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脂肪酰 - AMP作为发光细菌中脂肪酸还原为醛的中间体。

Fatty acyl-AMP as an intermediate in fatty acid reduction to aldehyde in luminescent bacteria.

作者信息

Rodriguez A, Meighen E

出版信息

J Biol Chem. 1985 Jan 25;260(2):771-4.

PMID:3968067
Abstract

The acyl protein synthetase component (50K) of the fatty acid reductase complex from the luminescent system of Photobacterium phosphoreum has been found to catalyze the activation of fatty acid via formation of an enzyme bound acyl-AMP (carboxyphosphate mixed anhydride) immediately prior to the acylation of the enzyme. PPi-ATP exchange and nucleotide binding experiments are dependent on fatty acid and indicate that the fatty acyl-AMP is directly formed and that an adenylated enzyme intermediate is not part of the mechanism. The formation of acyl-AMP from fatty acid and ATP is reversible with a standard free energy of -2 kcal/mol, and is dependent on Mg2+. The fatty acyl-AMP intermediate has been isolated and shown to be part of the pathway of fatty acid reduction. The 34K component of the complex, which strongly stimulates the acylation of the 50K protein by fatty acyl-AMP or fatty acid and ATP, is not required for the formation of acyl-AMP showing that it differentially affects the fatty acid activation and acylation steps catalyzed by the 50K protein.

摘要

已经发现,来自发光杆菌发光系统的脂肪酸还原酶复合物的酰基蛋白合成酶组分(50K)在酶酰化之前,通过形成酶结合的酰基 - AMP(羧基磷酸混合酐)来催化脂肪酸的活化。PPi - ATP交换和核苷酸结合实验依赖于脂肪酸,并表明直接形成了脂肪酰 - AMP,且腺苷化的酶中间体不是该机制的一部分。脂肪酸和ATP形成酰基 - AMP的过程是可逆的,标准自由能为 - 2千卡/摩尔,并且依赖于Mg2 +。脂肪酰 - AMP中间体已被分离出来,并被证明是脂肪酸还原途径的一部分。该复合物的34K组分强烈刺激脂肪酰 - AMP或脂肪酸和ATP对50K蛋白的酰化作用,但形成酰基 - AMP并不需要该组分,这表明它对50K蛋白催化的脂肪酸活化和酰化步骤有不同的影响。

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