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首页> 外文期刊>Infection and immunity >Salmonella enterica Serovar Typhimurium Mutants Unable To Convert Malate to Pyruvate and Oxaloacetate Are Avirulent and Immunogenic in BALB/c Mice
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Salmonella enterica Serovar Typhimurium Mutants Unable To Convert Malate to Pyruvate and Oxaloacetate Are Avirulent and Immunogenic in BALB/c Mice

机译:不能将苹果酸转化为丙酮酸和草酰乙酸的沙门氏菌血清型鼠伤寒沙门氏菌对BALB / c小鼠无毒且具有免疫原性。

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Previously, we showed that the Salmonella enterica serovar Typhimurium SR-11 tricarboxylic acid (TCA) cycle must operate as a complete cycle for full virulence after oral infection of BALB/c mice (M. Tchawa Yimga, M. P. Leatham, J. H. Allen, D. C. Laux, T. Conway, and P. S. Cohen, Infect. Immun. >74:1130-1140, 2006). In the same study, we showed that for full virulence, malate must be converted to both oxaloacetate and pyruvate. Moreover, it was recently demonstrated that blocking conversion of succinyl-coenzyme A to succinate attenuates serovar Typhimurium SR-11 but does not make it avirulent; however, blocking conversion of succinate to fumarate renders it completely avirulent and protective against subsequent oral infection with the virulent serovar Typhimurium SR-11 wild-type strain (R. Mercado-Lubo, E. J. Gauger, M. P. Leatham, T. Conway, and P. S. Cohen, Infect. Immun. >76:1128-1134, 2008). Furthermore, the ability to convert succinate to fumarate appeared to be required only after serovar Typhimurium SR-11 became systemic. In the present study, evidence is presented that serovar Typhimurium SR-11 mutants that cannot convert fumarate to malate or that cannot convert malate to both oxaloacetate and pyruvate are also avirulent and protective in BALB/c mice. These results suggest that in BALB/c mice, the malate that is removed from the TCA cycle in serovar Typhimurium SR-11 for conversion to pyruvate must be replenished by succinate or one of its precursors, e.g., arginine or ornithine, which might be available in mouse phagocytes.
机译:先前,我们显示了沙门氏菌血清鼠伤寒菌SR-11三羧酸(TCA)循环必须作为口服感染BALB / c小鼠后的完全毒力的完整循环(M. Tchawa Yimga,MP Leatham,JH Allen,DC Laux,T。Conway和PS Cohen,Infect。Immun。> 74: 1130-1140,2006)。在同一项研究中,我们显示出了充分的毒力,苹果酸必须同时转化为草酰乙酸和丙酮酸。而且,最近证明阻断琥珀酰辅酶A向琥珀酸的转化减弱了鼠伤寒鼠伤寒沙门氏菌SR-11,但没有使其无毒。但是,阻止琥珀酸酯向富马酸酯的转化使其完全无毒,并且可以抵抗强毒血清型鼠伤寒SR-11野生型菌株(R. Mercado-Lubo,EJ Gauger,MP Leatham,T。Conway和PS Cohen)的口服感染。 ,Infect。Immun。> 76: 1128-1134,2008)。此外,似乎仅在鼠伤寒鼠伤寒沙门氏菌SR-11成为全身性药物后才需要将琥珀酸酯转化为富马酸酯。在本研究中,证据表明不能将富马酸酯转化为苹果酸或不能将苹果酸转化为草酰乙酸和丙酮酸的血清型鼠伤寒SR-11突变体在BALB / c小鼠中也无毒且具有保护作用。这些结果表明,在BALB / c小鼠中,从鼠伤寒鼠伤寒沙门氏菌SR-11的TCA循环中移出的苹果酸必须转化为琥珀酸或其精氨酸或鸟氨酸的一种前体,以补充丙酮酸。在小鼠吞噬细胞中。

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