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肽和胶原蛋白三螺旋酶活性的关键分子决定因素存在于基质金属蛋白酶8(MMP-8)的S3'亚位点:天冬酰胺188和酪氨酸189的氢键潜力以及连接顺式键的作用。

Pivotal molecular determinants of peptidic and collagen triple helicase activities reside in the S3' subsite of matrix metalloproteinase 8 (MMP-8): the role of hydrogen bonding potential of ASN188 and TYR189 and the connecting cis bond.

作者信息

Pelman Gayle R, Morrison Charlotte J, Overall Christopher M

机构信息

University of British Columbia Centre for Blood Research and the Canadian Institutes for Health Research Group in Matrix Dynamics, University of British Columbia, Vancouver, Canada.

出版信息

J Biol Chem. 2005 Jan 21;280(3):2370-7. doi: 10.1074/jbc.M409603200. Epub 2004 Nov 8.

Abstract

The mechanism of triple helical collagen unwinding and cleavage by collagenases in the matrix metalloproteinase (MMP) family is complex and remains enigmatic. Recent reports show that triple helicase activity is initiated by the hemopexin C domain of membrane type 1-MMP, whereas catalytically inactive full-length interstitial collagenase (MMP-1) exhibits full triple helicase functionality pointing to active site determinants that are needed to complete the triple helicase mechanism. In MMP-8, the neutrophil collagenase, a conserved Gly at the S(3)' substrate specificity subsite is replaced by Asn(188) that forms a highly unusual cis bond with Tyr(189), a conserved active site residue in the collagenases. Only in MMP-1 is the S(3)' Gly also replaced, and there too a cis configured Glu-Tyr occurs. Thus, this high energy peptide bond coupled to the canonical Tyr may be important in the collagenolytic process. In a systematic mutagenesis investigation of the MMP-8 S(3)' subsite we found that introducing an S(3)' Gly(188) into MMP-8 reduced collagenolytic efficiency by approximately 30% with a corresponding reduction in cleavage of a synthetic peptide fluorescence resonance energy transfer substrate analogue of the alpha2(I) collagen chain cleavage site. The substitution of Asn(188) to Leu, a hydrophobic residue of similar size to the highly polar Asn and designed to retain the cis bond, revealed the importance of hydrogen bonding to bound substrate with both collagenolytic and peptidic activities reduced approximately 3-fold. In contrast, the specificity for type I collagen of the mutant Y189F dropped 3-fold without any significant alteration in general peptidase activity. Therefore, S(3)' and in particular the hydrogen bonding potential of Tyr(189) is a specific molecular determinant for MMP-8 triple helicase activity. The cis bond connection to Asn(188) juxtaposes these two side chains for closely spaced hydrogen bonding with substrate that improves collagenolytic and general catalytic efficiency that could be exploited for new collagenase-specific inhibitor drugs.

摘要

基质金属蛋白酶(MMP)家族中的胶原酶使三螺旋胶原解旋并裂解的机制复杂,仍不清楚。最近的报道表明,三螺旋酶活性由膜型1-MMP的血红素结合蛋白C结构域启动,而催化无活性的全长间质胶原酶(MMP-1)表现出完全的三螺旋酶功能,这表明完成三螺旋酶机制需要活性位点决定因素。在中性粒细胞胶原酶MMP-8中,S(3)'底物特异性亚位点处保守的甘氨酸被天冬酰胺(Asn(188))取代,后者与胶原酶中保守的活性位点残基酪氨酸(Tyr(189))形成高度不寻常的顺式键。只有在MMP-1中,S(3)'甘氨酸也被取代,并且同样出现了顺式构型的谷氨酸-酪氨酸。因此,这种与典型酪氨酸偶联的高能肽键可能在胶原降解过程中起重要作用。在对MMP-8的S(3)'亚位点进行的系统诱变研究中,我们发现将S(3)'甘氨酸(Gly(188))引入MMP-8会使胶原降解效率降低约30%,同时α2(I)胶原链裂解位点的合成肽荧光共振能量转移底物类似物的裂解也相应减少。将天冬酰胺(Asn(188))替换为亮氨酸,亮氨酸是与高度极性的天冬酰胺大小相似的疏水残基,旨在保留顺式键,这揭示了氢键对结合底物的重要性,胶原降解活性和肽酶活性均降低了约3倍。相比之下,突变体Y189F对I型胶原的特异性降低了3倍,而一般肽酶活性没有任何显著改变。因此,S(3)',特别是酪氨酸(Tyr(189))的氢键潜力是MMP-8三螺旋酶活性的特定分子决定因素。与天冬酰胺(Asn(188))的顺式键连接使这两个侧链并列,以便与底物紧密间隔形成氢键,从而提高胶原降解和一般催化效率,这可用于开发新的胶原酶特异性抑制剂药物。

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