首页> 外文期刊>Molecular Microbiology >The ATP-dependent ClpXP and Lon proteases regulate expression of the Yersinia pestis type III secretion system via regulated proteolysis of YmoA, a small histone-like protein
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The ATP-dependent ClpXP and Lon proteases regulate expression of the Yersinia pestis type III secretion system via regulated proteolysis of YmoA, a small histone-like protein

机译:ATP依赖的ClpXP和Lon蛋白酶通过YmoA(一种小的组蛋白样蛋白)的蛋白水解作用来调节鼠疫耶尔森氏菌III型分泌系统的表达。

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摘要

The Yersinia pestis plasmid pCD1-encoded type III secretion system (T3SS) is essential for the pathogenicity of Y. pestis in mammalian hosts. T3SS-associated genes are maximally expressed at 37degreesC in the absence of extracellular calcium. Expression of T3SS genes requires LcrF, an AraC-like transcriptional activator, and is repressed by YmoA, a small histone-like protein. The mechanism by which temperature regulates T3SS gene expression has not been determined; however, changes in DNA topology have been implicated in this process. We report here that a Y. pestis strain deficient in production of the ClpXP and Lon proteases does not express a functional T3SS partly because of high cytosolic levels of YmoA. YmoA is rapidly degraded at 37degreesC in wild-type Y. pestis, but remains stable in a clpXPlon deletion mutant. The stability of YmoA in wild-type Y. pestis increased as the growth temperature of the culture decreased; in contrast, YmoA was stable at all temperatures examined in the clpXPlon deletion mutant. These results indicate that the ClpXP and Lon proteases contribute to the environmental regulation of the Y. pestis T3SS system through regulated proteolysis of YmoA.
机译:鼠疫耶尔森氏菌质粒pCD1编码的III型分泌系统(T3SS)对于鼠疫耶尔森氏菌在哺乳动物宿主中的致病性至关重要。在不存在细胞外钙的情况下,T3SS相关基因在37°C时最大表达。 T3SS基因的表达需要LcrF(一种AraC样的转录激活因子),并被一种小的组蛋白样蛋白YmoA抑制。温度调节T3SS基因表达的机制尚未确定。然而,DNA拓扑结构的变化已牵涉到这一过程。我们在这里报告说,鼠疫耶尔森氏菌菌株缺乏ClpXP和Lon蛋白酶的生产并不表达功能性T3SS部分原因是由于YmoA的细胞质水平很高。 YmoA在野生型鼠疫杆菌中在37℃迅速降解,但在clpXPlon缺失突变体中保持稳定。随着培养物生长温度的降低,YmoA在野生型鼠疫耶尔森氏菌中的稳定性增加。相反,YmoA在clpXPlon缺失突变体中检测的所有温度下均稳定。这些结果表明,ClpXP和Lon蛋白酶通过YmoA的调控蛋白水解作用有助于鼠疫耶尔森氏菌T3SS系统的环境调控。

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