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人胱抑素A(丝抑素A)的甘氨酸-4在靶蛋白酶结合中的作用。通过动力学和平衡方法对胱抑素A甘氨酸-4突变体与木瓜蛋白酶、组织蛋白酶B和组织蛋白酶L相互作用的表征。

The role of Gly-4 of human cystatin A (stefin A) in the binding of target proteinases. Characterization by kinetic and equilibrium methods of the interactions of cystatin A Gly-4 mutants with papain, cathepsin B, and cathepsin L.

作者信息

Estrada S, Nycander M, Hill N J, Craven C J, Waltho J P, Björk I

机构信息

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

出版信息

Biochemistry. 1998 May 19;37(20):7551-60. doi: 10.1021/bi980026r.

Abstract

The importance of the evolutionarily conserved Gly-4 residue for the affinity and kinetics of interaction of cystatin A with several cysteine proteinases was assessed by site-directed mutagenesis. Even the smallest replacement, by Ala, resulted in approximately 1000-, approximately 10- and approximately 6000-fold decreased affinities for papain, cathepsin L, and cathepsin B, respectively. Substitution by Ser gave further 3-8-fold reductions in affinity, whereas the largest decreases, >10(5)-fold, were observed for mutations to Arg and Glu. The kinetics of inhibition of papain by the mutants with small side chains, Ala and Ser, were compatible with a one-step bimolecular reaction similar to that with wild-type cystatin A. The decreased affinities of these mutants for papain and cathepsin L were due exclusively to increased dissociation rate constants, but the reduced affinities for cathepsin B were due also to decreased association rate constants. The latter finding indicates that the intact N-terminal region serves as a guide directing cystatin A to the active site of cathepsin B, as has been proposed for cystatin C. The kinetics of binding of the mutants with charged side chains, Arg and Glu, to papain were consistent with a two-step binding mechanism, in which the mutant side chains are accommodated in the complex by a conformational change. The NMR solution structure of the Ala and Trp mutants showed only minor changes compared with wild-type cystatin A, indicating that the large reductions in affinity for proteinases are not due to altered structures of the mutants. Instead, a side chain larger than a hydrogen atom at position 4 affects the interaction with the proteinase most likely by interfering with the binding of the N-terminal region.

摘要

通过定点诱变评估了进化保守的甘氨酸 -4 残基对胱抑素 A 与几种半胱氨酸蛋白酶相互作用的亲和力和动力学的重要性。即使是最小的替换,用丙氨酸替换,分别导致对木瓜蛋白酶、组织蛋白酶 L 和组织蛋白酶 B 的亲和力降低约 1000 倍、约 10 倍和约 6000 倍。用丝氨酸替换导致亲和力进一步降低 3 - 8 倍,而突变为精氨酸和谷氨酸时观察到最大降幅,>10⁵ 倍。小侧链突变体(丙氨酸和丝氨酸)对木瓜蛋白酶的抑制动力学与类似于野生型胱抑素 A 的一步双分子反应一致。这些突变体对木瓜蛋白酶和组织蛋白酶 L 的亲和力降低完全是由于解离速率常数增加,但对组织蛋白酶 B 的亲和力降低也归因于缔合速率常数降低。后一发现表明,完整的 N 端区域充当将胱抑素 A 导向组织蛋白酶 B 活性位点的引导物,正如对胱抑素 C 所提出的那样。带电荷侧链(精氨酸和谷氨酸)的突变体与木瓜蛋白酶结合的动力学与两步结合机制一致,其中突变体侧链通过构象变化容纳在复合物中。丙氨酸和色氨酸突变体的核磁共振溶液结构与野生型胱抑素 A 相比仅显示出微小变化,表明对蛋白酶亲和力的大幅降低不是由于突变体结构改变。相反,4 位大于氢原子的侧链最有可能通过干扰 N 端区域的结合来影响与蛋白酶的相互作用。

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