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丙酮丁醇梭菌中可诱导的辅酶A连接型丁醛脱氢酶的纯化及性质

Purification and properties of the inducible coenzyme A-linked butyraldehyde dehydrogenase from Clostridium acetobutylicum.

作者信息

Palosaari N R, Rogers P

机构信息

Department of Microbiology, University of Minnesota, Minneapolis 55455.

出版信息

J Bacteriol. 1988 Jul;170(7):2971-6. doi: 10.1128/jb.170.7.2971-2976.1988.

Abstract

The coenzyme A (CoA)-linked butyraldehyde dehydrogenase (BAD) from Clostridium acetobutylicum was characterized and purified to homogeneity. The enzyme was induced over 200-fold, coincident with a shift from an acidogenic to a solventogenic fermentation, during batch culture growth. The increase in enzyme activity was found to require new protein synthesis since induction was blocked by the addition of rifampin and antibody against the purified enzyme showed the appearance of enzyme antigen beginning at the shift of the fermentation and increasing coordinately with the increase in enzyme specific activity. The CoA-linked acetaldehyde dehydrogenase was copurified with BAD during an 89-fold purification, indicating that one enzyme accounts for the synthesis of the two aldehyde intermediates for both butanol and ethanol production. Butanol dehydrogenase activity was clearly separate from the BAD enzyme activity on TEAE cellulose. A molecular weight of 115,000 was determined for the native enzyme, and the enzyme subunit had a molecular weight of 56,000 indicating that the active form is a homodimer. Kinetic constants were determined in both the forward and reverse directions. In the reverse direction both the Vmax and the apparent affinity for butyraldehyde and caproaldehyde were significantly greater than they were for acetaldehyde, while in the forward direction, the Vmax for butyryl-CoA was fivefold that for acetyl-CoA. These and other properties of BAD indicate that this enzyme is distinctly different from other reported CoA-dependent aldehyde dehydrogenases.

摘要

对丙酮丁醇梭菌中与辅酶A(CoA)相连的丁醛脱氢酶(BAD)进行了特性鉴定,并纯化至同质。在分批培养生长过程中,该酶的诱导倍数超过200倍,这与从产酸发酵向溶剂生成发酵的转变同时发生。发现酶活性的增加需要新的蛋白质合成,因为添加利福平会阻断诱导,并且针对纯化酶的抗体显示,从发酵转变开始出现酶抗原,并随着酶比活性的增加而协同增加。在89倍的纯化过程中,与CoA相连的乙醛脱氢酶与BAD共纯化,这表明一种酶负责丁醇和乙醇生产中两种醛中间体的合成。在TEAE纤维素上,丁醇脱氢酶活性与BAD酶活性明显分开。测得天然酶的分子量为115,000,酶亚基的分子量为56,000,表明活性形式是同型二聚体。测定了正向和反向反应的动力学常数。在反向反应中,Vmax以及对丁醛和己醛的表观亲和力均明显大于对乙醛的,而在正向反应中,丁酰-CoA的Vmax是乙酰-CoA的五倍。BAD的这些以及其他特性表明,该酶与其他报道的CoA依赖性醛脱氢酶明显不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f3/211236/2d7df41ac672/jbacter00185-0094-a.jpg

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