...
首页> 外文期刊>Journal of bacteriology >Specificity and Selective Advantage of an Exclusion System in the Integrative and Conjugative Element ICEBs1 of Bacillus subtilis
【24h】

Specificity and Selective Advantage of an Exclusion System in the Integrative and Conjugative Element ICEBs1 of Bacillus subtilis

机译:枯草芽孢杆菌的一体化和共轭元素IcBS1中排除系统的特异性和选择性优势

获取原文

摘要

Integrative and conjugative elements (ICEs) are mobile genetic elements capable of transferring their own and other DNA. They contribute to the spread of antibiotic resistance and other important traits for bacterial evolution. Exclusion is a mechanism used by many conjugative plasmids and a few ICEs to prevent their host cell from acquiring a second copy of the cognate element. ICE Bs1 of Bacillus subtilis has an exclusion mechanism whereby the exclusion protein YddJ in a potential recipient inhibits the activity of the ICE Bs1- encoded conjugation machinery in a potential donor. The target of YddJ-mediated exclusion is the conjugation protein ConG (a VirB6 homolog). Here, we defined the regions of YddJ and ConG that confer exclusion specificity and determined the importance of exclusion to host cells. Using chimeras that had parts of ConG from ICE Bs1 and the closely related ICE Bat1 , we identified a putative extracellular loop of ConG that conferred specificity for exclusion by the cognate YddJ. Using chimeras of YddJ from ICE Bs1 and ICE Bat1 , we identified two regions in YddJ needed for exclusion specificity. We also found that YddJ-mediated exclusion reduced the death of donor cells following conjugation into recipients. Donor death was dependent on the ability of transconjugants to themselves become donors and was reduced under osmoprotective conditions, indicating that death was likely due to alterations in the donor cell envelope caused by excessive conjugation. We postulate that elements that can have high frequencies of transfer likely evolved exclusion mechanisms to protect the host cells from excessive death. IMPORTANCE Horizontal gene transfer is a driving force in bacterial evolution, responsible for the spread of many traits, including antibiotic and heavy metal resistance. Conjugation, one type of horizontal gene transfer, involves DNA transfer from donor to recipient cells through conjugation machinery and direct cell-cell contact. Exclusion mechanisms allow conjugative elements to prevent their host from acquiring additional copies of the element and are highly specific, enabling hosts to acquire heterologous elements. We defined regions of the exclusion protein and its target in the conjugation machinery that convey high specificity of exclusion. We found that exclusion protects donors from cell death during periods of high transfer. This is likely important for the element to enter new populations of cells.
机译:一体化和共聚元素(谢谢)是能够转移自己和其他DNA的流动遗传元素。它们有助于抗生素抗性的传播和对细菌演化的其他重要性状。排除是许多共轭质粒和少数谢的机制,以防止其宿主细胞获取第二拷贝的同源元素。枯草芽孢杆菌的冰BS1具有排除机制,其中潜在受体中的排除蛋白YDDJ在潜在的供体中抑制了冰BS1-编码的共轭机制的活性。 YDDJ介导的靶标的靶标是缀合蛋白孔(virb6同源物)。在这里,我们定义了YDDJ和Cong的区域,该区域赋予排除特异性并确定排除宿主细胞的重要性。使用来自冰BS1和密切相关的冰BAT1的嵌入部分的嵌合体,我们鉴定了一种令人推测的细胞外孔,其赋予了通过同源YDDJ排除的特异性。使用ICE BS1和ICE BAT1的YDDJ的嵌合体,我们确定了任何用于排除特异性所需的两个区域。我们还发现YDDJ介导的排除减少了缀合到受体后供体细胞的死亡。供体死亡依赖于经纪人jugants自己成为供体的能力,并且在渗透性条件下减少,表明由于过度缀合引起的供体细胞包膜的改变可能导致死亡。我们假设能够具有高频率转移频率的元素可能演变的排除机制,以保护宿主细胞免受过度死亡。重要性水平基因转移是细菌演化的驱动力,负责许多特征的传播,包括抗生素和重金属抗性。缀合,一种水平基因转移,涉及通过共轭机械和直接细胞 - 细胞接触从供体转移到受体细胞。排除机制允许共轭元件以防止其宿主获取元素的附加副本,并且具有高度特异性,使宿主能够获取异源元素。我们在传送高特异性的共轭机中定义了排斥蛋白的区域及其靶标。我们发现,在高转移期间,排除保护捐献者免受细胞死亡中的捐赠者。这对元素进入新的细胞群体很重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号