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Review

Regulation of Bacterial Gene Expression by Transcription Attenuation

Charles L. Turnbough Jr.
Charles L. Turnbough Jr.
aDepartment of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama, USA
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DOI: 10.1128/MMBR.00019-19
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SUMMARY

A wide variety of mechanisms that control gene expression in bacteria are based on conditional transcription termination. Generally, in these mechanisms, a transcription terminator is located between a promoter and a downstream gene(s), and the efficiency of the terminator is controlled by a regulatory effector that can be a metabolite, protein, or RNA. The most common type of regulation involving conditional termination is transcription attenuation, in which the primary regulatory target is an essential element of a single terminator. The terminator can be either intrinsic or Rho dependent, with each presenting unique regulatory targets. Transcription attenuation mechanisms can be divided into five classes based primarily on the manner in which transcription termination is rendered conditional. This review summarizes each class of control mechanisms from a historical perspective, describes important examples in a physiological context and the current state of knowledge, highlights major advances, and discusses expectations of future discoveries.

  • Copyright © 2019 American Society for Microbiology.

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Regulation of Bacterial Gene Expression by Transcription Attenuation
Charles L. Turnbough Jr.
Microbiology and Molecular Biology Reviews Jul 2019, 83 (3) e00019-19; DOI: 10.1128/MMBR.00019-19

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Regulation of Bacterial Gene Expression by Transcription Attenuation
Charles L. Turnbough Jr.
Microbiology and Molecular Biology Reviews Jul 2019, 83 (3) e00019-19; DOI: 10.1128/MMBR.00019-19
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  • Article
    • SUMMARY
    • INTRODUCTION
    • TRANSCRIPTION ATTENUATION
    • CLASS I: RIBOSOME-MEDIATED TRANSCRIPTION ATTENUATION
    • CLASS II: RNA-BINDING-PROTEIN-MEDIATED TRANSCRIPTION ATTENUATION
    • CLASS III: RIBOSWITCH-MEDIATED TRANSCRIPTION ATTENUATION
    • CLASS IV: TRANSCRIPTION ATTENUATION WITHOUT AN RNA-BINDING ELEMENT
    • CLASS V: TRANSCRIPTION ATTENUATION AT RHO-DEPENDENT TERMINATORS
    • CONCLUSIONS
    • ACKNOWLEDGMENTS
    • REFERENCES
    • Author Bios
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KEYWORDS

RNA-binding proteins
Rho-dependent termination
transcription attenuation
bacterial gene regulation
intrinsic termination
reiterative transcription
riboswitches

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