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BTSSfinder: a novel tool for the prediction of promoters in cyanobacteria and Escherichia coli.


ABSTRACT: The computational search for promoters in prokaryotes remains an attractive problem in bioinformatics. Despite the attention it has received for many years, the problem has not been addressed satisfactorily. In any bacterial genome, the transcription start site is chosen mostly by the sigma (?) factor proteins, which control the gene activation. The majority of published bacterial promoter prediction tools target ? 70 promoters in Escherichia coli . Moreover, no ?-specific classification of promoters is available for prokaryotes other than for E. coli .Here, we introduce bTSSfinder, a novel tool that predicts putative promoters for five classes of ? factors in Cyanobacteria (? A , ? C , ? H , ? G and ? F ) and for five classes of sigma factors in E. coli (? 70 , ? 38 , ? 32 , ? 28 and ? 24 ). Comparing to currently available tools, bTSSfinder achieves higher accuracy (MCC?=?0.86, F 1 -score?=?0.93) compared to the next best tool with MCC?=?0.59, F 1 -score?=?0.79) and covers multiple classes of promoters.bTSSfinder is available standalone and online at http://www.cbrc.kaust.edu.sa/btssfinder .ilham.shahmuradov@kaust.edu.sa or vladimir.bajic@kaust.edu.sa.Supplementary data are available at Bioinformatics online.

SUBMITTER: Shahmuradov IA 

PROVIDER: S-EPMC5408793 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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bTSSfinder: a novel tool for the prediction of promoters in cyanobacteria and Escherichia coli.

Shahmuradov Ilham Ayub IA   Mohamad Razali Rozaimi R   Bougouffa Salim S   Radovanovic Aleksandar A   Bajic Vladimir B VB  

Bioinformatics (Oxford, England) 20170201 3


<h4>Motivation</h4>The computational search for promoters in prokaryotes remains an attractive problem in bioinformatics. Despite the attention it has received for many years, the problem has not been addressed satisfactorily. In any bacterial genome, the transcription start site is chosen mostly by the sigma (σ) factor proteins, which control the gene activation. The majority of published bacterial promoter prediction tools target σ 70 promoters in Escherichia coli . Moreover, no σ-specific cla  ...[more]

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