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Modified Needle-Tip PcrV Proteins Reveal Distinct Phenotypes Relevant to the Control of Type III Secretion and Intoxication by Pseudomonas aeruginosa

机译:修饰的针尖PcrV蛋白揭示与铜绿假单胞菌控制III型分泌和中毒有关的不同表型

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摘要

The type III secretion system (T3SS) is employed to deliver effector proteins to the cytosol of eukaryotic hosts by multiple species of Gram-negative bacteria, including Pseudomonas aeruginosa. Translocation of effectors is dependent on the proteins encoded by the pcrGVHpopBD operon. These proteins form a T3S translocator complex, composed of a needle-tip complex (PcrV), translocons (PopB and PopD), and chaperones (PcrG and PcrH). PcrV mediates the folding and insertion of PopB/PopD in host plasmic membranes, where assembled translocons form a translocation channel. Assembly of this complex and delivery of effectors through this machinery is tightly controlled by PcrV, yet the multifunctional aspects of this molecule have not been defined. In addition, PcrV is a protective antigen for P. aeruginosa infection as is the ortholog, LcrV, for Yersinia. We constructed PcrV derivatives containing in-frame linker insertions and site-specific mutations. The expression of these derivatives was regulated by a T3S-specific promoter in a pcrV-null mutant of PA103. Nine derivatives disrupted the regulation of effector secretion and constitutively released an effector protein into growth medium. Three of these regulatory mutants, in which the linker was inserted in the N-terminal globular domain, were competent for the translocation of a cytotoxin, ExoU, into eukaryotic host cells. We also isolated strains expressing a delayed-toxicity phenotype, which secrete translocators slowly despite the normal level of effector secretion. Most of the cytotoxic translocation-competent strains retained the protective epitope of PcrV derivatives, and Mab166 was able to protect erythrocytes during infection with these strains. The use of defined PcrV derivatives possessing distinct phenotypes may lead to a better understanding of the functional aspects of T3 needle-tip proteins and the development of therapeutic agents or vaccines targeting T3SS-mediated intoxication.
机译:III型分泌系统(T3SS)用于通过多种革兰氏阴性细菌(包括铜绿假单胞菌)将效应子蛋白传递到真核宿主的细胞质中。效应子的易位依赖于由pcrGVHpopBD操纵子编码的蛋白质。这些蛋白质形成T3S易位复合物,由针尖复合物(PcrV),转座子(PopB和PopD)和分子伴侣(PcrG和PcrH)组成。 PcrV介导PopB / PopD在宿主质膜中的折叠和插入,其中组装的易位子形成易位通道。通过PcrV可以严格控制这种复合物的组装和通过该机制递送效应子,但尚未定义该分子的多功能方面。另外,PcrV是铜绿假单胞菌感染的保护性抗原,耶尔森氏菌的直向同源物LcrV也是如此。我们构建了包含框内接头插入和位点特异性突变的PcrV衍生物。这些衍生物的表达受PA103的pcrV-null突变体中T3S特异性启动子调控。九种衍生物破坏了效应子分泌的调控,并组成性地将效应子蛋白释放到生长培养基中。这些调节突变体中的三个在接头插入N端球形结构域的情况下,能够将细胞毒素ExoU转运到真核宿主细胞中。我们还分离了表达延迟毒性表型的菌株,尽管效应子分泌水平正常,但它们缓慢分泌易位子。大多数具有细胞毒性易位能力的菌株保留了PcrV衍生物的保护性表位,Mab166能够在感染这些菌株的过程中保护红细胞。定义的具有独特表型的PcrV衍生物的使用可能会导致人们更好地理解T3针尖蛋白的功能方面以及开发针对T3SS介导的中毒的治疗剂或疫苗。

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