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大肠杆菌中感受态蛋白DprA/Smf的功能特性

Functional characterization of the competence protein DprA/Smf in Escherichia coli.

作者信息

Smeets Leonard C, Becker Stephen C, Barcak Gerard J, Vandenbroucke-Grauls Christina M J E, Bitter Wilbert, Goosen Nora

机构信息

Department of Medical Microbiology & Infection Control, VU University Medical Center, Amsterdam, The Netherlands.

出版信息

FEMS Microbiol Lett. 2006 Oct;263(2):223-8. doi: 10.1111/j.1574-6968.2006.00423.x.

Abstract

In several bacterial species that show natural transformation, dprA has been described as a competence gene. The DprA protein has been suggested to be involved in the protection of incoming DNA. However, members of the dprA gene family (also called smf) can be detected in virtually all bacterial species, which suggests that their gene products have a more general function. We examined the function of the DprA/Smf homologue of Escherichia coli. Escherichia coli dprA/smf is able to partially restore transformation in a Haemophilus influenzae dprA mutant, which shows that dprA/smf genes from competent and noncompetent species are interchangeable with respect to their involvement in natural transformation. From this, we conclude that natural transformation is probably an additional function of these genes. Subsequently, the dprA/smf gene was deleted in various recombination mutants of E. coli, and the resultant phenotype was tested. All the resultant E. coli dprA/smf mutants did not differ from their parent strains with respect to transformation, Hfr-conjugation, recombination and DNA repair. Therefore, a role of DprA/Smf in DNA recombination could not be established and the basic function of dprA/smf remains unclear.

摘要

在几种表现出自然转化能力的细菌物种中,dprA被描述为一种感受态基因。有人认为DprA蛋白参与对进入的DNA的保护。然而,实际上在所有细菌物种中都能检测到dprA基因家族(也称为smf)的成员,这表明它们的基因产物具有更普遍的功能。我们研究了大肠杆菌的DprA/Smf同源物的功能。大肠杆菌的dprA/smf能够部分恢复流感嗜血杆菌dprA突变体的转化能力,这表明来自感受态和非感受态物种的dprA/smf基因在参与自然转化方面是可互换的。由此我们得出结论,自然转化可能是这些基因的一项额外功能。随后,在大肠杆菌的各种重组突变体中删除了dprA/smf基因,并对产生的表型进行了测试。所有产生的大肠杆菌dprA/smf突变体在转化、高频重组(Hfr)接合、重组和DNA修复方面与它们的亲本菌株没有差异。因此,无法确定DprA/Smf在DNA重组中的作用,dprA/smf的基本功能仍不清楚。

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