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来自球形黑粉菌的核糖核酸酶U2的乙氧基甲酰化作用

Ethoxyformylation of ribonuclease U2 form Ustilago sphaerogena.

作者信息

Sato S, Uchida T

出版信息

J Biochem. 1975 Apr;77(4):795-800. doi: 10.1093/oxfordjournals.jbchem.a130784.

Abstract

RNase U2 was inactivated by incubation with ethoxyformic anhydride at pH 6.0 and pH 4.5. The absorbance of the RNase U2 increased at around 250 nm and decreased at around 280 nm. The inactivation occurred in parallel with the amount of modified histidine and plots of the relationship between the remaining activity and the modified histidine suggested that the modification of one of the two histidine residues totally inactivated the enzyme. The inactivated enzyme RNase U2 was reactivated by a low concentration of hydroxyamine, with removal of the ethoxyformyl group from the modified histidine residue. At pH 4.5, 2'-adenylate and 2'-guanylate protected RNase U2 from inactivation by ethoxyformic anhydride. The difference CD spectra showed that the ability of RNase U2 to form a complex with 2'-adenylate was lost on ethoxyformylation.

摘要

通过在pH 6.0和pH 4.5条件下与乙氧基甲酸酐温育,核糖核酸酶U2被灭活。核糖核酸酶U2在约250nm处吸光度增加,在约280nm处吸光度降低。灭活与修饰的组氨酸量平行发生,剩余活性与修饰组氨酸之间关系的曲线表明,两个组氨酸残基之一的修饰使酶完全失活。通过低浓度的羟胺可使失活的核糖核酸酶U2重新激活,同时从修饰的组氨酸残基上去除乙氧甲酰基。在pH 4.5时,2'-腺苷酸和2'-鸟苷酸可保护核糖核酸酶U2不被乙氧基甲酸酐灭活。差示圆二色光谱表明,核糖核酸酶U2与2'-腺苷酸形成复合物的能力在乙氧甲酰化后丧失。

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