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VemP 的翻译暂停终止,一种弧菌中的分泌监测物,受多个顺式和反式因子的调节,包括 SecY。

Translation arrest cancellation of VemP, a secretion monitor in Vibrio, is regulated by multiple cis and trans factors, including SecY.

机构信息

Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan.

Division of Biological Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, Nara, Japan.

出版信息

J Biol Chem. 2024 Oct;300(10):107735. doi: 10.1016/j.jbc.2024.107735. Epub 2024 Sep 2.

Abstract

VemP is a secretory protein in the Vibrio species that monitors cellular protein-transport activity through its translation arrest, allowing expression of the downstream secD2-secF2 genes in the same operon, which encode components of the protein translocation machinery. When cellular protein-transport function is fully active, secD2/F2 expression remains repressed as VemP translation arrest is canceled immediately. The VemP arrest cancellation occurs on the SecY/E/G translocon in a late stage in the translocation process and requires both trans factors, SecD/F and PpiD/YfgM, and a cis element, Arg-85 in VemP; however, the detailed molecular mechanism remains elusive. This study aimed to elucidate how VemP passing through SecY specifically monitors SecD/F function. Genetic and biochemical studies showed that SecY is involved in the VemP arrest cancellation and that the arrested VemP is stably associated with a specific site in the protein-conducting pore of SecY. VemP-Bla reporter analyses revealed that a short hydrophobic segment adjacent to Arg-85 plays a critical role in the regulated arrest cancellation with its hydrophobicity correlating with the stability of the VemP arrest. We identified Gln-65 and Pro-67 in VemP as novel elements important for the regulation. We propose a model for the regulation of the VemP arrest cancellation by multiple cis elements and trans factors with different roles.

摘要

VemP 是弧菌属中的一种分泌蛋白,通过其翻译抑制来监测细胞的蛋白质转运活性,从而使同一操纵子中的下游 secD2-secF2 基因表达,这些基因编码蛋白质易位机制的组成部分。当细胞蛋白质转运功能完全活跃时,secD2/F2 的表达仍然受到抑制,因为 VemP 的翻译抑制立即被取消。VemP 的抑制取消发生在易位过程的晚期在 SecY/E/G 易位体上,需要两个转位因子,SecD/F 和 PpiD/YfgM,以及一个顺式元件,VemP 中的 Arg-85;然而,详细的分子机制仍然难以捉摸。本研究旨在阐明 VemP 如何通过 SecY 特异性监测 SecD/F 功能。遗传和生化研究表明,SecY 参与了 VemP 的抑制取消,并且被抑制的 VemP 与 SecY 蛋白导孔中的特定位点稳定相关。VemP-Bla 报告分析表明,Arg-85 附近的一个短疏水性片段在受调控的抑制取消中起着关键作用,其疏水性与 VemP 抑制的稳定性相关。我们确定了 VemP 中的 Gln-65 和 Pro-67 是调节的重要新元素。我们提出了一个由多个顺式元件和不同作用的转位因子调节 VemP 抑制取消的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f24/11470409/8f52b75ecede/gr1.jpg

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