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去除封闭环接触后,人组织蛋白酶B的内肽酶活性大幅增加。

Major increase in endopeptidase activity of human cathepsin B upon removal of occluding loop contacts.

作者信息

Nägler D K, Storer A C, Portaro F C, Carmona E, Juliano L, Ménard R

机构信息

Biotechnology Research Institute, National Research Council of Canada, Montreal, Quebec, H4P2R2 Canada.

出版信息

Biochemistry. 1997 Oct 14;36(41):12608-15. doi: 10.1021/bi971264+.

Abstract

The main feature distinguishing cathepsin B from other cysteine proteases of the papain family is the presence of a large insertion loop, termed the occluding loop, which occupies the S' subsites of the enzyme. The loop is held in place mainly by two contacts with the rest of the enzyme, involving residues His110 and Arg116 on the loop that form salt bridges with Asp22 and Asp224, respectively. The influence of this loop on the endopeptidase activity of cathepsin B has been investigated using site-directed mutagenesis and internally quenched fluorogenic (IQF) substrates. Wild-type cathepsin B displays poor activity against the substrates Abz-AFRSAAQ-EDDnp and Abz-QVVAGA-EDDnp as compared to cathepsin L and papain. Appreciable increases in kcat/KM were observed for cathepsin B containing the single mutations D22A, H110A, R116A, and D224A. The highest activity however is observed for mutants where both loop to enzyme contacts are disrupted. For the triple-mutant D22A/H110A/R116A, an optimum kcat/KM value of 12 x 10(5) M-1 s-1 was obtained for hydrolysis of Abz-AFRSAAQ-EDDnp, which corresponds to a 600-fold increase relative to wild-type cathepsin B and approaches the level of activity observed with cathepsin L or papain. By comparison, the mutations have little effect on the hydrolysis of Cbz-FR-MCA. The influence of the mutations on the pH dependency of activity also indicates that the complexity of pH activity profiles normally observed for cathepsin B is related to the presence of the occluding loop. The major increase in endopeptidase activity is attributed to an increase in loop "flexibility" and suggests that the occluding loop might move when an endopeptidase substrate binds to the enzyme. The possible contribution of these interactions in regulating endopeptidase activity and the implications for cathepsin B activity in physiological or pathological conditions are discussed.

摘要

组织蛋白酶B与木瓜蛋白酶家族其他半胱氨酸蛋白酶的主要区别特征是存在一个大的插入环,称为封闭环,它占据了该酶的S'亚位点。该环主要通过与酶的其余部分的两个接触固定在位,这涉及环上的His110和Arg116残基,它们分别与Asp22和Asp224形成盐桥。已使用定点诱变和内部淬灭荧光(IQF)底物研究了该环对组织蛋白酶B的内肽酶活性的影响。与组织蛋白酶L和木瓜蛋白酶相比,野生型组织蛋白酶B对底物Abz-AFRSAAQ-EDDnp和Abz-QVVAGA-EDDnp的活性较差。对于含有单突变D22A、H110A、R116A和D224A的组织蛋白酶B,观察到kcat/KM有明显增加。然而,对于两个环与酶的接触均被破坏的突变体,观察到最高活性。对于三突变体D22A/H110A/R116A,水解Abz-AFRSAAQ-EDDnp时获得的最佳kcat/KM值为12×10(5) M-1 s-1,这相对于野生型组织蛋白酶B增加了600倍,接近组织蛋白酶L或木瓜蛋白酶观察到的活性水平。相比之下,这些突变对Cbz-FR-MCA的水解影响很小。突变对活性pH依赖性的影响还表明,通常观察到的组织蛋白酶B的pH活性曲线的复杂性与封闭环的存在有关。内肽酶活性的主要增加归因于环“柔韧性”的增加,这表明当内肽酶底物与酶结合时,封闭环可能会移动。讨论了这些相互作用在调节内肽酶活性中的可能作用以及在生理或病理条件下对组织蛋白酶B活性的影响。

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