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首页> 外文期刊>Journal of bacteriology >RmpA2, an Activator of Capsule Biosynthesis in Klebsiella pneumoniae CG43, Regulates K2 cps Gene Expression at the Transcriptional Level
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RmpA2, an Activator of Capsule Biosynthesis in Klebsiella pneumoniae CG43, Regulates K2 cps Gene Expression at the Transcriptional Level

机译:RmpA2,肺炎克雷伯氏菌CG43中的胶囊生物合成激活剂,在转录水平上调节K2 cps基因表达。

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The rmpA2 gene, which encodes an activator for capsular polysaccharide (CPS) synthesis, was isolated from a 200-kb virulence plasmid of Klebsiella pneumoniae CG43. Based on the sequence homology with LuxR at the carboxyl-terminal DNA-binding motif, we hypothesized that RmpA2 exerts its effect by activating the expression of cps genes that are responsible for CPS biosynthesis. Two luxAB transcriptional fusions, each containing a putative promoter region of the K. pneumoniae K2 cps genes, were constructed and were found to be activated in the presence of multicopy rmpA2. The activation is likely due to direct binding of RmpA2 to the cps gene promoter through its C-terminal DNA binding motif. Moreover, the loss of colony mucoidy in a K. pneumoniae strain deficient in RcsB, a regulator for cps gene expression, could be recovered by complementing the strain with a multicopy plasmid carrying rmpA2. The CPS production in Lon protease-deficient K. pneumoniae significantly increased, and the effect was accompanied by an increase of RmpA2 stability. The expression of the rmpA2 gene was negatively autoregulated and could be activated when the organism was grown in M9 minimal medium. An IS3 element located upstream of the rmpA2 was required for the full activation of the rmpA2 promoter. In summary, our results suggest that the enhancement of K2 CPS synthesis in K. pneumoniae CG43 by RmpA2 can be attributed to its transcriptional activation of K2 cps genes, and the expression level of rmpA2 is autoregulated and under the control of Lon protease.
机译:从肺炎克雷伯氏菌CG43的200 kb毒力质粒中分离出编码荚膜多糖(CPS)合成激活剂的 rmpA2 基因。基于在羧基末端DNA结合基序上与LuxR的序列同源性,我们假设RmpA2通过激活负责CPS生物合成的 cps 基因的表达发挥其作用。两个 luxAB 转录融合体,每个融合体都包含一个 K的推定启动子区域。构建了肺炎 K2 cps 基因,发现该基因在多拷贝 rmpA2 存在下被激活。激活可能是由于RmpA2通过其C端DNA结合基序与 cps 基因启动子直接结合。此外,在 K中丧失了菌落粘液。可以通过用携带有 rmpA2 的多拷贝质粒对菌株进行补充来回收缺乏RcsB的肺炎菌株。 Lon蛋白酶缺乏的 K中的CPS产生。肺炎显着增加,并且伴随有RmpA2稳定性的增加。当 rmpA2 基因在M9基本培养基中生长时,它的表达负调控。 rmpA2 启动子的完全激活需要位于 rmpA2 上游的IS 3 元件。总而言之,我们的结果表明 K中K2 CPS合成的增强。 RmpA2引起的肺炎 CG43可以归因于其对K2 cps 基因的转录激活,而 rmpA2 的表达水平是受Lon蛋白酶控制的。

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