel surface, is partially regulated by the MMP2-integrin interactions.

摘要

利用计算机延时成像分析细胞通过三维胶原凝胶的侵袭行为。从鹌鹑心脏心垫外植体分离出的一部分心内膜细胞,在培养时会经历上皮-间充质转化并侵入胶原凝胶物质中。相比之下,其他心内膜细胞则保持上皮状态并在凝胶表面移动。在此,我们表明整合素α(v)β3和基质金属蛋白酶(MMP)2存在于心垫间充质组织中且具有活性。更重要的是,功能分析表明间充质侵袭行为依赖于MMP2活性和整合素α(v)β3结合。MMP酶活性抑制剂以及通过其血红素结合蛋白结构域阻止整合素α(v)β3与MMP2结合的分子,会导致细胞突出活性和侵袭行为显著降低。计算机分析显示,处理后的侵袭性间充质细胞的运动强度和持续时间减弱,但在凝胶表面移动的上皮样细胞的运动没有减少。因此,定量延时数据表明,间充质细胞的侵袭行为,而非上皮细胞在凝胶表面的移动,部分受MMP2-整合素相互作用调控。

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