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Structural basis of Mfd-dependent transcription termination.


ABSTRACT: Mfd-dependent transcription termination plays an important role in transcription-coupled DNA repair, transcription-replication conflict resolution, and antimicrobial resistance development. Despite extensive studies, the molecular mechanism of Mfd-dependent transcription termination in bacteria remains unclear, with several long-standing puzzles. How Mfd is activated by stalled RNA polymerase (RNAP) and how activated Mfd translocates along the DNA are unknown. Here, we report the single-particle cryo-electron microscopy structures of T. thermophilus Mfd-RNAP complex with and without ATP?S. The structures reveal that Mfd undergoes profound conformational changes upon activation, contacts the RNAP ?1 domain and its clamp, and pries open the RNAP clamp. These structures provide a foundation for future studies aimed at dissecting the precise mechanism of Mfd-dependent transcription termination and pave the way for rational drug design targeting Mfd for the purpose of tackling the antimicrobial resistance crisis.

SUBMITTER: Shi J 

PROVIDER: S-EPMC7672476 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Structural basis of Mfd-dependent transcription termination.

Shi Jing J   Wen Aijia A   Zhao Minxing M   Jin Sha S   You Linlin L   Shi Yue Y   Dong Shuling S   Hua Xiaoting X   Zhang Yu Y   Feng Yu Y  

Nucleic acids research 20201101 20


Mfd-dependent transcription termination plays an important role in transcription-coupled DNA repair, transcription-replication conflict resolution, and antimicrobial resistance development. Despite extensive studies, the molecular mechanism of Mfd-dependent transcription termination in bacteria remains unclear, with several long-standing puzzles. How Mfd is activated by stalled RNA polymerase (RNAP) and how activated Mfd translocates along the DNA are unknown. Here, we report the single-particle  ...[more]

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