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The expansive effects of polyamines on the metabolism and virulence of Streptococcus pneumoniae

机译:多胺对肺炎链球菌新陈代谢和毒力的膨胀作用

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Polyamines are common intracellular metabolites of nearly all cells, and their conservation across a vast diversity of cells suggests critical roles for these compounds in cellular physiology. Most intracellular polyamines are associated with RNA and, subsequently, polyamines have significant effects on transcription and translation. Putrescine and spermidine are the most common polyamines in bacteria. Intracellular polyamine pools in bacteria are tightly controlled by both de novo synthesis and transport. Polyamine homeostasis is emerging as a critical parameter of multiple pathways and physiology with substantial impact on bacterial pathogenesis, including the important human pathogen Streptococcus pneumoniae . Modulation of polyamine metabolism in pneumococci is an important regulator of central metabolism. It has broad effects on virulence factors such as capsule as well as stress responses that ultimately impact the survival of pneumococcus in a host. Polyamine transport protein as a single antigen or in combination with other pneumococcal proteins is shown to be an efficacious immunogen that protects against nasopharyngeal colonization, and invasive disease. A comprehensive description of polyamine metabolic pathways and their intersection with pneumococcal pathogenesis will undoubtedly point to novel approaches for treatment and prevention of pneumococcal disease.
机译:多胺是几乎所有细胞的常见的细胞内代谢物,它们穿过巨大多样化细胞的保护表明这些化合物在细胞生理学中的关键作用。大多数细胞内多胺与RNA相关,随后,多胺对转录和翻译具有显着影响。 Putrescine和Fepermidine是细菌中最常见的多胺。细菌中的细胞内多胺池被De Novo合成和运输都紧紧控制。多胺稳态被涌现为多种途径和生理学的关键参数,对细菌发病机制具有大量影响,包括重要人体病原体链球菌肺炎料。 Pneumococci的多胺代谢调节是中央代谢的重要调节因素。它对诸如胶囊等毒力因子以及最终影响宿主中肺炎球菌存活的压力反应具有广泛的影响。多胺转运蛋白作为单一抗原或与其他肺炎球菌蛋白组合被证明是一种有效的免疫原,可防止鼻咽殖民化和侵袭性疾病。多胺代谢途径的综合描述及其与肺炎球菌发病机构的交叉点无疑将指向新的治疗和预防肺炎球菌病的方法。

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