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首页> 外文期刊>Microbiology >Growth of Bacillus subtilis on citrate and isocitrate is supported by the Mg2+–citrate transporter CitM
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Growth of Bacillus subtilis on citrate and isocitrate is supported by the Mg2+–citrate transporter CitM

机译:柠檬酸盐和异柠檬酸芽孢杆菌的生长由Mg 2 + - 柠檬酸盐转运蛋白负载

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Bacillus subtilis 168 was assayed for its growth on tricarboxylic acid (TCA) cycle intermediates and related compounds as the sole carbon sources. Growth of the organism was supported by citrate, D-isocitrate, succinate, fumarate and L-malate, whereas no growth was observed in the presence of cis-aconitate,2-oxoglutarate, D-malate, oxaloacetate and tricarballylate. Growth of the organism on the tricarboxylates citrate and D-isocitrate required the presence of functional CitM, an Mg2+–citrate transporter, whereas its growth on succinate, fumarate and L-malate appeared to be CitM-independent. Interestingly, the naturally occurring enantiomer D-isocitrate was favoured over L-isocitrate by the organism. Like citrate, D-isocitrate was shown to be an inducer of citM expression in B. subtilis. The addition of 1?mM Mg2+ to the growth medium improved growth of the organism on both citrate and D-isocitrate, suggesting that D-isocitrate was taken up by CitM in complex with divalent metal ions. Subsequently, the ability of CitM to transport D-isocitrate was demonstrated by competition experiments and by heterologous exchange in right-side-out membrane vesicles prepared from E. coli cells expressing citM. None of the other TCA cycle intermediates and related compounds tested were recognized by CitM. Uptake experiments using radioactive 63Ni2+ provided direct evidence that D-isocitrate is transported in complex with divalent metal ions.
机译:为其在三羧酸(TCA)循环中间体和相关化合物中被测定芽孢杆菌168,作为唯一的碳源。通过柠檬酸盐,D-苯乙酸酯,琥珀酸盐,富马酸酯和丙酸盐来支持生物体的生长,而在CIS-ACONITITE,2-氧缩缩醛,D-丙酸酯,草氟乙酸酯和三丙烯酸盐存在下,没有观察到生长。生物体生长在柠檬酸三羧酸酯和D-乙酸酯的生长需要存在官能团的葡萄葡萄葡萄(Mg 2 +柠檬酸盐转运蛋白),而其在琥珀酸盐中的生长,富马酸盐和L-丙酸盐似乎是威严的。有趣的是,天然存在的对映异构体D-苯硝酸酯在通过生物体上的L-甲酸异柠檬酸酯。与柠檬酸盐一样,D-苯乙酸盐被显示为B.枯草芽孢杆菌中的菌株表达的诱导剂。向生长培养基中加入1?mm mg2 +改善了柠檬酸盐和d-乙酸酯的生物生长,表明D-乙酸在络合物与二价金属离子复合物中占用。随后,通过竞争实验和由来自大肠杆菌细胞的大肠杆菌细胞制备的右侧膜囊泡的右侧膜囊泡中的异源交换来证明CitM转运D-苯乙烯的能力。所测试的其他TCA循环中间体和相关的化合物均未得到威盛的识别。使用放射性63Ni2的摄取实验+提供了直接证据,即D-乙酸在复合物中与二价金属离子在复合物中运输。

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