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一种特异性脱乙酰酶使明胶红假单胞菌的柠檬酸裂解酶失活以及L-(+)-谷氨酸对这种失活的抑制作用

Inactivation of citrate lyase from Rhodopseudomonas gelatinosa by a specific deacetylase and inhibition of this inactivation by L-(+1-glutamate.

作者信息

Giffhorn F, Gottschalk G

出版信息

J Bacteriol. 1975 Dec;124(3):1052-61. doi: 10.1128/jb.124.3.1052-1061.1975.

Abstract

A previously unrecognized enzyme, citrate lyase deacetylase, has been purified about 140-fold from cell extracts of Rhodopseudomonas gelatinosa. It catalyzed the conversion of enzymatically active acetyl-S-citrate lyase into the inactive HS-form and acetate. The enzyme exhibited an optimal rate of inactivation at pH 8.1. Because of the instability of acetyl-S-citrate lyase at acidic and alkaline pH values, all assays were carried out at pH 7.2, where the spontaneous hydrolysis of the acetyl-S-citrate lyase was negligible and deacetylase showed 70% of the activity at pH 8.1. The apparent Km value for citrate lyase was 10(-7) M at pH 7.2 and 30 C. The activity of the deacetylase was restricted to the citrate lyase from R. gelatinosa. The corresponding lyases from Enterobacter aerogenes (formerly Klebsiella aerogenes) and Streptococcus diacetilactis were not deacetylated; likewise, thioesters such as acetyl-S coenzyme A, acetoacetyl-S coenzyme A, and N-acetyl-S-acetyl-cysteamine were also not hydrolyzed. Citrate lyase deacetylase was present in very small amounts in cells of R. gelatinosa grown with acetate or succinate; it was induced by citrate along with the citrate lyase. L-(+)-Glutamate strongly inhibited the deacetylase. Fifty percent inhibition was obtained at a concentration of 1.4 X 10(-4) L-(+)-glutamate. D-(-)-Glutamate, alpha-ketoglutarate, L-alpha-hydroxyglutarate, L-(-)-proline, and other metabolites were less effective.

摘要

一种先前未被识别的酶,柠檬酸裂解酶脱乙酰酶,已从胶状红假单胞菌的细胞提取物中纯化了约140倍。它催化有酶活性的乙酰 - S - 柠檬酸裂解酶转化为无活性的HS形式和乙酸盐。该酶在pH 8.1时表现出最佳失活速率。由于乙酰 - S - 柠檬酸裂解酶在酸性和碱性pH值下不稳定,所有测定均在pH 7.2下进行,在该pH值下乙酰 - S - 柠檬酸裂解酶的自发水解可忽略不计,且脱乙酰酶在pH 8.1时显示出70%的活性。在pH 7.2和30℃下,柠檬酸裂解酶的表观Km值为10(-7) M。脱乙酰酶的活性仅限于胶状红假单胞菌的柠檬酸裂解酶。产气肠杆菌(以前的产气克雷伯菌)和双乙酰乳链球菌的相应裂解酶未被脱乙酰化;同样,硫酯如乙酰 - S - 辅酶A、乙酰乙酰 - S - 辅酶A和N - 乙酰 - S - 乙酰半胱胺也未被水解。柠檬酸裂解酶脱乙酰酶在以乙酸盐或琥珀酸盐生长的胶状红假单胞菌细胞中含量极少;它与柠檬酸裂解酶一起由柠檬酸盐诱导产生。L-(+)-谷氨酸强烈抑制脱乙酰酶。在1.4×10(-4) L-(+)-谷氨酸浓度下可获得50%的抑制率。D-(-)-谷氨酸、α-酮戊二酸、L-α-羟基戊二酸、L-(-)-脯氨酸和其他代谢物的抑制作用较弱。

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