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Circular trimers of gelatinase B/matrix metalloproteinase-9 constitute a distinct population of functional enzyme molecules differentially regulated by tissue inhibitor of metalloproteinases-1

机译:明胶酶B /基质金属蛋白酶9的圆形三聚体构成了由金属蛋白酶1组织抑制剂差异调节的独特功能酶分子群体

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摘要

Gelatinase B/matrix metalloproteinase-9 (MMP-9) (EC 3.4.24.35) cleaves many substrates and is produced by most cell types as a zymogen, proMMP-9, in complex with the tissue inhibitor of metalloproteinases-1 (TIMP-1). Natural proMMP-9 occurs as monomers, homomultimers, and heterocomplexes, but our knowledge about the overall structure of proMMP-9 monomers and multimers is limited. We investigated biochemical, biophysical, and functional characteristics of zymogen and activated forms of MMP-9 monomers and multimers. In contrast to a conventional notion of a dimeric nature of MMP-9 homomultimers, we demonstrate that these are reduction-sensitive trimers. Based on the information from electrophoresis, atomic force microscopy (AFM) and transmission electron microscopy (TEM), we generated a 3Dstructure model of the proMMP-9 trimer. Remarkably, the proMMP-9 trimers possessed a 50-fold higher affinity for TIMP-1 than the monomers. In vivo, this finding was reflected in a higher extent of TIMP-1 inhibition of angiogenesis induced by trimers versus monomers. Our results show that proMMP-9 trimers constitute a novel structural and functional entity that is differentially regulated by TIMP-1.
机译:明胶酶B /基质金属蛋白酶9(MMP-9)(EC 3.4.24.35)裂解许多底物,并由大多数细胞类型作为酶原proMMP-9与金属蛋白酶-1(TIMP-1)的组织抑制剂结合产生)。天然的proMMP-9以单体,均聚物和杂合物的形式出现,但是我们对proMMP-9单体和多聚物的整体结构的了解有限。我们调查了酶原和MMP-9单体和多聚体活化形式的生化,生物物理和功能特征。与MMP-9同型多聚体的二聚体性质的常规概念相反,我们证明了它们是还原敏感性三聚体。基于电泳,原子力显微镜(AFM)和透射电子显微镜(TEM)的信息,我们生成了proMMP-9三聚体的3D结构模型。值得注意的是,proMMP-9三聚体对TIMP-1的亲和力比单体高50倍。在体内,这一发现反映在三聚体相对于单体诱导的TIMP-1抑制血管生成的程度更高。我们的结果表明proMMP-9三聚体构成了TIMP-1差异调节的新型结构和功能实体。

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