EF-P及其对应物EfpL (YeiP) 差异控制了含有proline的序列的翻译
Alina Sieber1, Marina Parr2, Julian von Ehr3,4
1Faculty of Biology, Microbiology, Ludwig-Maximilians-Universität München, Planegg-Martinsried, Germany.
Nature communications
|December 2, 2024
概括
细菌使用EfpL (也称为YeiP) 来拯救因林序列停滞的核糖体. 这种蛋白质感知细胞代谢,并与EF-P一起驱动细菌生长.
科学领域:
- 分子生物学分子生物学
- 细菌生理学 细菌生理学
- 蛋白质结构和功能 蛋白质结构和功能
背景情况:
- 聚烯序列通过阻断核糖体阻碍细菌生长.
- 众所周知,延长因子P (EF-P) 能够解决这些由proline引起的摊位.
- 对于EF-P同类器,EfpL (YeiP) 的功能,仍然基本上是未知的.
研究的目的:
- 从功能和结构上描述从大肠杆菌的EfpL.
- 调查EfpL在细菌转化应激反应中的作用.
- 为了识别由EfpL和EF-P解决的序列.
主要方法:
- 核糖体造型,以确定EfpL捕获动机的光谱.
- EfpL. 的结构特征.
- 通过 lysine acylation 对 EfpL 与细胞代谢状态的相互作用进行分析.
主要成果:
- EfpL解决了含有proline的序列和其他动机,这些动机会阻碍核糖体.
- 无论是EF-P还是EfpL都可以诱导翻译暂停.
- EfpL的活性是由细胞代谢状态通过 lysine 乙化调节的.
- EfpL和EF-P的同时出现与细菌生长率的增加有关.
结论:
- 在转化应激期间,EfpL在核糖体救援中发挥着至关重要的作用.
- EfpL作为细胞代谢状态的传感器.
- EF-P和EfpL的联合作用是细菌生长的进化优势.
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