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放线菌伸长因子 P 亚家族的结构与功能

Structure and Function of an Elongation Factor P Subfamily in Actinobacteria.

机构信息

Department of Biology I, Microbiology, Ludwig-Maximilians-Universität München, Martinsried, Germany.

Department of Chemistry, Ludwig-Maximilians-Universität München, Munich, Germany.

出版信息

Cell Rep. 2020 Mar 31;30(13):4332-4342.e5. doi: 10.1016/j.celrep.2020.03.009.

Abstract

Translation of consecutive proline motifs causes ribosome stalling and requires rescue via the action of a specific translation elongation factor, EF-P in bacteria and archaeal/eukaryotic a/eIF5A. In Eukarya, Archaea, and all bacteria investigated so far, the functionality of this translation elongation factor depends on specific and rather unusual post-translational modifications. The phylum Actinobacteria, which includes the genera Corynebacterium, Mycobacterium, and Streptomyces, is of both medical and economic significance. Here, we report that EF-P is required in these bacteria in particular for the translation of proteins involved in amino acid and secondary metabolite production. Notably, EF-P of Actinobacteria species does not need any post-translational modification for activation. While the function and overall 3D structure of this EF-P type is conserved, the loop containing the conserved lysine is flanked by two essential prolines that rigidify it. Actinobacteria's EF-P represents a unique subfamily that works without any modification.

摘要

连续脯氨酸基序的翻译会导致核糖体停滞,需要特定的翻译延伸因子 EF-P(细菌和古菌/真核生物 a/eIF5A)来挽救。在真核生物、古菌和迄今为止研究的所有细菌中,这种翻译延伸因子的功能依赖于特定的、相当不寻常的翻译后修饰。放线菌门包括棒状杆菌属、分枝杆菌属和链霉菌属,具有重要的医学和经济意义。在这里,我们报告说,EF-P 在这些细菌中特别需要用于翻译参与氨基酸和次生代谢产物生产的蛋白质。值得注意的是,放线菌物种的 EF-P 不需要任何翻译后修饰即可激活。虽然这种 EF-P 类型的功能和整体 3D 结构是保守的,但包含保守赖氨酸的环被两个刚性的必需脯氨酸所包围。放线菌的 EF-P 代表了一个独特的亚家族,无需任何修饰即可发挥作用。

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