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分子量72,000的基质金属蛋白酶在细胞表面侵袭伪足处的结合与定位

Binding and localization of M(r) 72,000 matrix metalloproteinase at cell surface invadopodia.

作者信息

Monsky W L, Kelly T, Lin C Y, Yeh Y, Stetler-Stevenson W G, Mueller S C, Chen W T

机构信息

Department of Anatomy and Cell Biology, Georgetown University School of Medicine, Washington, D.C. 20007.

出版信息

Cancer Res. 1993 Jul 1;53(13):3159-64.

PMID:8391388
Abstract

Degradation (turnover) of collagenous matrix occurs on the surface of specialized membrane extensions termed "invadopodia," which are sites of cell invasion into the extracellular matrix. Here we show the localization of the M(r) 72,000 type IV collagenase of the matrix metalloproteinase family at invadopodia. When added exogenously, latent M(r) 72,000 collagenase binds to invadopodia of chicken embryo fibroblasts transformed by Rous sarcoma virus, whereupon the bound collagenase loses its propeptide. The collagenase binds to a component contained within the detergent extract of transformed cells, and increased levels of the active M(r) 62,000 form of the collagenase are seen here. Such an association is not detected in the detergent extract derived from normal cells. Using a recently developed cell fractionation procedure to collect cell surfaces enriched in invadopodia, we show that the M(r) 72,000 collagenase associates with the invadopodial fraction and active forms of the enzyme become immobilized on the collagenous surface. Thus, invadopodia direct intense localized degradation of the extracellular matrix by concentrating active membrane-associated collagenases at sites of cellular invasion.

摘要

胶原基质的降解(周转)发生在称为“侵袭伪足”的特殊膜延伸表面,这些部位是细胞侵入细胞外基质的位点。在此,我们展示了基质金属蛋白酶家族中分子量为72,000的IV型胶原酶在侵袭伪足处的定位。当外源性添加时,潜伏的分子量为72,000的胶原酶与经劳氏肉瘤病毒转化的鸡胚成纤维细胞的侵袭伪足结合,随后结合的胶原酶失去其前肽。该胶原酶与转化细胞去污剂提取物中所含的一种成分结合,在此可观察到分子量为62,000的活性形式的胶原酶水平升高。在源自正常细胞的去污剂提取物中未检测到这种关联。使用最近开发的细胞分级分离程序收集富含侵袭伪足的细胞表面,我们发现分子量为72,000的胶原酶与侵袭伪足部分相关联,且该酶的活性形式固定在胶原表面。因此,侵袭伪足通过将活性膜相关胶原酶集中在细胞侵袭位点来直接导致细胞外基质的强烈局部降解。

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