Repizo Guillermo D, Blancato Víctor S, Mortera Pablo, Lolkema Juke S, Magni Christian
Instituto de Biología Molecular y Celular de Rosario (IBR-CONICET) and Departamento de Microbiología, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Rosario, Argentina.
Appl Environ Microbiol. 2013 May;79(9):2882-90. doi: 10.1128/AEM.03980-12. Epub 2013 Feb 22.
Enterococcus faecalis encodes a biotin-dependent oxaloacetate decarboxylase (OAD), which is constituted by four subunits: E. faecalis carboxyltransferase subunit OadA (termed Ef-A), membrane pump Ef-B, biotin acceptor protein Ef-D, and the novel subunit Ef-H. Our results show that in E. faecalis, subunits Ef-A, Ef-D, and Ef-H form a cytoplasmic soluble complex (termed Ef-AHD) which is also associated with the membrane. In order to characterize the role of the novel Ef-H subunit, coexpression of oad genes was performed in Escherichia coli, showing that this subunit is vital for Ef-A and Ef-D interaction. Diminished growth of the oadA and oadD single deletion mutants in citrate-supplemented medium indicated that the activity of the complex is essential for citrate utilization. Remarkably, the oadB-deficient strain was still capable of growing to wild-type levels but with a delay during the citrate-consuming phase, suggesting that the soluble Ef-AHD complex is functional in E. faecalis. These results suggest that the Ef-AHD complex is active in its soluble form, and that it is capable of interacting in a dynamic way with the membrane-bound Ef-B subunit to achieve its maximal alkalinization capacity during citrate fermentation.
粪肠球菌编码一种生物素依赖性草酰乙酸脱羧酶(OAD),它由四个亚基组成:粪肠球菌羧基转移酶亚基OadA(称为Ef-A)、膜泵Ef-B、生物素受体蛋白Ef-D和新亚基Ef-H。我们的结果表明,在粪肠球菌中,亚基Ef-A、Ef-D和Ef-H形成一种细胞质可溶性复合物(称为Ef-AHD),该复合物也与膜相关。为了表征新的Ef-H亚基的作用,在大肠杆菌中进行了oad基因的共表达,结果表明该亚基对于Ef-A和Ef-D的相互作用至关重要。oadA和oadD单缺失突变体在补充柠檬酸盐的培养基中生长减弱,这表明该复合物的活性对于柠檬酸盐的利用至关重要。值得注意的是,oadB缺陷型菌株仍能够生长到野生型水平,但在消耗柠檬酸盐阶段会有延迟,这表明可溶性Ef-AHD复合物在粪肠球菌中具有功能。这些结果表明,Ef-AHD复合物以其可溶性形式具有活性,并且它能够与膜结合的Ef-B亚基以动态方式相互作用,以在柠檬酸盐发酵过程中实现其最大碱化能力。