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组织蛋白酶B中的封闭环决定了其前肽抑制作用的pH依赖性。

The occluding loop in cathepsin B defines the pH dependence of inhibition by its propeptide.

作者信息

Quraishi O, Nägler D K, Fox T, Sivaraman J, Cygler M, Mort J S, Storer A C

机构信息

Protein Engineering Network of Centres of Excellence, Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

Biochemistry. 1999 Apr 20;38(16):5017-23. doi: 10.1021/bi981950o.

Abstract

Papain-like proenzymes are prone to autoprocess under acidic pH conditions. Similarly, peptides derived from the proregion of cathepsin B are potent pH-dependent inhibitors of that enzyme; i.e., at pH 6.0 the inhibition of human cathepsin B by its propeptide is defined by slow binding kinetics with a Ki of 3.7 nM and at pH 4.0 by classical kinetics with a Ki of 82 nM. This pH dependency is essentially eliminated either by the removal of a portion of the enzyme's occluding loop through deletion mutagenesis or by the mutation of either residue Asp22 or His110 to alanine; e.g., the mutant enzyme His110Ala is inhibited by its propeptide with Ki's of 2.0 +/- 0.3 nM at pH 4.0 and 1.1 +/- 0.2 nM at pH 6.0. For the His110Ala mutant the inhibition also displays slow binding kinetics at both pH 4.0 and pH 6.0. As shown by the crystal structure of mature cathepsin B [Musil, D., et al. (1991) EMBO J. 10, 2321-2330] Asp22 and His110 form a salt bridge in the mature enzyme, and it has been shown that this bridge stabilizes the occluding loop in its closed position [Nägler, D. K., et al. (1997) Biochemistry 36, 12608-12615]. Thus the pH dependency of propeptide binding can be explained on the basis of a competitive binding between the occluding loop and the propeptide. At low pH, when the Asp22-His110 pair forms a salt bridge stabilizing the occluding loop in its closed conformation, the loop more effectively competes with the propeptide than at higher pH where deprotonation of His110 and the concomitant destruction of the Asp22-His110 salt bridge results in a destabilization of the closed form of the loop. The rate of autocatalytic processing of procathepsin B to cathepsin B correlates with the affinity of the enzyme for its propeptide rather than with its catalytic activity, thus suggesting a possible influence of occluding loop stability on the rate of processing.

摘要

木瓜蛋白酶样酶原在酸性pH条件下易于自我加工。同样,源自组织蛋白酶B前区的肽是该酶的有效pH依赖性抑制剂;即,在pH 6.0时,其前肽对人组织蛋白酶B的抑制作用由缓慢结合动力学定义,Ki为3.7 nM,在pH 4.0时由经典动力学定义,Ki为82 nM。通过缺失诱变去除酶的部分封闭环或通过将Asp22或His110残基突变为丙氨酸,基本上可以消除这种pH依赖性;例如,突变酶His110Ala在pH 4.0时被其前肽抑制,Ki为2.0±0.3 nM,在pH 6.0时为1.1±0.2 nM。对于His110Ala突变体,在pH 4.0和pH 6.0时抑制作用均表现出缓慢结合动力学。如成熟组织蛋白酶B的晶体结构所示[Musil, D.,等人(1991)《欧洲分子生物学组织杂志》10, 2321 - 2330],Asp22和His110在成熟酶中形成盐桥,并且已经表明该桥将封闭环稳定在其关闭位置[Nägler, D. K.,等人(1997)《生物化学》36, 12608 - 12615]。因此,前肽结合的pH依赖性可以基于封闭环与前肽之间的竞争性结合来解释。在低pH下,当Asp22 - His110对形成盐桥将封闭环稳定在其关闭构象时,该环比在较高pH下更有效地与前肽竞争,在较高pH下His110的去质子化以及随之而来的Asp22 - His110盐桥的破坏导致环的关闭形式不稳定。组织蛋白酶B原自催化加工为组织蛋白酶B的速率与酶对其前肽的亲和力相关,而不是与其催化活性相关,因此表明封闭环稳定性可能对加工速率有影响。

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