Title :
Computational prediction of small non-coding RNA within distal 3´region of 16SrRNA gene of Bacillus sp. strain SJ-101
Author :
Singh, Braj R. ; Al-Khedhairy, Abdulaziz A. ; Alarifi, Saud A. ; Musarrat, Javed
Author_Institution :
DNA Res., King Saud Univ., Riyadh, Saudi Arabia
Abstract :
Computational ribonucleomics of heavy metal stress tolerant Bacillus sp. strain SJ-101 16SrRNA gene has led to the identification of a novel small non-coding RNA (sRNA) and promoter-like sequences within 3´ region of the gene. Using RNAz web server, a 123 bp long functional sRNA with significant thermodynamic stability (Energy contribution: -25.2) and evolutionary conservation (structure conservation index: 0.63) with a SVM RNA class probability (p) of 0.98 was predicted. The clustal W alignment revealed ~79% sequence homology with OxySRNA of Salmonella spp. in sRNAMap database. The Hfq binding site mapped within sRNA showed high sequence similarity with the Hfq elements in OxySRNA family. The target sites for SJ-101 sRNA were identified as ywqE, glpD, yomN and ywjE genes of Bacillus subtilis employing TargetRNA tool. Furthermore, using BPROM software, the regulatory motifs like -35 and -10 boxes were mapped at 1166 and 1187 positions, respectively. The cis-acting elements as the binding sites for transcription factors (TF) were identified at positions 1184 and 1188 within the same region. Thus, it is concluded that sRNAs are widely distributed and that these functional elements are implicated in fine tuning of gene regulatory processes under stress conditions.
Keywords :
biological techniques; biology computing; biothermics; genetics; macromolecules; molecular biophysics; organic compounds; thermal stability; thermodynamics; 16SrRNA gene; BPROM software; Bacillus sp. strain SJ-101; Bacillus subtilis; Hfq binding site; OxySRNA family; RNAz web server; SVM RNA class probability; Salmonella spp; binding sites; cis-acting elements; computational ribonucleomics; energy contribution; evolutionary conservation; gene regulatory processes; glpD genes; heavy metal stress tolerant; noncoding RNA; promoter-like sequences; regulatory motifs; sequence homology; small noncoding RNA; structure conservation index; thermodynamic stability; transcription factors; yomN genes; ywjE genes; ywqE genes; Bioinformatics; Capacitive sensors; DNA; Genetics; Genomics; Microorganisms; Performance analysis; Proteins; RNA; Sequences; 16SrRNA gene; Bacillus; Computational ribonucleomics; Hfq; In silico analysis; OxySRNA; sRNA;
Conference_Titel :
Bioinformatics and Biomedical Technology (ICBBT), 2010 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-6775-4
DOI :
10.1109/ICBBT.2010.5478967