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Importance of Branched-Chain Amino Acid Utilization in Francisella Intracellular Adaptation

机译:支链氨基酸利用在弗氏杆菌细胞内适应中的重要性。

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Intracellular bacterial pathogens have adapted their metabolism to optimally utilize the nutrients available in infected host cells. We recently reported the identification of an asparagine transporter required specifically for cytosolic multiplication of Francisella. In the present work, we characterized a new member of the major super family (MSF) of transporters, involved in isoleucine uptake. We show that this transporter (here designated IleP) plays a critical role in intracellular metabolic adaptation of Francisella. Inactivation of IleP severely impaired intracellular F. tularensis subsp. novicida multiplication in all cell types tested and reduced bacterial virulence in the mouse model. To further establish the importance of the ileP gene in F. tularensis pathogenesis, we constructed a chromosomal deletion mutant of ileP (ΔFTL_1803) in the F. tularensis subsp. holarctica live vaccine strain (LVS). Inactivation of IleP in the F. tularensis LVS provoked comparable intracellular growth defects, confirming the critical role of this transporter in isoleucine uptake. The data presented establish, for the first time, the importance of isoleucine utilization for efficient phagosomal escape and cytosolic multiplication of Francisella and suggest that virulent F. tularensis subspecies have lost their branched-chain amino acid biosynthetic pathways and rely exclusively on dedicated uptake systems. This loss of function is likely to reflect an evolution toward a predominantly intracellular life style of the pathogen. Amino acid transporters should be thus considered major players in the adaptation of intracellular pathogens.
机译:细胞内细菌病原体已经适应了它们的新陈代谢,以最佳地利用受感染宿主细胞中可用的营养。我们最近报道了鉴定弗朗西斯菌的细胞质增殖所需的天冬酰胺转运蛋白。在目前的工作中,我们对转运蛋白的主要超级家族(MSF)的新成员进行了鉴定,该家族涉及异亮氨酸的吸收。我们表明,这种转运蛋白(此处称为IleP)在弗朗西斯菌的细胞内代谢适应中起关键作用。 IleP的失活严重损害细胞内F. tularensis亚种。 Novicida在所有测试的细胞类型中均繁殖,并降低了小鼠模型中的细菌毒力。为了进一步确定ileP基因在土拉弗朗西斯菌的发病机理中的重要性,我们在土拉弗朗西斯菌亚种中构建了ileP的染色体缺失突变体(ΔFTL_1803)。 holarctica活疫苗株(LVS)。 Tularensis LVS中IleP的失活引发了类似的细胞内生长缺陷,证实了该转运蛋白在异亮氨酸摄取中的关键作用。提出的数据首次确立了异亮氨酸利用对于弗朗西斯菌有效吞噬体逃逸和胞质增殖的重要性,并表明强毒的土拉弗朗西斯菌种已经失去了其支链氨基酸生物合成途径,仅依赖于专门的摄取系统。这种功能丧失很可能反映出病原体朝着细胞内生活方式的方向发展。因此,应将氨基酸转运蛋白视为细胞内病原体适应过程的主要参与者。

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