Lee Meng-Huee, Rapti Magdalini, Murphy Gillian
Cambridge Institute for Medical Research, Wellcome Trust/MRC Building, Cambridge University, Cambridge CB2 2XY, United Kingdom.
J Biol Chem. 2003 Oct 10;278(41):40224-30. doi: 10.1074/jbc.M305678200. Epub 2003 Jul 17.
Membrane type 1-matrix metalloproteinase (MT1-MMP) is a zinc-dependent, membrane-associated endoproteinase of the metzincin family. The enzyme regulates extracellular matrix remodeling and is capable of cleaving a wide variety of transmembrane proteins. The enzymatic activity of MT1-MMP is regulated by endogenous inhibitors, the tissue inhibitor of metalloproteinases (TIMP). To date, four variants of mammalian TIMP have been identified. Whereas TIMP-2-4 are potent inhibitors against MT1-MMP, TIMP-1 displays negligible inhibitory activity against the enzyme. The rationale for such selectivity is hitherto unknown. Here we identify the surface epitopes that render TIMP-1 inactive against MT1-MMP. We show that TIMP-1 can be transformed into an active inhibitor against MT1-MMP by the mutation of a single residue, namely threonine 98 to leucine (T98L). The resultant mutant displayed inhibitory characteristics of a typical slow, tight binding inhibitor. The potency of the mutant could be further enhanced by the introduction of valine 4 to alanine (V4A) and proline 6 to valine (P6V) mutations. Indeed, the inhibitory profile of the triple mutant (V4A/P6V/T98L) is indistinguishable from those of other TIMPs. Our findings suggest that threonine 98 is critical in initiating MMP binding and complex stabilization. Our findings also provide a potential mechanistic explanation for MMP-TIMP selectivity.
膜型1基质金属蛋白酶(MT1-MMP)是一种锌依赖性的、与膜相关的金属锌蛋白酶家族的内切蛋白酶。该酶调节细胞外基质重塑,能够切割多种跨膜蛋白。MT1-MMP的酶活性受内源性抑制剂金属蛋白酶组织抑制剂(TIMP)的调节。迄今为止,已鉴定出四种哺乳动物TIMP变体。虽然TIMP-2至4是针对MT1-MMP的有效抑制剂,但TIMP-1对该酶的抑制活性可忽略不计。这种选择性的原理迄今尚不清楚。在这里,我们确定了使TIMP-1对MT1-MMP无活性的表面表位。我们表明,通过将单个残基苏氨酸98突变为亮氨酸(T98L),TIMP-1可以转化为针对MT1-MMP的活性抑制剂。所得突变体表现出典型的缓慢、紧密结合抑制剂的抑制特性。通过引入缬氨酸4突变为丙氨酸(V4A)和脯氨酸6突变为缬氨酸(P6V),突变体的效力可以进一步提高。实际上,三重突变体(V4A/P6V/T98L)的抑制谱与其他TIMP的抑制谱无法区分。我们的研究结果表明,苏氨酸98在启动MMP结合和复合物稳定中至关重要。我们的研究结果还为MMP-TIMP选择性提供了潜在的机理解释。