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通过光谱、动力学和平衡方法对重组人胱抑素A(丝抑素A)与半胱氨酸蛋白酶之间相互作用的表征。

Characterization by spectroscopic, kinetic and equilibrium methods of the interaction between recombinant human cystatin A (stefin A) and cysteine proteinases.

作者信息

Pol E, Olsson S L, Estrada S, Prasthofer T W, Björk I

机构信息

Department of Veterinary Medical Chemistry, Swedish University of Agricultural Sciences, Uppsala.

出版信息

Biochem J. 1995 Oct 1;311 ( Pt 1)(Pt 1):275-82. doi: 10.1042/bj3110275.

Abstract

The near-UV spectroscopic changes induced by the binding of recombinant human cystatin A to papain were appreciably different from those induced by cystatin C, reflecting mainly interactions involving the single tryptophan of cystatin C, Trp-106. Cystatin A bound tightly and rapidly to papain and cathepsin L, with dissociation equilibrium constants of approximately 10(-11)-10(-13) M and association rate constants of 3 x 10(6)-5 x 10(6) M-1.s-1. These affinities are at least 50-100-fold higher than previously reported values. The kinetics of binding to papain were consistent with a simple reversible bimolecular reaction mechanism, indicating that cystatin A, like chicken cystatin and cystatin C, binds to papain with no appreciable conformational adaptation of either reacting protein. Cystatin A bound more weakly to actinidin and cathepsins B, C and H, with dissociation equilibrium constants of 10(-8)-10(-9) M. The weaker binding to cathepsin B was largely due to a considerably reduced association rate constant (approximately 4 x 10(4) M-1.s-1), consistent with the 'occluding loop' of cathepsin B markedly restricting the access of cystatin A to the active site. The lower affinities for actinidin and cathepsins C and H were due partly to lower association rate constants (2 x 10(5)-6 x 10(5) M-1.s-1) but primarily to higher dissociation rate constants. The mode of binding of cystatin A to inactivated papains indicated that there is appreciably less space around the active-site cysteine of papain in the complex with cystatin A than in the complexes with chicken cystatin and cystatin C. An N-terminally truncated form of cystatin A, lacking the first six residues, had considerably lower affinity for papain than the full-length inhibitor, consistent with an intact N-terminal region being of importance for proteinase binding.

摘要

重组人胱抑素A与木瓜蛋白酶结合所诱导的近紫外光谱变化与胱抑素C所诱导的变化明显不同,这主要反映了涉及胱抑素C的单个色氨酸(Trp-106)的相互作用。胱抑素A与木瓜蛋白酶和组织蛋白酶L紧密且快速结合,解离平衡常数约为10^(-11)-10^(-13) M,缔合速率常数为3×10^6-5×10^6 M^(-1)·s^(-1)。这些亲和力比先前报道的值至少高50-100倍。与木瓜蛋白酶结合的动力学符合简单的可逆双分子反应机制,表明胱抑素A与鸡胱抑素和胱抑素C一样,与木瓜蛋白酶结合时两种反应蛋白均无明显的构象适应性变化。胱抑素A与猕猴桃蛋白酶以及组织蛋白酶B、C和H的结合较弱,解离平衡常数为10^(-8)-10^(-9) M。与组织蛋白酶B结合较弱主要是由于缔合速率常数大幅降低(约4×10^4 M^(-1)·s^(-1)),这与组织蛋白酶B的“封闭环”显著限制胱抑素A进入活性位点一致。对猕猴桃蛋白酶以及组织蛋白酶C和H的亲和力较低部分是由于缔合速率常数较低(2×10^5-6×10^5 M^(-1)·s^(-1)),但主要是由于解离速率常数较高。胱抑素A与失活木瓜蛋白酶的结合模式表明,与鸡胱抑素和胱抑素C形成的复合物相比,在与胱抑素A形成的复合物中,木瓜蛋白酶活性位点半胱氨酸周围的空间明显更小。一种N端截短的胱抑素A形式,缺少前六个残基,对木瓜蛋白酶的亲和力比全长抑制剂低得多,这与完整的N端区域对蛋白酶结合很重要一致。

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