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Oligomerization of PcrV and LcrV, protective antigens of Pseudomonas aeruginosa and Yersinia pestis.

机译:PcrV和LcrV的低聚,铜绿假单胞菌和鼠疫耶尔森菌的保护性抗原。

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摘要

Protective antigens of Pseudomonas aeruginosa (PcrV) and Yersinia pestis (LcrV) are key elements of specialized machinery, the type III secretion system (T3SS), which enables the injection of effector molecules into eukaryotic cells. Being positioned at the injectisome extremity, V proteins participate in the translocation process across the host cell plasma membrane. In this study, we demonstrate the assembly of V proteins into oligomeric doughnut-like complexes upon controlled refolding of the proteins in vitro. The oligomeric nature of refolded PcrV was revealed by size exclusion chromatography, native gel electrophoresis, and native mass spectrometry, which ascertain the capacity of the protein to multimerize into higher-order species. Furthermore, transmission electron microscopy performed on oligomers of both PcrV and LcrV revealed the presence of distinct structures with approximate internal and external diameters of 3-4 and 8-10 nm, respectively. The C-terminal helix, alpha12, of PcrV and notably the hydrophobic residues Val(255), Leu(262), and Leu(276) located within this helix, were shown to be crucial for oligomerization. Moreover, the corresponding mutant proteins produced in P. aeruginosa were found to be non-functional in in vivo type III-dependent cytotoxicity assays by directly affecting the correct assembly of PopB/D translocon within the host cell membranes. The detailed understanding of structure-function relationships of T3SS needle tip proteins will be of value in further developments of new vaccines and antimicrobials.
机译:铜绿假单胞菌(PcrV)和鼠疫耶尔森氏菌(LcrV)的保护性抗原是III型分泌系统(T3SS)专用机器的关键元件,可将效应子分子注入真核细胞。 V蛋白位于注射体末端,参与跨宿主细胞质膜的转运过程。在这项研究中,我们证明了在体外将蛋白受控重折叠后,V蛋白可以组装成寡聚甜甜圈状复合物。通过大小排阻色谱,天然凝胶电泳和天然质谱揭示了重折叠的PcrV的寡聚性质,这确定了蛋白质多聚化为更高阶物种的能力。此外,对PcrV和LcrV的低聚物进行的透射电子显微镜检查显示,存在不同的结构,分别具有大约3-4和8-10 nm的内径和外径。 PcrV的C末端螺旋alpha12,尤其是位于该螺旋内的疏水残基Val(255),Leu(262)和Leu(276)被证明对寡聚化至关重要。此外,发现铜绿假单胞菌中产生的相应突变蛋白通过直接影响宿主细胞膜内PopB / D转座子的正确装配,在体内III型依赖的细胞毒性试验中无功能。 T3SS针尖蛋白质的结构-功能关系的详细了解将在新疫苗和抗菌剂的进一步开发中有价值。

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