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EutQ和EutP蛋白是参与乙醇胺分解代谢的新型乙酸激酶:对肠炎沙门氏菌中乙醇胺代谢体功能的生理学意义。

The EutQ and EutP proteins are novel acetate kinases involved in ethanolamine catabolism: physiological implications for the function of the ethanolamine metabolosome in Salmonella enterica.

作者信息

Moore Theodore C, Escalante-Semerena Jorge C

机构信息

Department of Microbiology, University of Georgia, 120 Cedar Street, Athens, GA, 30602, USA.

出版信息

Mol Microbiol. 2016 Feb;99(3):497-511. doi: 10.1111/mmi.13243. Epub 2015 Nov 5.

Abstract

Salmonella enterica catabolizes ethanolamine inside a compartment known as the metabolosome. The ethanolamine utilization (eut) operon of this bacterium encodes all functions needed for the assembly and function of this structure. To date, the roles of EutQ and EutP were not known. Herein we show that both proteins have acetate kinase activity and that EutQ is required during anoxic growth of S. enterica on ethanolamine and tetrathionate. EutP and EutQ-dependent ATP synthesis occurred when enzymes were incubated with ADP, Mg(II) ions and acetyl-phosphate. EutQ and EutP also synthesized acetyl-phosphate from ATP and acetate. Although EutP had acetate kinase activity, ΔeutP strains lacked discernible phenotypes under the conditions where ΔeutQ strains displayed clear phenotypes. The kinetic parameters indicate that EutP is a faster enzyme than EutQ. Our evidence supports the conclusion that EutQ and EutP represent novel classes of acetate kinases. We propose that EutQ is necessary to drive flux through the pathway under physiological conditions, preventing a buildup of acetaldehyde. We also suggest that ATP generated by these enzymes may be used as a substrate for EutT, the ATP-dependent corrinoid adenosyltransferase and for the EutA ethanolamine ammonia-lyase reactivase.

摘要

肠炎沙门氏菌在一种称为代谢体的区室中分解代谢乙醇胺。该细菌的乙醇胺利用(eut)操纵子编码该结构组装和功能所需的所有功能。迄今为止,EutQ和EutP的作用尚不清楚。在此我们表明这两种蛋白质都具有乙酸激酶活性,并且在肠炎沙门氏菌在乙醇胺和连四硫酸盐上进行缺氧生长期间EutQ是必需的。当酶与ADP、Mg(II)离子和乙酰磷酸一起孵育时,会发生EutP和EutQ依赖性ATP合成。EutQ和EutP还从ATP和乙酸盐合成乙酰磷酸。虽然EutP具有乙酸激酶活性,但在ΔeutQ菌株表现出明显表型的条件下,ΔeutP菌株缺乏可辨别的表型。动力学参数表明EutP是比EutQ更快的酶。我们的证据支持EutQ和EutP代表新型乙酸激酶类别的结论。我们提出EutQ对于在生理条件下驱动该途径的通量是必要的,可防止乙醛积累。我们还表明这些酶产生的ATP可用作EutT(ATP依赖性类咕啉腺苷转移酶)和EutA乙醇胺氨裂解酶再激活酶的底物。

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