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The Myxococcus xanthus dsg gene product performs functions of translation initiation factor IF3 in vivo.

机译:黄曲霉粘菌dsg基因产物在体内具有翻译起始因子IF3的功能。

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摘要

The amino acid sequence of the Dsg protein is 50% identical to that of translation initiation factor IF3 of Escherichia coli, the product of its infC gene. Anti-E. coli IF3 antibodies cross-react with the Dsg protein. Tn5 insertion mutations in dsg are lethal. When ample nutrients are available, however, certain dsg point mutant strains grow at the same rate as wild-type cells. Under the starvation conditions that induce fruiting body development, these dsg mutants begin to aggregate but fail to develop further. The level of Dsg antigen, as a fraction of total cell protein, does not change detectably during growth and development, as expected for a factor essential for protein synthesis. The amount of IF3 protein in E. coli is known to be autoregulated at the translational level. This autoregulation is lost in an E. coli infC362 missense mutant. The dsg+ gene from Myxococcus xanthus restores normal autoregulation to the infC362 mutant strain. Dsg is distinguished from IF3 of E. coli, other enteric bacteria, and Bacillus stearothermophilus by having a C-terminal tail of 66 amino acids. Partial and complete deletion of this tail showed that it is needed for certain vegetative and developmental functions but not for viability.
机译:Dsg蛋白的氨基酸序列与其大肠杆菌infC基因产物的翻译起始因子IF3的氨基酸序列具有50%的同源性。反E。大肠杆菌IF3抗体与Dsg蛋白发生交叉反应。 dsg中的Tn5插入突变是致命的。当有足够的营养时,某些dsg点突变株以与野生型细胞相同的速率生长。在导致子实体发育的饥饿条件下,这些dsg突变体开始聚集,但无法进一步发育。作为细胞蛋白质总量的一部分,Dsg抗原的水平在生长和发育过程中不会发生可检测的变化,这是蛋白质合成必不可少的因素所期望的。已知大肠杆菌中IF3蛋白的量在翻译水平上是自动调节的。这种自动调节在大肠杆菌infC362错义突变体中丢失。来自黄色葡萄球菌的dsg +基因恢复了对infC362突变菌株的正常自动调节。 Dsg与E.coli,其他肠细菌和嗜热脂肪芽孢杆菌的IF3区别在于其C端尾部有66个氨基酸。此尾巴的部分和全部删除表明某些营养和发育功能需要它,而生存力则不是。

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