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Stable-isotope studies of glutamate catabolism in Fusobacterium nucleatum

机译:核梭菌谷氨酸分解代谢的稳定同位素研究

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Catabolism of glutamate was investigated in Fusobacterium nucleatum, an anaerobic micro-organism that is strongly implicated in periodontal disease. The distribution of labels in acetate and butyrate derived from [~(13)C]glutamates was determined by NMR spectroscopy and MS. The label from L-[5-~(13)C]glutamate was not incorporated, whereas C-1 of acetate and butyrate were efficiently labelled by L-[1-~(13)C]glutamate; these results indicated that the hydroxyglutarate pathway predominated. In butyrate, enrichment at C-3 was smaller than C-1; that this was not due to participation of the methylaspartate pathway was demonstrated by the incorporation of label from L-[4-~(13)C]glutamate into only C-2 of acetate and C-4 (major)/C-2 (minor) of butyrate. The presence of label at a second site in butyrate was attributed to the synthesis of butyrate from acetate and verified by the incorporation of label from [1,2-~(13)C_2]- and [~2H_3]-acetate.
机译:谷氨酸的分解代谢是在核梭菌中进行的,该菌是一种厌氧微生物,与细菌的牙周疾病密切相关。通过NMR光谱和MS确定在[[(13)C]谷氨酸]衍生的乙酸盐和丁酸盐中标记物的分布。没有掺入L- [5-〜(13)C]谷氨酸的标记,而乙酸和丁酸酯的C-1被L- [1-〜(13)C]谷氨酸有效地标记。这些结果表明,羟基戊二酸途径占主导。在丁酸中,C-3处的富集比C-1小;通过将L- [4-〜(13)C]谷氨酸的标记物仅掺入乙酸盐的C-2和C-4(主要)/ C-2中,证明这不是由于天冬氨酸甲酯途径的参与所致(次要)。丁酸酯中第二个位点处标记的存在归因于乙酸酯合成丁酸酯,并通过掺入[1,2-〜(13)C_2]-和[〜2H_3]-乙酸酯中的标记而得到证实。

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