...
首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >RepA and RepB exert plasmid incompatibility repressing the transcription of the repABC operon
【24h】

RepA and RepB exert plasmid incompatibility repressing the transcription of the repABC operon

机译:RepA和RepB产生质粒不相容性,从而抑制repABC操纵子的转录

获取原文
获取原文并翻译 | 示例
           

摘要

Rhizobium etli CFN42 has a multipartite genome composed of one chromosome and six large plasmids with low copy numbers, all belonging to the repABC plasmid family. All elements essential for replication and segregation of these plasmids are encoded within the repABC operon. RepA and RepB direct plasmid segregation and are involved in the transcriptional regulation of the operon, and RepC is the initiator protein of the plasmid. Here we show that in addition to RepA (repressor) and RepB (corepressor), full transcriptional repression of the operon located in the symbiotic plasmid (pRetCFN42d) of this strain requires parS, the centromere-like sequence, and the operator sequence. However, the co-expression of RepA and RepB is sufficient to induce the displacement of the parental plasmid. RepA is a Walker-type ATPase that self associates in vivo and in vitro and binds specifically to the operator region in its RepA-ADP form. In contrast, RepA-ATP is capable of binding to non-specific DNA. RepA and RepB form high molecular weight DNA-protein complexes in the presence of ATP and ADP. RepA carrying ATP-pocket motif mutations induce full repression of the repABC operon without the participation of RepB and parS. These mutants specifically bind the operator sequence in their ATP or ADP bound forms. In addition, their expression in trans exerts plasmid incompatibility against the parental plasmid. RepA and RepB expressed in trans induce plasmid incompatibility because of their ability to repress the repABC operon and not only by their capacity to distort the plasmid segregation process.
机译:根瘤菌CFN42具有多部分基因组,由一个染色体和六个低拷贝数的大质粒组成,均属于repABC质粒家族。这些质粒的复制和分离所必需的所有元件均在repABC操纵子内编码。 RepA和RepB指导质粒分离,并参与操纵子的转录调控,而RepC是质粒的起始蛋白。在这里我们显示,除了RepA(阻遏物)和RepB(共抑制物),位于该菌株共生质粒(pRetCFN42d)中的操纵子的完全转录抑制还需要parS,着丝粒样序列和操纵子序列。但是,RepA和RepB的共表达足以诱导亲本质粒的置换。 RepA是一种Walker型ATPase,可在体内和体外自缔合,并以RepA-ADP形式特异性结合至操纵子区域。相反,RepA-ATP能够与非特异性DNA结合。 RepA和RepB在ATP和ADP的存在下形成高分子量DNA-蛋白质复合物。携带ATP口袋基序突变的RepA诱导repABC操纵子的完全阻遏,而没有RepB和parS的参与。这些突变体以其ATP或ADP结合形式特异性结合操纵子序列。另外,它们在反式中的表达使质粒与亲本质粒不相容。反式表达的RepA和RepB诱导质粒不相容,这是因为它们具有抑制repABC操纵子的能力,而不仅是因为它们扭曲质粒分离过程的能力。

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