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无乳支原体的表面多样性由vpma多基因座内的位点特异性DNA倒位驱动。

Surface diversity in Mycoplasma agalactiae is driven by site-specific DNA inversions within the vpma multigene locus.

作者信息

Glew Michelle D, Marenda Marc, Rosengarten Renate, Citti Christine

机构信息

Institute of Bacteriology, Mycology and Hygiene, University of Veterinary Medicine, 1210 Vienna, Austria.

出版信息

J Bacteriol. 2002 Nov;184(21):5987-98. doi: 10.1128/JB.184.21.5987-5998.2002.

Abstract

The ruminant pathogen Mycoplasma agalactiae possesses a family of abundantly expressed variable surface lipoproteins called Vpmas. Phenotypic switches between Vpma members have previously been correlated with DNA rearrangements within a locus of vpma genes and are proposed to play an important role in disease pathogenesis. In this study, six vpma genes were characterized in the M. agalactiae type strain PG2. All vpma genes clustered within an 8-kb region and shared highly conserved 5' untranslated regions, lipoprotein signal sequences, and short N-terminal sequences. Analyses of the vpma loci from consecutive clonal isolates showed that vpma DNA rearrangements were site specific and that cleavage and strand exchange occurred within a minimal region of 21 bp located within the 5' untranslated region of all vpma genes. This process controlled expression of vpma genes by effectively linking the open reading frame (ORF) of a silent gene to a unique active promoter sequence within the locus. An ORF (xer1) immediately adjacent to one end of the vpma locus did not undergo rearrangement and had significant homology to a distinct subset of genes belonging to the lambda integrase family of site-specific xer recombinases. It is proposed that xer1 codes for a site-specific recombinase that is not involved in chromosome dimer resolution but rather is responsible for the observed vpma-specific recombination in M. agalactiae.

摘要

反刍动物病原体无乳支原体拥有一类大量表达的可变表面脂蛋白,称为Vpmas。此前,Vpma成员之间的表型转换与vpma基因座内的DNA重排相关,并被认为在疾病发病机制中起重要作用。在本研究中,对无乳支原体模式菌株PG2中的6个vpma基因进行了表征。所有vpma基因聚集在一个8 kb的区域内,并共享高度保守的5'非翻译区、脂蛋白信号序列和短的N端序列。对连续克隆分离株的vpma基因座分析表明,vpma DNA重排具有位点特异性,切割和链交换发生在所有vpma基因5'非翻译区内一个21 bp的最小区域内。该过程通过有效地将沉默基因的开放阅读框(ORF)与基因座内独特的活性启动子序列相连,从而控制vpma基因的表达。紧邻vpma基因座一端的一个ORF(xer1)未发生重排,并且与属于位点特异性xer重组酶的λ整合酶家族基因中的一个不同亚组具有显著同源性。有人提出,xer1编码一种位点特异性重组酶,它不参与染色体二聚体的解析,而是负责在无乳支原体中观察到的vpma特异性重组。

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