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Structure-based characterization and compound identification of the wild-type THF class-II riboswitch.


ABSTRACT: Riboswitches are conserved regulatory RNA elements participating in various metabolic pathways. Recently, a novel RNA motif known as the folE RNA motif was discovered upstream of folE genes. It specifically senses tetrahydrofolate (THF) and is therefore termed THF-II riboswitch. To unravel the ligand recognition mechanism of this newly discovered riboswitch and decipher the underlying principles governing its tertiary folding, we determined both the free-form and bound-form THF-II riboswitch in the wild-type sequences. Combining structural information and isothermal titration calorimetry (ITC) binding assays on structure-based mutants, we successfully elucidated the significant long-range interactions governing the function of THF-II riboswitch and identified additional compounds, including alternative natural metabolites and potential lead compounds for drug discovery, that interact with THF-II riboswitch. Our structural research on the ligand recognition mechanism of the THF-II riboswitch not only paves the way for identification of compounds targeting riboswitches, but also facilitates the exploration of THF analogs in diverse biological contexts or for therapeutic applications.

SUBMITTER: Li C 

PROVIDER: S-EPMC11317127 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Structure-based characterization and compound identification of the wild-type THF class-II riboswitch.

Li Chunyan C   Xu Xiaochen X   Geng Zhi Z   Zheng Luqian L   Song Qianqian Q   Shen Xin X   Wu Jingjing J   Zhao Jin J   Li Hongcheng H   He Mengqi M   Tai Xiaoqing X   Zhang Long L   Ma Jinbiao J   Dong Yuhui Y   Ren Aiming A  

Nucleic acids research 20240801 14


Riboswitches are conserved regulatory RNA elements participating in various metabolic pathways. Recently, a novel RNA motif known as the folE RNA motif was discovered upstream of folE genes. It specifically senses tetrahydrofolate (THF) and is therefore termed THF-II riboswitch. To unravel the ligand recognition mechanism of this newly discovered riboswitch and decipher the underlying principles governing its tertiary folding, we determined both the free-form and bound-form THF-II riboswitch in  ...[more]

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