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睾丸蛋白聚糖1型结构域的双重浓度依赖性活性:组织蛋白酶L的特异性抑制剂和底物

Dual concentration-dependent activity of thyroglobulin type-1 domain of testican: specific inhibitor and substrate of cathepsin L.

作者信息

Meh Primoz, Pavsic Miha, Turk Vito, Baici Antonio, Lenarcic Brigita

机构信息

Department of Biochemistry and Molecular Biology, Jozef Stefan Institute, Jamova 39, SI-1000 Ljubljana, Slovenia.

出版信息

Biol Chem. 2005 Jan;386(1):75-83. doi: 10.1515/BC.2005.010.

Abstract

The thyroglobulin type-1 (Tg-1) domain is a protein module that occurs in a variety of secreted and membrane proteins and is recognised as a potent inhibitor of cysteine peptidases. We present here some properties of the Tg-1 domain of human testican, a modularly organised proteoglycan secreted mainly by brain cells, the exact in vivo function of which is not yet clear. The domain was prepared as a recombinant protein in a Pichia pastoris expression system and its activity was demonstrated by specific and selective inhibition of cathepsin L (K(i) =0.14 nM). Interaction at high enzyme and inhibitor concentrations resulted in degradation of the domain by cathepsin L, which was not observed under conditions used for the determination of kinetic parameters. No inhibitory activity could be detected for cathepsin K, but it exhibited a very similar degradation pattern. Homology modelling provided a good explanation for the different behaviour observed with the two enzymes. Firstly, the steric fit between the interfaces of testican domain and cathepsin L is stabilised by numerous favourable forces, while no such interactions are evident in the complex with cathepsin K, and repulsive interactions even prevent access of the domain to the active site of papain. Secondly, the prolonged first loop of the domain occupies a position near the catalytic cysteine residue in a more substrate-like manner, enabling cleavage of the Gly22-Ala23 bond.

摘要

甲状腺球蛋白1型(Tg-1)结构域是一种蛋白质模块,存在于多种分泌蛋白和膜蛋白中,被认为是半胱氨酸肽酶的有效抑制剂。我们在此介绍人睾丸糖蛋白(testican)的Tg-1结构域的一些特性,睾丸糖蛋白是一种主要由脑细胞分泌的模块化蛋白聚糖,其确切的体内功能尚不清楚。该结构域在毕赤酵母表达系统中制备成重组蛋白,通过对组织蛋白酶L的特异性和选择性抑制(K(i)=0.14 nM)证明了其活性。在高酶浓度和抑制剂浓度下的相互作用导致该结构域被组织蛋白酶L降解,而在用于测定动力学参数的条件下未观察到这种情况。对组织蛋白酶K未检测到抑制活性,但它表现出非常相似的降解模式。同源建模很好地解释了用这两种酶观察到的不同行为。首先,睾丸糖蛋白结构域与组织蛋白酶L的界面之间的空间契合通过众多有利作用力得以稳定,而在与组织蛋白酶K的复合物中没有明显的这种相互作用,甚至排斥相互作用阻止该结构域接近木瓜蛋白酶的活性位点。其次,该结构域延长的第一个环以更类似底物的方式占据靠近催化半胱氨酸残基的位置,使得能够切割Gly22-Ala23键。

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