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Pyridoxal phosphate synthases PdxS/PdxT are required for Actinobacillus pleuropneumoniae viability, stress tolerance and virulence

机译:胸膜肺炎放线杆菌的生存力,胁迫耐受性和毒力需要磷酸吡rid醛合酶PdxS / PdxT

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Pyridoxal 5’-phosphate (PLP) is an essential cofactor for numerous enzymes involved in a diversity of cellular processes in living organisms. Previous analysis of the Actinobacillus pleuropneumoniae S-8 genome sequence revealed the presence of pdxS and pdxT genes, which are implicated in deoxyxylulose 5-phosphate (DXP)-independent pathway of PLP biosynthesis; however, little is known about their roles in A. pleuropneumoniae pathogenicity. Our data demonstrated that A. pleuropneumoniae could synthesize PLP by PdxS and PdxT enzymes. Disruption of the pdxS and pdxT genes rendered the pathogen auxotrophic for PLP, and the defective growth as a result of these mutants was chemically compensated by the addition of PLP, suggesting the importance of PLP production for A. pleuropneumoniae growth and viability. Additionally, the pdxS and pdxT deletion mutants displayed morphological defects as indicated by irregular and aberrant shapes in the absence of PLP. The reduced growth of the pdxS and pdxT deletion mutants under osmotic and oxidative stress conditions suggests that the PLP synthases PdxS/PdxT are associated with the stress tolerance of A. pleuropneumoniae. Furthermore, disruption of the PLP biosynthesis pathway led to reduced colonization and attenuated virulence of A. pleuropneumoniae in the BALB/c mouse model. The data presented in this study reveal the critical role of PLP synthases PdxS/PdxT in viability, stress tolerance, and virulence of A. pleuropneumoniae.
机译:吡y醛5'-磷酸(PLP)是参与活生物体多种细胞过程的众多酶的重要辅助因子。先前对胸膜肺炎放线杆菌S-8基因组序列的分析揭示了pdxS和pdxT基因的存在,这些基因与PLP生物合成的独立于脱氧木糖5-磷酸酯(DXP)的途径有关。然而,关于它们在胸膜肺炎链球菌致病性中的作用知之甚少。我们的数据表明胸膜肺炎链球菌可以通过PdxS和PdxT酶合成PLP。 pdxS和pdxT基因的破坏使病原体成为PLP的营养缺陷型,这些突变体导致的缺陷生长通过添加PLP在化学上得到了补偿,这表明PLP产生对于胸膜肺炎放线杆菌生长和生存力的重要性。此外,pdxS和pdxT缺失突变体在没有PLP的情况下表现出形态缺陷,如不规则形状和异常形状所指示。在渗透和氧化应激条件下,pdxS和pdxT缺失突变体的生长减少,这表明PLP合成酶PdxS / PdxT与胸膜肺炎链球菌的胁迫耐受性有关。此外,在BALB / c小鼠模型中,PLP生物合成途径的破坏导致了胸膜肺炎链球菌的定植减少和毒力减弱。这项研究中提供的数据揭示了PLP合成酶PdxS / PdxT在胸膜肺炎放线杆菌的生存力,胁迫耐受性和毒力中的关键作用。

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