Designing TIMP (tissue inhibitor of metalloproteinases) variants that are selective metalloproteinase inhibitors.

Hideaki Nagase, Keith Brew
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引用次数: 85

Abstract

The tissue inhibitors of metalloproteinases (TIMPs) are endogenous inhibitors of the matrix metalloproteinases (MMPs), enzymes that play central roles in the degradation of extracellular matrix components. The balance between MMPs and TIMPs is important in the maintenance of tissues, and its disruption affects tissue homoeostasis. Four related TIMPs (TIMP-1 to TIMP-4) can each form a complex with MMPs in a 1:1 stoichiometry with high affinity, but their inhibitory activities towards different MMPs are not particularly selective. The three-dimensional structures of TIMP-MMP complexes reveal that TIMPs have an extended ridge structure that slots into the active site of MMPs. Mutation of three separate residues in the ridge, at positions 2, 4 and 68 in the amino acid sequence of the N-terminal inhibitory domain of TIMP-1 (N-TIMP-1), separately and in combination has produced N-TIMP-1 variants with higher binding affinity and specificity for individual MMPs. TIMP-3 is unique in that it inhibits not only MMPs, but also several ADAM (a disintegrin and metalloproteinase) and ADAMTS (ADAM with thrombospondin motifs) metalloproteinases. Inhibition of the latter groups of metalloproteinases, as exemplified with ADAMTS-4 (aggrecanase 1), requires additional structural elements in TIMP-3 that have not yet been identified. Knowledge of the structural basis of the inhibitory action of TIMPs will facilitate the design of selective TIMP variants for investigating the biological roles of specific MMPs and for developing therapeutic interventions for MMP-associated diseases.

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设计选择性金属蛋白酶抑制剂TIMP(组织金属蛋白酶抑制剂)变异。
金属蛋白酶的组织抑制剂(TIMPs)是内源性基质金属蛋白酶(MMPs)的抑制剂,在细胞外基质成分的降解中起核心作用。MMPs和TIMPs之间的平衡对组织的维持很重要,其破坏会影响组织的平衡。四种相关的timp (TIMP-1至TIMP-4)均能与MMPs以1:1的化学计量比例形成高亲和力的复合物,但它们对不同MMPs的抑制活性并没有特别的选择性。TIMP-MMP复合物的三维结构表明TIMPs具有延伸的脊状结构,该结构插入MMPs的活性位点。TIMP-1 n端抑制结构域(N-TIMP-1)氨基酸序列中2、4和68位的三个独立残基分别或联合突变,产生了对单个MMPs具有更高结合亲和力和特异性的N-TIMP-1变体。TIMP-3的独特之处在于它不仅抑制MMPs,还抑制几种ADAM(一种崩解素和金属蛋白酶)和ADAMTS(带有血栓反应蛋白基序的ADAM)金属蛋白酶。抑制后一组金属蛋白酶,如ADAMTS-4(聚集酶1),需要TIMP-3中尚未确定的额外结构元件。了解TIMP抑制作用的结构基础将有助于设计选择性TIMP变体,以研究特定MMPs的生物学作用,并开发针对mmp相关疾病的治疗干预措施。
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