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酵母脂肪酸合酶。乙酰基从辅酶A转移至缩合位点的半胱氨酸巯基的途径。

The yeast fatty acid synthase. Pathway for transfer of the acetyl group from coenzyme A to the Cys-SH of the condensation site.

作者信息

Stoops J K, Singh N, Wakil S J

机构信息

Verna and Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Biol Chem. 1990 Oct 5;265(28):16971-7.

PMID:2211602
Abstract

The reaction pathway of enzyme-catalyzed acetylation of the acyl-accepting sites of the yeast synthase, a Ser-OH at the acetyl transacylase site, a Cys-SH at the beta-ketoacyl synthase site, and the acyl carrier protein 4'-phosphopantetheine-SH (Pant-SH), has been investigated using the chromophoric substrate, p-nitrophenyl thioacetate. The stoichiometry of acetylation of the native enzyme was 3 mol of acetate bound per mol of synthase unit, alpha beta (Mr 430,000). The acetylation process is biexponential; the rate constant of acetylation of the first 2 mol is 5.0 s-1 and the third mol is 0.2 s-1. The pathway by which acetyl moiety is added to the enzyme was determined by selectively blocking the acyl-accepting sites and subsequently determining the kinetics and stoichiometry of acetylation. The dibromopropanone-treated enzyme, in which the Pant-SH and Cys-SH are alkylated, exhibited an exponential burst of approximately 1 mol/mol of synthase unit with a rate constant of 11.0 s-1. The iodoacetamide-treated enzyme, in which Cys-SH is alkylated, had a biexponential burst with a total stoichiometry of approximately 2 mol/mol of synthase unit, with rate constants of 9 and 0.2 s-1, respectively. The kinetically competent acetylation to the extent of 2 and approximately 1 mol/mol of synthase unit for both Cys-SH and Cys-SH and Pant-SH-blocked enzymes, respectively, indicated that the route of acetyl transfer in the yeast synthase is obligatorily Ser-OH----Cys-SH. The acetylation of Pant-SH (0.2 s-1) occurs with a rate insignificant to the process of fatty acid synthesis (turnover rate constant of 1.5 s-1). These conclusions are supported by experiments involving end point radiolabeling of the synthase with [1-14C]acetyl moieties using the substrate, p-nitrophenyl thio[1-14C]acetate. Native, dibromopropanone-treated, and iodoacetamide-treated enzymes bind about 3, 1, and 2 mol of acetyl/mol of synthase unit, respectively. Performic acid oxidation studies of the acetyl-labeled enzyme indicate that there is one Ser-O-acetyl formed in the native and alkylated enzymes and one Cys-S-acetyl and one Pant-S-acetyl formed in the native enzyme. Altogether, these results support our contention that the acetylation of the Pant-SH is kinetically incompetent. Thus, the yeast synthase transacetylation reactions occur by a novel process of acetyl transfer from CoA to Ser-OH----Cys-SH, which is in contrast to the transfer from CoA to Ser-OH----Pant-SH----Cys-SH catalyzed by the prokaryotic synthases.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用发色底物对硝基苯硫代乙酸酯,研究了酵母合酶酰基接受位点(乙酰转酰基酶位点的丝氨酸羟基、β-酮脂酰合酶位点的半胱氨酸巯基以及酰基载体蛋白4'-磷酸泛酰巯基乙胺-SH(泛酰巯基乙胺-SH))的酶催化乙酰化反应途径。天然酶的乙酰化化学计量比为每摩尔合酶单位(αβ,Mr 430,000)结合3摩尔乙酸盐。乙酰化过程呈双指数形式;前2摩尔的乙酰化速率常数为5.0 s-1,第三摩尔为0.2 s-1。通过选择性阻断酰基接受位点,随后测定乙酰化的动力学和化学计量比,确定了乙酰基部分添加到酶上的途径。经二溴丙酮处理的酶,其中泛酰巯基乙胺-SH和半胱氨酸巯基被烷基化,表现出每摩尔合酶单位约1摩尔的指数爆发,速率常数为11.0 s-1。经碘乙酰胺处理的酶,其中半胱氨酸巯基被烷基化,具有双指数爆发,总化学计量比约为每摩尔合酶单位2摩尔,速率常数分别为9和0.2 s-1。对于半胱氨酸巯基和半胱氨酸巯基及泛酰巯基乙胺-SH被阻断的酶,分别有2摩尔和约1摩尔合酶单位的动力学活性乙酰化,这表明酵母合酶中乙酰转移途径必然是丝氨酸羟基→半胱氨酸巯基。泛酰巯基乙胺-SH的乙酰化(0.2 s-1)速率对脂肪酸合成过程(周转速率常数为1.5 s-1)而言微不足道。这些结论得到了相关实验的支持,这些实验使用底物对硝基苯硫代[1-14C]乙酸酯,用[1-14C]乙酰基部分对合酶进行终点放射性标记。天然酶、经二溴丙酮处理的酶和经碘乙酰胺处理的酶分别结合约3、1和2摩尔乙酰/摩尔合酶单位。对乙酰化标记酶的过甲酸氧化研究表明,天然酶和烷基化酶中形成了一个丝氨酸-O-乙酰基,天然酶中形成了一个半胱氨酸-S-乙酰基和一个泛酰巯基乙胺-S-乙酰基。总之,这些结果支持了我们关于泛酰巯基乙胺-SH的乙酰化在动力学上无活性的观点。因此,酵母合酶的转乙酰化反应通过一种从辅酶A到丝氨酸羟基→半胱氨酸巯基的新型乙酰转移过程发生,这与原核合酶催化的从辅酶A到丝氨酸羟基→泛酰巯基乙胺-SH→半胱氨酸巯基的转移不同。(摘要截于400字)

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