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酵母己糖激酶中一个必需谷氨酰胺残基的证据。

Evidence for an essential glutamyl residue in yeast hexokinase.

作者信息

Pho D B, Roustan C, Tot A N, Pradel L A

出版信息

Biochemistry. 1977 Oct 4;16(20):4533-7. doi: 10.1021/bi00639a031.

Abstract

Yeast hexokinase is rapidly inactivated by 1-cyclohexyl-3-(2-morpholinoethyl)carbodiimide metho-p-toluenesulfonate and nitrotyrosyl ethyl ester. Sugar substrates afford a partial protection, which is increased by the addition of ADP. Inactivation of the enzyme takes place concomitantly with the incorporation of 1 mol of nitrotyrosine per mol of 50 000-dalton subunit. Exhaustive proteolytic digestion of the modified protein and isolation of the nitrotyrosyl peptide by affinity chromatography, followed by electrophoresis, lead to the identification of the modified residue as a glutamyl residue. This modification of hexokinase occurs without gross conformational changes. The enzyme still binds its substrates, though binding of the nucleotides is perturbed. While the substrates afford a partial protection, they increase the incorporation of nitrotyrosine ethyl ester into the enzyme. This may be attributed to local conformational changes which their binding induces. It is concluded that a glutamyl residue is essential for yeast hexokinase activity and its catalytic function is discussed.

摘要

酵母己糖激酶可被1-环己基-3-(2-吗啉代乙基)碳二亚胺对甲苯磺酸盐和硝基酪氨酸乙酯迅速失活。糖类底物能提供部分保护作用,添加ADP可增强这种保护。酶的失活与每摩尔50000道尔顿亚基掺入1摩尔硝基酪氨酸同时发生。对修饰后的蛋白质进行彻底的蛋白酶消化,并通过亲和色谱法分离硝基酪氨酸肽,随后进行电泳,从而鉴定出修饰的残基为谷氨酰胺残基。己糖激酶的这种修饰发生时没有明显的构象变化。该酶仍能结合其底物,尽管核苷酸的结合受到了干扰。虽然底物能提供部分保护,但它们会增加硝基酪氨酸乙酯掺入酶中的量。这可能归因于它们的结合所诱导的局部构象变化。得出结论,谷氨酰胺残基对酵母己糖激酶活性至关重要,并对其催化功能进行了讨论。

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