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首页> 外文期刊>Journal of bacteriology >Dynamics of the SetCD-Regulated Integration and Excision of Genomic Islands Mobilized by Integrating Conjugative Elements of the SXT/R391 Family
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Dynamics of the SetCD-Regulated Integration and Excision of Genomic Islands Mobilized by Integrating Conjugative Elements of the SXT/R391 Family

机译:SetCD调控的整合SXT / R391家族结合元素动员的基因组岛的整合和切除动力学。

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摘要

Mobilizable genomic islands (MGIs) are small genomic islands that are mobilizable by SXT/R391 integrating conjugative elements (ICEs) due to similar origins of transfer. Their site-specific integration and excision are catalyzed by the integrase that they encode, but their conjugative transfer entirely depends upon the conjugative machinery of SXT/R391 ICEs. In this study, we report the mechanisms that control the excision and integration processes of MGIs. We found that while the MGI-encoded integrase IntMGI is sufficient to promote MGI integration, efficient excision from the host chromosome requires the combined action of IntMGI and of a novel recombination directionality factor, RdfM. We determined that the genes encoding these proteins are activated by SetCD, the main transcriptional activators of SXT/R391 ICEs. Although they share the same regulators, we found that unlike rdfM, intMGI has a basal level of expression in the absence of SetCD. These findings explain how an MGI can integrate into the chromosome of a new host in the absence of a coresident ICE and shed new light on the cross talk that can occur between mobilizable and mobilizing elements that mobilize them, helping us to understand part of the rules that dictate horizontal transfer mechanisms.
机译:可动员的基因组岛(MGI)是小型的基因组岛,由于相似的转移起源,可通过整合结合元素(ICE)的SXT / R391进行动员。它们的位点特异性整合和切除是由它们编码的整合酶催化的,但它们的结合转移完全取决于SXT / R391 ICE的结合机制。在这项研究中,我们报告了控制MGI的切除和整合过程的机制。我们发现,虽然MGI编码的整合酶Int MGI 足以促进MGI整合,但有效地从宿主染色体上切除需要Int MGI 的联合作用和新颖的重组方向性因子RdfM。我们确定,编码这些蛋白质的基因被SetCD激活,SetCD是SXT / R391 ICEs的主要转录激活因子。尽管它们共享相同的调节器,但我们发现与 rdfM 不同, int MGI 在没有SetCD的情况下具有基础表达水平。这些发现解释了在没有共同居住的ICE的情况下MGI如何能够整合到新宿主的染色体中,并为动员和动员他们之间的相互干扰提供了新的亮点,从而帮助我们理解了部分规则决定了水平转移机制。

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