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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Structural and functional bases for allosteric control of MMP activities: can it pave the path for selective inhibition?
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Structural and functional bases for allosteric control of MMP activities: can it pave the path for selective inhibition?

机译:构构控制MMP活性的结构和功能基础:能否为选择性抑制铺平道路?

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摘要

The zinc-dependent matrix metalloproteinases (MMPs) belong to a large family of structurally homologous enzymes. These enzymes are involved in a wide variety of biological processes ranging from physiological cell proliferation and differentiation to pathological states associated with tumor metastasis, inflammation, tissue degeneration, and cell death. Controlling the enzymatic activity of specific individual MMPs by antagonist molecules is highly desirable, first, for studying their individual roles, and second as potential therapeutic agents. However, blocking the enzymatic activity with synthetic small inhibitors appears to be an extremely difficult task. Thus, this is an unmet need presumably due to the high structural homology between MMP catalytic domains. Recent reports have recognized a potential role for exosite or allosteric protein regions, distinct from the extended catalytic pocket, in mediating MMP activation and substrate hydrolysis. This raises the possibility that MMP enzymatic and non-enzymatic activities may be modified via antagonist molecules targeted to such allosteric sites or to alternative enzyme domains. In this review, we discuss the structural and functional bases for potential allosteric control of MMPs and highlight potential alternative enzyme domains as targets for designing highly selective MMP inhibitors.
机译:锌依赖性基质金属蛋白酶(MMP)属于结构同源酶的一大家族。这些酶涉及多种生物学过程,从生理细胞增殖和分化到与肿瘤转移,炎症,组织变性和细胞死亡相关的病理状态。非常需要通过拮抗剂分子控制特定个体MMP的酶促活性,首先是为了研究它们的个体作用,其次是作为潜在的治疗剂。然而,用合成的小抑制剂阻断酶活性似乎是极其困难的任务。因此,由于MMP催化结构域之间的高结构同源性,这是未满足的需求。最近的报道已经认识到异位或变构蛋白区域在介导MMP活化和底物水解中的潜在作用(不同于扩展的催化口袋)。这增加了可能通过靶向此类变构位点或替代酶结构域的拮抗剂分子来修饰MMP酶和非酶活性的可能性。在这篇综述中,我们讨论了潜在的变构控制MMP的结构和功能基础,并突出了潜在的替代酶结构域作为设计高选择性MMP抑制剂的目标。

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