Overall Christopher M
University of British Columbia, Vancouver, Canada.
Mol Biotechnol. 2002 Sep;22(1):51-86. doi: 10.1385/MB:22:1:051.
The function of ancillary domains and modules attatched to the catalytic domain of mutidomain proteases, such as the matrix metalloproteinases (MMPs), are not well understood. The importance of discrete MMP substrate binding sites termed exosites on domains located outside the catalytic domain was first demonstrated for native collagenolysis. The essential role of hemopexin carboxyl-domain exosites in the cleavage of noncollagenous substrates such as chemokines has also been recently revealed. This article updates a previous review of the role of substrate recognition by MMP exosites in both preparing complex substrates, such as collagen, for cleavage and for tethering noncollagenous substrates to MMPs for more efficient proteolysis. Exosite domain interaction and movements--"molecular tectonics"--that are required for native collagen triple helicase activity are discussed. The potential role of collagen binding in regulating MMP-2 (gelatinase A) activation at the cell surface reveals unexpected consequences of substrate interactions that can lead to collagen cleavage and regulation of the activation and activity of downstream proteinases necessary to complete the collagenolytic cascade.
附着于多结构域蛋白酶催化结构域的辅助结构域和模块的功能,如基质金属蛋白酶(MMPs),尚未得到充分理解。催化结构域之外的结构域上被称为外位点的离散MMP底物结合位点对于天然胶原溶解的重要性首先得到证实。血红素结合蛋白羧基结构域外位点在诸如趋化因子等非胶原底物裂解中的关键作用最近也已被揭示。本文更新了之前关于MMP外位点在准备复杂底物(如胶原蛋白)进行裂解以及将非胶原底物拴系到MMPs以实现更有效蛋白水解方面底物识别作用的综述。讨论了天然胶原三螺旋酶活性所需的外位点结构域相互作用和运动——“分子构造”。胶原结合在调节细胞表面MMP-2(明胶酶A)激活中的潜在作用揭示了底物相互作用的意外后果,这些后果可导致胶原蛋白裂解以及完成胶原溶解级联反应所需的下游蛋白酶的激活和活性调节。