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基质金属蛋白酶-9介导的底物水解作用。

Substrate hydrolysis by matrix metalloproteinase-9.

作者信息

Kridel S J, Chen E, Kotra L P, Howard E W, Mobashery S, Smith J W

机构信息

Program On Cell Adhesion and the Cancer Research Center, Burnham Institute, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 2001 Jun 8;276(23):20572-8. doi: 10.1074/jbc.M100900200. Epub 2001 Mar 14.

Abstract

The catalytic clefts of all matrix metalloproteinases (MMPs) have a similar architecture, raising questions about the redundancy in substrate recognition across the protein family. In the present study, an unbiased phage display strategy was applied to define the substrate recognition profile of MMP-9. Three groups of substrates were identified, each occupying a distinct set of subsites within the catalytic pocket. The most prevalent motif contains the sequence Pro-X-X-Hy-(Ser/Thr) at P(3) through P(2'). This sequence is similar to the MMP cleavage sites within the collagens and is homologous to substrates the have been selected for other MMPs. Despite this similarity, most of the substrates identified here are selective for MMP-9 over MMP-7 and MMP-13. This observation indicates that substrate selectivity is conferred by key subsite interactions at positions other than P(3) and P(1'). This study shows that MMP-9 has a unique preference for Arg at both P(2) and P(1), and a preference for Ser/Thr at P(2'). Substrates containing the consensus MMP-9 recognition motif were used to query the protein data bases. A surprisingly limited list of putative physiologic substrates was identified. The functional implications of these proteins lead to testable hypotheses regarding physiologic substrates for MMP-9.

摘要

所有基质金属蛋白酶(MMPs)的催化裂隙都具有相似的结构,这引发了关于整个蛋白质家族底物识别冗余性的问题。在本研究中,采用了一种无偏差的噬菌体展示策略来确定MMP-9的底物识别谱。鉴定出了三组底物,每组底物占据催化口袋内一组不同的亚位点。最常见的基序在P(3)至P(2')处包含序列Pro-X-X-Hy-(Ser/Thr)。该序列与胶原蛋白中的MMP切割位点相似,并且与为其他MMPs选择的底物同源。尽管存在这种相似性,但此处鉴定出的大多数底物对MMP-9具有选择性,而不是MMP-7和MMP-13。这一观察结果表明,底物选择性是由P(3)和P(1')以外位置的关键亚位点相互作用赋予的。本研究表明,MMP-9在P(2)和P(1)处对精氨酸都有独特的偏好,在P(2')处对丝氨酸/苏氨酸有偏好。含有MMP-9共有识别基序的底物被用于查询蛋白质数据库。鉴定出的假定生理底物列表出人意料地有限。这些蛋白质的功能意义导致了关于MMP-9生理底物的可测试假设。

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