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首页> 外文期刊>Journal of bacteriology >The V Antigen of Yersinia pestisRegulates Yop Vectorial Targeting as Well as Yop Secretion through Effects on YopB and LcrG
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The V Antigen of Yersinia pestisRegulates Yop Vectorial Targeting as Well as Yop Secretion through Effects on YopB and LcrG

机译:鼠疫耶尔森氏菌的V抗原通过对YopB和LcrG的影响调节Yop矢量靶向和Yop分泌。

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摘要

Yersinia pestis expresses a set of secreted proteins called Yops and the bifunctional LcrV, which has both regulatory and antihost functions. Yops and LcrV expression and the activity of the type III mechanism for their secretion are coordinately regulated by environmental signals such as Ca2+ concentration and eukaryotic cell contact. In vitro, Yops and LcrV are secreted into the culture medium in the absence of Ca2+ as part of the low-Ca2+ response (LCR). The LCR is induced in a tissue culture model by contact with eukaryotic cells that results in Yop translocation into cells and subsequent cytotoxicity. The secretion mechanism is believed to indirectly regulate expression oflcrV and yop operons by controlling the intracellular concentration of a secreted negative regulator. LcrG, a secretion-regulatory protein, is thought to block secretion of Yops and LcrV, possibly at the inner face of the inner membrane. A recent model proposes that when the LCR is induced, the increased expression of LcrV yields an excess of LcrV relative to LcrG, and this is sufficient for LcrV to bind LcrG and unblock secretion. To test this LcrG titration model, LcrG and LcrV were expressed alone or together in a newly constructed lcrG deletion strain, a ΔlcrG2mutant, of Y. pestis that produces low levels of LcrV and constitutively expresses and secretes Yops. Overexpression of LcrG in this mutant background was able to block secretion and depress expression of Yops in the presence of Ca2+ and to dramatically decrease Yop expression and secretion in growth medium lacking Ca2+. Overexpression of both LcrG and LcrV in the ΔlcrG2 strain restored wild-type levels of Yop expression and Ca2+ control of Yop secretion. Surprisingly, when HeLa cells were infected with the ΔlcrG2 strain, no cytotoxicity was apparent and translocation of Yops was abolished. This correlated with an altered distribution of YopB as measured by accessibility to trypsin. These effects were not due to the absence of LcrG, because they were alleviated by restoration of LcrV expression and secretion alone. LcrV itself was found to enter HeLa cells in a nonpolarized manner. These studies supported the LcrG titration model of LcrV’s regulatory effect at the level of Yop secretion and revealed a further role of LcrV in the deployment of YopB, which in turn is essential for the vectorial translocation of Yops into eukaryotic cells.
机译:鼠疫耶尔森氏菌表达一组分泌蛋白,称为Yops和双功能LcrV,具有调节和抗宿主功能。 Ca 2 + 浓度和真核细胞接触等环境信号对Yops和LcrV的表达以及III型分泌机制的活性进行协调调节。在体外,作为低Ca 2 + 反应(LCR)的一部分,在不存在Ca 2 + 的情况下,Yops和LcrV被分泌到培养基中。通过与真核细胞接触在组织培养模型中诱导LCR,从而导致Yop易位到细胞中,并随后产生细胞毒性。据信,该分泌机制通过控制分泌的负调节剂的细胞内浓度间接调节 lcrV yop 操纵子的表达。 LcrG是一种分泌调节蛋白,被认为可以阻止Yops和LcrV的分泌,可能在内膜的内表面。最近的模型提出,当LCR被诱导时,相对于LcrG,增加的LcrV表达产生过量的LcrV,这足以使LcrV结合LcrG并解除分泌。为了测试此LcrG滴定模型,LcrG和LcrV在新构建的 lcrG 缺失菌株( Y的Δ lcrG2 突变体)中单独或一起表达。产生低水平LcrV并组成型表达和分泌Yops的鼠疫。在存在Ca 2 + 的情况下,该突变体背景中LcrG的过表达能够阻止Yops的分泌并降低其表达,并显着降低缺少Ca 2+ < / sup>。 LcrG和LcrV在Δ lcrG2 菌株中的过表达恢复了野生型的Yop表达水平和Ca 2 + 对Yop分泌的控制。令人惊讶的是,当HeLa细胞被Δ lcrG2 菌株感染时,没有明显的细胞毒性,并且消除了Yops的易位。如通过胰蛋白酶的可及性所测,这与YopB的分布改变有关。这些作用不是由于缺少LcrG,因为仅通过恢复LcrV表达和分泌就可以缓解这些作用。发现LcrV本身以非极化方式进入HeLa细胞。这些研究支持了LcrV在Yop分泌水平上的调节作用的LcrG滴定模型,并揭示了LcrV在YopB部署中的进一步作用,这对于将Yops在向量中转入真核细胞至关重要。

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