High-throughput, fluorescent-aptamer-based measurements of steady-state transcription rates for the Mycobacterium tuberculosis RNA polymerase

被引:2
|
作者
Jensen, Drake [1 ]
Manzano, Ana Ruiz [1 ]
Rector, Maxwell [2 ]
Tomko, Eric J. [1 ]
Record, M. Thomas [2 ]
Galburt, Eric A. [1 ]
机构
[1] Washington Univ, Sch Med, Dept Biochem & Mol Biophys, St Louis, MO 63108 USA
[2] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
基金
美国国家卫生研究院;
关键词
ESCHERICHIA-COLI; OPEN COMPLEXES; RIBOSOMAL-RNA; BACTERIAL TRANSCRIPTION; RIFAMPICIN INHIBITION; PROMOTER ESCAPE; MESSENGER-RNA; INITIATION; MECHANISM; PROTEIN;
D O I
10.1093/nar/gkad761
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The first step in gene expression is the transcription of DNA sequences into RNA. Regulation at the level of transcription leads to changes in steady-state concentrations of RNA transcripts, affecting the flux of downstream functions and ultimately cellular phenotypes. Changes in transcript levels are routinely followed in cellular contexts via genome-wide sequencing techniques. However, in vitro mechanistic studies of transcription have lagged with respect to throughput. Here, we describe the use of a real-time, fluorescent-aptamer-based method to quantitate steady-state transcription rates of the Mycobacterium tuberculosis RNA polymerase. We present clear controls to show that the assay specifically reports on promoter-dependent, full-length RNA transcription rates that are in good agreement with the kinetics determined by gel-resolved, alpha-P-32 NTP incorporation experiments. We illustrate how the time-dependent changes in fluorescence can be used to measure regulatory effects of nucleotide concentrations and identity, RNAP and DNA concentrations, transcription factors, and antibiotics. Our data showcase the ability to easily perform hundreds of parallel steady-state measurements across varying conditions with high precision and reproducibility to facilitate the study of the molecular mechanisms of bacterial transcription.
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页数:16
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