首页> 外文期刊>Journal of bacteriology >Altered Ca2+ Regulation of Yop Secretion in Yersinia enterocolitica after DNA Adenine Methyltransferase Overproduction Is Mediated by Clp-Dependent Degradation of LcrG
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Altered Ca2+ Regulation of Yop Secretion in Yersinia enterocolitica after DNA Adenine Methyltransferase Overproduction Is Mediated by Clp-Dependent Degradation of LcrG

机译:DNA腺嘌呤甲基转移酶过量生产介导的LcrG的Clp依赖性降解后,改变了耶尔森氏小肠结肠炎耶尔森氏菌中Yop分泌的Ca2 +调节。

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DNA methylation by the DNA adenine methyltransferase (Dam) interferes with the coordinated expression of virulence functions in an increasing number of pathogens. While analyzing the effect of Dam on the virulence of the human pathogen Yersinia enterocolitica, we observed type III secretion of Yop effector proteins under nonpermissive conditions. Dam alters the Ca2+ regulation of Yop secretion but does not affect the temperature regulation of Yop/Ysc expression. The phenotype is different from that of classical “Ca2+-blind” mutants of Yersinia, as Dam-overproducing (DamOP) strains still translocate Yops polarly into eukaryotic cells. Although transcription of the lcrGV and yopN-tyeA operons is slightly upregulated, LcrG is absent from lysates of DamOP bacteria, while the amounts of YopN and TyeA are not changed. We present evidence that clpXP expression increases after Dam overproduction and that the ClpP protease then degrades LcrG, thereby releasing a block in type III secretion. This is the first example of posttranslational regulation of type III secretion by the Clp protease and adds a new flavor to the complex regulatory mechanisms underlying the controlled release of effector proteins from bacterial cells.
机译:DNA腺嘌呤甲基转移酶(Dam)引起的DNA甲基化干扰越来越多的病原体中毒力功能的协调表达。在分析水坝对人类病原体小肠结肠炎耶尔森氏菌的致病力的影响时,我们观察到非许可条件下Yop效应蛋白的III型分泌。 Dam改变了Yop分泌的Ca 2 + 调控,但不影响Yop / Ysc表达的温度调控。该表型与耶尔森氏菌的经典“ Ca 2 + -blind”突变体的表型不同,因为仍然过量生产Dam(Dam OP )菌株。将Yops极性转移到真核细胞中。尽管 lcrGV yopN-tyeA 操纵子的转录略有上调,但Dam OP 细菌裂解液中却没有LcrG,而YopN的量和TyeA不变。我们提供的证据表明,在Dam过量生产后, clpXP 表达增加,而ClpP蛋白酶随后降解LcrG,从而释放III型分泌的阻滞。这是Clp蛋白酶对III型分泌进行翻译后调节的第一个例子,为复杂的调节机制增添了新的风味,这种调节机制是细菌细胞中效应蛋白受控释放的基础。

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