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Methionine inhibits developmental aggregation of Myxococcus xanthus by blocking the biosynthesis of S-adenosyl methionine.

机译:甲硫氨酸可通过阻断S-腺苷甲硫氨酸的生物合成来抑制粘菌的发展。

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摘要

Previous studies showed that high concentrations of methionine (> 1 mM) inhibited aggregation and fruiting body formation in Myxococcus xanthus (E. Rosenberg, D. Filer, D. Zafriti, and S. H. Kindler, J. Bacteriol. 115: 29-34, 1973, and J. M. Campos and D. R. Zusman, Proc. Natl. Acad. Sci. USA 72:518-522, 1975). However, the mechanism for the inhibition was unclear. In this study, we found that high levels of methionine inhibited the biosynthesis of S-adenosylmethionine (SAM) and that reduced intracellular levels of SAM are correlated with defective chemotactic movements and reduced developmental gene expression. In addition, we found that methionine analogs and high concentrations of amino acids which are known to affect SAM synthesis in other bacteria, such as threonine, lysine, and isoleucine, also caused reduced cellular levels of SAM and blocked fruiting body formation in M. xanthus. These results indicate that SAM is required for development of M. xanthus and the inhibitory effect of methionine on development results, at least in part, from its blocking of the biosynthesis of SAM.
机译:先前的研究表明,高浓度的蛋氨酸(> 1 mM)会抑制粘球菌的聚集和子实体的形成(E. Rosenberg,D. Filer,D. Zafriti和SH Kindler,J. Bacteriol。115:29-34,1973) ,以及JM Campos和DR Zusman,Proc.Natl.Acad.Sci.USA 72:518-522,1975)。但是,抑制的机制尚不清楚。在这项研究中,我们发现高水平的蛋氨酸会抑制S-腺苷甲硫氨酸(SAM)的生物合成,而降低的SAM胞内水平与趋化运动缺陷和发育基因表达降低相关。此外,我们发现蛋氨酸类似物和已知会影响其他细菌(例如苏氨酸,赖氨酸和异亮氨酸)中SAM合成的高浓度氨基酸也导致SAM的细胞水平降低,并阻止了花椒中子实体的形成。 。这些结果表明,SAM需要用于发展黄腐分支杆菌,蛋氨酸对发育结果的抑制作用至少部分是由于其阻断SAM的生物合成。

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