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产黄青霉中δ-(L-α-氨基己二酰基)-L-半胱氨酰-D-缬氨酸合成酶的纯化与特性分析

Purification and characterization of delta-(L-alpha-aminoadipyl)-L-cysteinyl-D-valine synthetase from Penicillium chrysogenum.

作者信息

Theilgaard H B, Kristiansen K N, Henriksen C M, Nielsen J

机构信息

Center for Process Biotechnology, Department of Biotechnology, Technical University of Denmark, DK-2800 Lyngby, Denmark.

出版信息

Biochem J. 1997 Oct 1;327 ( Pt 1)(Pt 1):185-91. doi: 10.1042/bj3270185.

Abstract

delta-(L-alpha-Aminoadipyl)-L-cysteinyl-D-valine synthetase (ACVS) from Penicillium chrysogenum was purified to homogeneity by a combination of (NH4)2SO4 precipitation, protamine sulphate treatment, ion-exchange chromatography, gel filtration and hydrophobic interaction chromatography. The molecular mass of ACVS was estimated with native gradient gel electrophoresis and SDS/PAGE. The native enzyme consisted of a single polymer chain with an estimated molecular mass of 470 kDa. The denatured enzyme had an estimated molecular mass of 440 kDa. The influence of different reaction parameters such as substrates, cofactors and pH on the activity of the purified ACVS was investigated. The Km values for the three precursor substrates L-alpha-aminoadipic acid, L-cysteine and L-valine were determined as 45, 80 and 80 microM respectively, and the optimal assay concentration of ATP was found to be 5 mM (with 20 mM MgCl2). The dimer of the reaction product bis-delta-(L-alpha-aminoadipyl)-L-cysteinyl-D-valine (bisACV) gave feedback inhibition of the purified ACVS; the inhibition parameter KbisACV was determined as 1.4 mM. Furthermore dithiothreitol was shown to inhibit the purified ACVS. From the addition of a glucose pulse to a steady-state glucose-limited continuous culture of P. chrysogenum it was found that there is glucose repression of the synthesis of ACVS and that there must be a constant turnover of ACVS owing to synthesis and degradation.

摘要

采用硫酸铵沉淀、硫酸鱼精蛋白处理、离子交换色谱、凝胶过滤和疏水相互作用色谱相结合的方法,将产黄青霉的δ-(L-α-氨基己二酰基)-L-半胱氨酰-D-缬氨酸合成酶(ACVS)纯化至同质。通过天然梯度凝胶电泳和SDS/PAGE对ACVS的分子量进行了估计。天然酶由一条单一的聚合物链组成,估计分子量为470 kDa。变性酶的估计分子量为440 kDa。研究了不同反应参数如底物、辅因子和pH对纯化的ACVS活性的影响。三种前体底物L-α-氨基己二酸、L-半胱氨酸和L-缬氨酸的Km值分别测定为45、80和80 μM,发现ATP的最佳测定浓度为5 mM(含20 mM MgCl2)。反应产物双δ-(L-α-氨基己二酰基)-L-半胱氨酰-D-缬氨酸(bisACV)的二聚体对纯化的ACVS产生反馈抑制;抑制参数KbisACV测定为1.4 mM。此外,二硫苏糖醇被证明可抑制纯化的ACVS。从向产黄青霉的稳态葡萄糖限制连续培养物中添加葡萄糖脉冲发现,存在对ACVS合成的葡萄糖阻遏作用,并且由于合成和降解,ACVS必定存在持续的周转。

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