Rosenblum Gabriel, Meroueh Samy O, Kleifeld Oded, Brown Stephen, Singson Steven P, Fridman Rafael, Mobashery Shahriar, Sagi Irit
Department of Structural Biology, The Weizmann Institute of Science, Rehovot, 76100, Israel.
J Biol Chem. 2003 Jul 18;278(29):27009-15. doi: 10.1074/jbc.M301139200. Epub 2003 Apr 4.
The zinc-dependent gelatinases belong to the family of matrix metalloproteinases (MMPs), enzymes that have been shown to play a key role in angiogenesis and tumor metastasis. These enzymes are capable of hydrolyzing extracellular matrix (ECM) components under physiological conditions. Specific and selective inhibitors aimed at blocking their activity are highly sought for use as potential therapeutic agents. We report herein on a novel mode of inhibition of gelatinase A (MMP-2) by the recently characterized inhibitors 4-(4-phenoxphenylsulfonyl)butane-1,2-dithiol (inhibitor 1) and 5-(4-phenoxphenylsulfonyl) pentane-1,2-dithiol (inhibitor 2). These synthetic inhibitors are selective for MMP-2 and MMP-9. We show that the dithiolate moiety of these inhibitors chelates the catalytic zinc ion of MMP-2 via two sulfur atoms. This mode of binding results in alternation of the coordination number of the metal ion and the induction of conformational changes at the microenvironment of the catalytic zinc ion; a set of events that is likely to be at the root of the potent slow binding inhibition behavior exhibited by these inhibitors. This study demonstrates a distinct approach for the understanding of the structural mechanism governing the molecular interactions between potent inhibitors and catalytic sites of MMPs, which may aid in the design of effective inhibitors.
锌依赖性明胶酶属于基质金属蛋白酶(MMPs)家族,这些酶已被证明在血管生成和肿瘤转移中起关键作用。这些酶能够在生理条件下水解细胞外基质(ECM)成分。旨在阻断其活性的特异性和选择性抑制剂作为潜在治疗药物备受青睐。我们在此报告了最近鉴定的抑制剂4-(4-苯氧基苯基磺酰基)丁烷-1,2-二硫醇(抑制剂1)和5-(4-苯氧基苯基磺酰基)戊烷-1,2-二硫醇(抑制剂2)对明胶酶A(MMP-2)的一种新型抑制模式。这些合成抑制剂对MMP-2和MMP-9具有选择性。我们表明,这些抑制剂的二硫醇盐部分通过两个硫原子螯合MMP-2的催化锌离子。这种结合模式导致金属离子配位数的改变以及催化锌离子微环境中构象变化的诱导;这一系列事件可能是这些抑制剂表现出有效慢结合抑制行为的根源。这项研究展示了一种独特的方法来理解控制MMPs有效抑制剂与催化位点之间分子相互作用的结构机制,这可能有助于设计有效的抑制剂。