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同源大肠杆菌2-氨基-3-酮丁酸辅酶A连接酶(一种依赖磷酸吡哆醛的酶)的纯化、性质及N端氨基酸序列

Purification, properties, and N-terminal amino acid sequence of homogeneous Escherichia coli 2-amino-3-ketobutyrate CoA ligase, a pyridoxal phosphate-dependent enzyme.

作者信息

Mukherjee J J, Dekker E E

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109-0606.

出版信息

J Biol Chem. 1987 Oct 25;262(30):14441-7.

PMID:3117785
Abstract

Starting with 100 g (wet weight) of a mutant of Escherichia coli K-12 forced to grow on L-threonine as sole carbon source, we developed a 6-step procedure that provides 30-40 mg of homogeneous 2-amino-3-ketobutyrate CoA ligase (also called aminoacetone synthetase or synthase). This ligase, which catalyzes the cleavage/condensation reaction between 2-amino-3-ketobutyrate (the presumed product of the L-threonine dehydrogenase-catalyzed reaction) and glycine + acetyl-CoA, has an apparent molecular weight approximately equal to 85,000 and consists of two identical (or nearly identical) subunits with Mr = 42,000. Computer analysis of amino acid composition data, which gives the best fit nearest integer ratio for each residue, indicates a total of 387 amino acids/subunit with a calculated Mr = 42,093. Stepwise Edman degradation provided the N-terminal sequence of the first 21 amino acids. It is a pyridoxal phosphate-dependent enzyme since (a) several carbonyl reagents caused greater than 90% loss of activity, (b) dialysis against buffer containing hydroxylamine resulted in 89% loss of activity coincident with an 86% decrease in absorptivity at 428 nm, (c) incubation of the apoenzyme with 20 microM pyridoxal phosphate showed a parallel recovery (greater than 90%) of activity and 428-nm absorptivity, and (d) reduction of the holoenzyme with NaBH4 resulted in complete inactivation, disappearance of a new absorption maximum at 333 nm. Strict specificity for glycine is shown but acetyl-CoA (100%), n-propionyl-CoA (127%), or n-butyryl-CoA (16%) is utilized in the condensation reaction. Apparent Km values for acetyl-CoA, n-propionyl-CoA, and glycine are 59 microM, 80 microM, and 12 mM, respectively; the pH optimum = 7.5. Added divalent metal ions or sulfhydryl compounds inhibited catalysis of the condensation reaction.

摘要

从100克(湿重)在L-苏氨酸作为唯一碳源上被迫生长的大肠杆菌K-12突变体开始,我们开发了一种六步程序,可提供30 - 40毫克的纯2-氨基-3-酮丁酸辅酶A连接酶(也称为氨基丙酮合成酶或合酶)。这种连接酶催化2-氨基-3-酮丁酸(L-苏氨酸脱氢酶催化反应的假定产物)与甘氨酸+乙酰辅酶A之间的裂解/缩合反应,其表观分子量约为85,000,由两个相同(或几乎相同)的亚基组成,Mr = 42,000。对氨基酸组成数据的计算机分析给出了每个残基最接近整数比的最佳拟合,表明每个亚基共有387个氨基酸,计算得出的Mr = 42,093。逐步埃德曼降解提供了前21个氨基酸的N端序列。它是一种依赖磷酸吡哆醛的酶,因为(a)几种羰基试剂导致活性损失超过90%,(b)用含羟胺的缓冲液透析导致活性损失89%,同时在428nm处的吸光度下降86%,(c)脱辅酶与20μM磷酸吡哆醛孵育显示活性和428nm吸光度平行恢复(大于90%),(d)用NaBH4还原全酶导致完全失活,333nm处新的吸收最大值消失。显示出对甘氨酸的严格特异性,但在缩合反应中使用乙酰辅酶A(100%)、正丙酰辅酶A(127%)或正丁酰辅酶A(16%)。乙酰辅酶A、正丙酰辅酶A和甘氨酸的表观Km值分别为59μM、80μM和12mM;最适pH = 7.5。添加二价金属离子或巯基化合物会抑制缩合反应的催化作用。

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