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Functional characterization of murB-porABCD operon for polyamine uptake and peptidoglycan synthesis in Streptococcus suis

机译:Suis中多胺摄取和肽聚糖合成的Murb-Porabcd操纵子的功能表征

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摘要

Spermidine (Spd), spermine (Spm), and putrescine (Put), which are the most widely distributed cellular poly amines, are essential for normal growth and multiplication of both eukaryotic and prokaryotic cells. In this study, we identified the only putative polyamine transport system PotABCD in Streptococcus suis, a worldwide zoonotic Gram-positive pathogen causing lethal infections in humans and pigs. It was discovered that S. suis could uptake polyamines preferably Spd and Spm. By constructing a potA deleted mutant, we confirmed that PotABCD was responsible for polyamine uptake, and PotD bound to the protein of polyamines. The four PotABCD genes were co-transcribed with murB, a gene involved in peptidoglycan (PG) synthesis. Furthermore the roles of polyamine transport system in maintaining the PG structure were detected to understand the biological significance of this co-transcription. In contrast to the wild type, the mutant ApotA exhibited elongated chain length and abnormal cell division morphology. Phenotypic changes were attributed to be the up-regulation of genes involved in PG synthesis and hydrolysis in ApotA. Additionally, polyamines functioned not only as feedback regulators of PotA by inhibiting PotA activity but also as regulators on potABCD and genes involved in PG synthesis. This study reveals the functions of PotABCD in polyamine transport and the regulatory roles of polyamines in PG synthesis. Results provide new insights into the machineries contributing to normal growth and cell division of S. suis.
机译:亚精氨酸(SPD),精子(SPM)和PUTRESCINE(PUT),其是最广泛分布的细胞聚胺,对于正常生长和真核和原核细胞的繁殖是必不可少的。在这项研究中,我们鉴定了苏氏菌中唯一推定的多胺运输系统POTABCD,其全球人群革兰氏阳性病原体导致人类和猪中的致死感染。它发现S. suis可以吸收多胺,优选SPD和SPM。通过构建Pota缺失的突变体,我们证实POTABCD负责多胺摄取和与多胺蛋白质结合的Potd。四种玉米胶基基因与麦白,一种参与肽聚糖(PG)合成的基因共转录。此外,检测到聚胺运输系统在保持PG结构中的作用以了解该协同转录的生物学意义。与野生型相比,突变体Apota表现出细长的链长和异常细胞分裂形态。表型变化归因于参与PG合成和水解中的基因的上调。此外,多胺不仅通过抑制POTA活性而作为POTA的反馈稳压因子,而且在PG合成中参与PG合成的胚胎和基因的调节剂。本研究揭示了POTABCD在多胺运输中的功能以及多胺在PG合成中的调节作用。结果对机器提供了促进苏士州正常生长和细胞划分的新见解。

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