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Elongation factor P controls translation of the mgtA gene encoding a Mg 2+ transporter during Salmonella infection

机译:伸长因子P控制在沙门氏菌感染期间编码Mg 2+转运蛋白的MgTA基因的翻译

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摘要

Ribosome often stalls on mRNA sequences harboring consecutive proline codons. Elongation factor P (EF‐P) is required for the stalled ribosome to continue translation and thus the absence of EF‐P affects translation of the associated open reading frame. Here we report that EF‐P controls translation of the mgtA gene encoding a Mg 2+ ‐transporting ATPase from the intracellualr pathogen Salmonella enterica serovar Typhimurium. EF‐P's effect on mgtA translation is dependent on the 550th and 551st proline codons in the coding region and thus substitution of those proline codons eliminates EF‐P‐mediated control of MgtA protein without affecting the Mg 2+ ‐transporting activity of the mgtA gene. The Pro550 and Pro551‐substituted mgtA gene promotes Salmonella 's intramacrophage survival and mouse virulence, suggesting that EF‐P‐mediated translational control of the mgtA gene is required for Salmonella pathogenesis.
机译:核糖体通常会在含有连续脯氨酸密码子的mRNA序列上停滞。停滞核糖体需要伸长系数P(EF-P)以继续翻译,因此不存在EF-P影响相关开放阅读框的翻译。在这里,我们认为EF-P从口腔病原体沙门氏菌肠道毒蕈氏毒蕈中编码编码Mg 2+的Mg 2+的MgTA基因的翻译。 EF-P对MGTA翻译的影响取决于编码区中的550和551st脯氨酸密码子,因此取代这些脯氨酸密码子消除了MGTA蛋白的EF-P介导的控制而不影响MgTA基因的Mg 2+ - 重塑活性。 PRO550和PRO551取代的MGTA基因促进沙门氏肠道术中的存活率和小鼠毒力,表明沙门氏菌病原需要EF-P介导的MGTA基因的平移控制。

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