首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structural and enzymatic characterization of a purified prohormone-processing enzyme: secreted soluble Kex2 protease.
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Structural and enzymatic characterization of a purified prohormone-processing enzyme: secreted soluble Kex2 protease.

机译:纯化的激素原加工酶的结构和酶学表征:分泌的可溶性Kex2蛋白酶。

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摘要

The prohormone-processing Kex2 protease of the budding yeast Saccharomyces cerevisiae can be converted from an intracellular membrane protein to a soluble, secreted, and active form by deletion of the transmembrane domain and C-terminal tail. One such molecule was purified to near homogeneity from the culture medium of an overexpressing yeast strain. Amino acid sequence analysis revealed that the N terminus of mature Kex2 protease is created by a potentially autoproteolytic cleavage at Lys108-Arg109, prior to the domain homologous to subtilisin, followed by trimming of Leu-Pro and Val-Pro dipeptides by the Ste13 dipeptidyl aminopeptidase. Kinetic parameters were examined using fluorogenic peptidyl-methylcoumarin amide substrates. Initial burst titration indicated that the preparation was entirely active. Measurements of dependence of activity on pH yielded a simple curve suggesting titration of a single ionizable group. Activity was half-maximal at pH 5.7 and nearly constant from pH 6.5 to 9.5. Discrimination between substrates was as great as 360-fold in Km and 130-fold in kcat. Substrates with a Lys-Arg dipeptide preceding the cleaved bond were preferred, having kcat/Km values up to 1.1 x 10(7) sec-1.M-1. The enzyme cleaved substrates having Arg-Arg, Pro-Arg, Ala-Arg, and Thr-Arg with increased Km but with unchanged kcat. In contrast, the enzyme displayed a dramatically lower kcat for a Lys-Lys substrate with a smaller increase in Km. Thus the two residues preceding the cleaved bond may play distinct roles in the selectivity of binding and cleavage of prohormone substrates.
机译:可以通过删除跨膜结构域和C末端尾巴,将出芽的酵母酿酒酵母的原激素处理Kex2蛋白酶从细胞内膜蛋白转化为可溶,分泌和活性形式。从过表达的酵母菌株的培养基中纯化出一个这样的分子至接近均质。氨基酸序列分析表明,成熟的Kex2蛋白酶的N端是通过在Lys108-Arg109处潜在的蛋白水解切割而产生的,然后与枯草杆菌蛋白酶同源,然后通过Ste13二肽基氨基肽酶修剪Leu-Pro和Val-Pro二肽。 。使用荧光肽基-甲基香豆素酰胺底物检查动力学参数。初始猝发滴定表明该制剂完全有效。活性对pH的依赖性的测量产生了一条简单的曲线,表明了单个可电离基团的滴定。在pH 5.7时活性是最大一半,在pH 6.5至9.5时几乎恒定。底物之间的区分以Km计高达360倍,以kcat则高达130倍。优选具有在裂解键之前的Lys-Arg二肽的底物,其kcat / Km值最高达1.1×10(7)sec-1.M-1。酶裂解的底物具有Km增加但kcat不变的Arg-Arg,Pro-Arg,Ala-Arg和Thr-Arg。相反,该酶显示Lys-Lys底物的kcat大大降低,Km增加较小。因此,裂解键之前的两个残基可能在激素原底物的结合和裂解的选择性中起不同的作用。

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