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苜蓿中华根瘤菌bacA基因的遗传分析:与大肠杆菌sbmA基因的功能互换性及突变体表型

Genetic analysis of the Rhizobium meliloti bacA gene: functional interchangeability with the Escherichia coli sbmA gene and phenotypes of mutants.

作者信息

Ichige A, Walker G C

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

J Bacteriol. 1997 Jan;179(1):209-16. doi: 10.1128/jb.179.1.209-216.1997.

Abstract

The Rhizobium meliloti bacA gene encodes a function that is essential for bacterial differentiation into bacteroids within plant cells in the symbiosis between R. meliloti and alfalfa. An Escherichia coli homolog of BacA, SbmA, is implicated in the uptake of microcin B17, microcin J25 (formerly microcin 25), and bleomycin. When expressed in E. coli with the lacZ promoter, the R. meliloti bacA gene was found to suppress all the known defects of E. coli sbmA mutants, namely, increased resistance to microcin B17, microcin J25, and bleomycin, demonstrating the functional similarity between the two proteins. The R. meliloti bacA386::Tn(pho)A mutant, as well as a newly constructed bacA deletion mutant, was found to show increased resistance to bleomycin. However, it also showed increased resistance to certain aminoglycosides and increased sensitivity to ethanol and detergents, suggesting that the loss of bacA function causes some defect in membrane integrity. The E. coli sbmA gene suppressed all these bacA mutant phenotypes as well as the Fix- phenotype when placed under control of the bacA promoter. Taken together, these results strongly suggest that the BacA and SbmA proteins are functionally similar and thus provide support for our previous hypothesis that BacA may be required for uptake of some compound that plays an important role in bacteroid development. However, the additional phenotypes of bacA mutants identified in this study suggest the alternative possibility that BacA may be needed for membrane integrity, which is likely to be critically important during the early stages of bacterial differentiation within plant cells.

摘要

苜蓿中华根瘤菌的bacA基因编码一种功能,该功能对于苜蓿中华根瘤菌与苜蓿共生过程中细菌在植物细胞内分化为类菌体至关重要。BacA在大肠杆菌中的同源物SbmA与微菌素B17、微菌素J25(原微菌素25)和博来霉素的摄取有关。当苜蓿中华根瘤菌的bacA基因在大肠杆菌中用lacZ启动子表达时,发现它能抑制大肠杆菌sbmA突变体的所有已知缺陷,即对微菌素B17、微菌素J25和博来霉素的抗性增加,这表明这两种蛋白质在功能上具有相似性。发现苜蓿中华根瘤菌的bacA386::Tn(pho)A突变体以及新构建的bacA缺失突变体对博来霉素的抗性增加。然而,它对某些氨基糖苷类抗生素的抗性也增加,对乙醇和去污剂的敏感性增加,这表明bacA功能的丧失导致膜完整性出现一些缺陷。当置于bacA启动子的控制下时,大肠杆菌的sbmA基因抑制了所有这些bacA突变体表型以及固氮缺陷型表型。综上所述,这些结果强烈表明BacA和SbmA蛋白在功能上相似,从而为我们之前的假设提供了支持,即BacA可能是摄取某种在类菌体发育中起重要作用的化合物所必需的。然而,本研究中鉴定出的bacA突变体的其他表型提示了另一种可能性,即BacA可能是维持膜完整性所必需的,而膜完整性在植物细胞内细菌分化的早期阶段可能至关重要。

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