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首页> 外文期刊>Journal of bacteriology >Biosynthesis of Cell Wall Lipopolysaccharide in Mutants of Salmonella V. A Mutant of Salmonella typhimurium Defective in the Synthesis of Cytidine Diphosphoabequose
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Biosynthesis of Cell Wall Lipopolysaccharide in Mutants of Salmonella V. A Mutant of Salmonella typhimurium Defective in the Synthesis of Cytidine Diphosphoabequose

机译:沙门氏菌V突变体中细胞壁脂多糖的生物合成。鼠伤寒沙门氏菌突变体在胞苷二磷酸寡糖的合成中有缺陷。

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摘要

A mutant of Salmonella typhimurium LT2 was found to be unable to convert cytidine diphospho-4-keto-6-deoxy-d-glucose into cytidine diphosphoabequose. The mutation maps in the rfb gene cluster, which is known to be involved in the biosynthesis of the peripheral, “O side-chain” portion of cell wall lipopolysaccharide. In spite of the fact that, in the O side chains, abequose is not a part of the main chain but occurs as short branches, the mutant appears to be unable to polymerize oligosaccharide “repeat units” into long O side chains. The following evidence indicates that this failure is the result of the absence of cytidine diphosphoabequose rather than that of a superimposed second mutation in other genes of the rfb cluster. (i) The mutant does not behave like a multisite mutant in genetic crosses, and it gives rise, at a high frequency, to “revertants” where the ability to synthesize cytidine diphosphoabequose and the ability to synthesize normal lipopolysaccharide with O side chains are both restored. (ii) The mutant strain has normal levels of activity of all of the other enzymes known to be involved in O side-chain synthesis, except that the levels of several enzymes were lowered by about 30% owing to the polarity effect of the mutation. That the lowering of these enzymes is not responsible for the failure of the mutant to synthesize O side chains is clear from the fact that there were revertants which had regained some ability to synthesize abequose but still had lowered levels of these other enzymes, and that this type of revertant produced lipopolysaccharide with considerable amounts of O side chains.
机译:发现鼠伤寒沙门氏菌 LT2的突变体无法将胞苷二磷酸-4-酮6-酮-6-脱氧-d-葡萄糖转化为胞苷二磷酸abose。该突变位于 rfb 基因簇中,已知该簇与细胞壁脂多糖外围“ O侧链”部分的生物合成有关。尽管事实上,在O侧链中,不够的不是主链的一部分,而是短支链,但突变体似乎无法将寡糖“重复单元”聚合为长的O侧链。以下证据表明,这种失败的原因是胞苷二磷酸不存在,而不是 rfb 簇的其他基因中叠加的第二个突变。 (i)该突变体在遗传杂交中的行为不像多位点突变体,并且它以较高的频率产生“突变体”,其中“合成胞苷二磷酸不充足的能力”和“带有O侧链的正常脂多糖的合成能力”都很高。恢复。 (ii)突变菌株具有已知参与O侧链合成的所有其他酶的正常活性水平,除了由于突变的极性作用使几种酶的水平降低约30%。从这些事实可以看出,这些酶的降低与突变体无法合成O侧链的失败无关,这是很明显的,因为存在这样的事实,即某些回复子已经恢复了合成不足的某种能力,但仍然降低了这些其他酶的水平。类型的还原剂产生具有大量O侧链的脂多糖。

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