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