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A widely conserved protein Rof inhibits transcription termination factor Rho and promotes Salmonella virulence program.


ABSTRACT: Transcription is crucial for the expression of genetic information and its efficient and accurate termination is required for all living organisms. Rho-dependent termination could rapidly terminate unwanted premature RNAs and play important roles in bacterial adaptation to changing environments. Although Rho has been discovered for about five decades, the regulation mechanisms of Rho-dependent termination are still not fully elucidated. Here we report that Rof is a conserved antiterminator and determine the cryogenic electron microscopy structure of Rho-Rof antitermination complex. Rof binds to the open-ring Rho hexamer and inhibits the initiation of Rho-dependent termination. Rof's N-terminal α-helix undergoes conformational changes upon binding with Rho, and is key in facilitating Rof-Rho interactions. Rof binds to Rho's primary binding site (PBS) and excludes Rho from binding with PBS ligand RNA at the initiation step. Further in vivo analyses in Salmonella Typhimurium show that Rof is required for virulence gene expression and host cell invasion, unveiling a physiological function of Rof and transcription termination in bacterial pathogenesis.

SUBMITTER: Zhang J 

PROVIDER: S-EPMC11018607 | biostudies-literature | 2024 Apr

REPOSITORIES: biostudies-literature

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A widely conserved protein Rof inhibits transcription termination factor Rho and promotes Salmonella virulence program.

Zhang Jing J   Zhang Shuo S   Zhou Wei W   Zhang Xiang X   Li Guanjin G   Li Ruoxuan R   Lin Xingyu X   Chen Ziying Z   Liu Fang F   Shen Pan P   Zhou Xiaogen X   Gao Yue Y   Chen Zhenguo Z   Chao Yanjie Y   Wang Chengyuan C  

Nature communications 20240415 1


Transcription is crucial for the expression of genetic information and its efficient and accurate termination is required for all living organisms. Rho-dependent termination could rapidly terminate unwanted premature RNAs and play important roles in bacterial adaptation to changing environments. Although Rho has been discovered for about five decades, the regulation mechanisms of Rho-dependent termination are still not fully elucidated. Here we report that Rof is a conserved antiterminator and d  ...[more]

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