A Designed Peptide Ligase for Total Synthesis of Ribonuclease A with Unnatural Catalytic Residues

化学 牛胰核糖核酸酶 核糖核酸酶P 核糖核酸酶 组氨酸 胰核糖核酸酶 S-标签 质子化 立体化学 核糖核酸酶H 化学结扎 酶动力学 氨基酸 枯草杆菌素 催化作用 水解 生物化学 核糖核酸 活动站点 有机化学 基因 离子
作者
David Y. Jackson,John Burnier,Clifford Quan,Mark Stanley,Jeffrey Tom,James A. Wells
出处
期刊:Science [American Association for the Advancement of Science]
卷期号:266 (5183): 243-247 被引量:272
标识
DOI:10.1126/science.7939659
摘要

An engineered variant of subtilisin BPN', termed subtiligase, which efficiently ligates esterified peptides in aqueous solution, was used for the complete synthesis of ribonuclease (RNase) A that contains unnatural catalytic residues. Fully active RNase A (124 residues long) was produced in milligram quantities by stepwise ligation of six esterified peptide fragments (each 12 to 30 residues long) at yields averaging 70 percent per ligation. Variants of RNase A were produced in which the catalytic histidines at positions 12 and 119 were substituted with the unnatural amino acid 4-fluorohistidine, which has a p K a of 3.5 compared to 6.8 for histidine. Large changes in the profile of the pH as it affects rate occurred for the single and double mutants with surprisingly little change in the k cat for either the RNA cleavage or hydrolysis steps. The data indicate that these imidazoles function as general acids and bases, but that the proton transfer steps are not rate-limiting when the imidazoles are present in their correct protonation states. These studies indicate the potential of subtiligase for the blockwise synthesis of large proteins.

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