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Bilayer Membrane Modulation of Membrane Type 1 Matrix Metalloproteinase (MT1-MMP) Structure and Proteolytic Activity

机译:膜型1型基质金属蛋白酶(MT1-MMP)结构和蛋白水解活性的双层膜调节

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Cell surface proteolysis is an integral yet poorly understood physiological process. The present study has examined how the pericellular collagenase membrane-type 1 matrix metalloproteinase (MT1-MMP) and membrane-mimicking environments interplay in substrate binding and processing. NMR derived structural models indicate that MT1-MMP transiently associates with bicelles and cells through distinct residues in blades III and IV of its hemopexin-like domain, while binding of collagen-like triple-helices occurs within blades I and II of this domain. Examination of simultaneous membrane interaction and triple-helix binding revealed a possible regulation of proteolysis due to steric effects of the membrane. At bicelle concentrations of 1%, enzymatic activity towards triple-helices was increased 1.5-fold. A single mutation in the putative membrane interaction region of MT1-MMP (Ser466Pro) resulted in lower enzyme activation by bicelles. An initial structural framework has thus been developed to define the role(s) of cell membranes in modulating proteolysis.
机译:细胞表面蛋白水解是一种整体尚未理解的生理过程。本研究研究了围孔胶原酶膜型1基质金属蛋白酶(MT1-MMP)和膜模拟环境如何在衬底结合和加工中相互作用。 NMR衍生的结构模型表明MT1-MMP通过叶片III和其血红素样结构域的叶片III和IV中的不同残留物瞬时缔合,同时在该结构域的叶片I和II中发生胶原状三螺旋的结合。同时膜相互作用和三重螺旋结合的检查显示由于膜的空间效应导致蛋白质溶解的可能调节。在双螺纹浓度为1%时,朝向三螺旋的酶活性增加1.5倍。 MT1-MMP(SER466PRO)的调用膜相互作用区域中的单一突变导致偏美的酶活化。因此开发了初始结构框架以确定调节蛋白水解中的细胞膜的作用。

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