4.2 Article

Requirement or exclusion of inverted repeat sequences with cruciform-forming potential in Escherichia coli revealed by genome-wide analyses

期刊

CURRENT GENETICS
卷 64, 期 4, 页码 945-958

出版社

SPRINGER
DOI: 10.1007/s00294-018-0815-y

关键词

Cruciform; E. coli; Genome-wide distribution; Intrinsic terminator; Inverted repeat (IR) sequence

资金

  1. JSPS KAKENHI Grant [26440010]
  2. Grants-in-Aid for Scientific Research [26440010] Funding Source: KAKEN

向作者/读者索取更多资源

Inverted repeat (IR) sequences are DNA sequences that read the same from 5' to 3' in each strand. Some IRs can form cruciforms under the stress of negative supercoiling, and these IRs are widely found in genomes. However, their biological significance remains unclear. The aim of the current study is to explore this issue further. We constructed the first Escherichia coli genome-wide comprehensive map of IRs with cruciform-forming potential. Based on the map, we performed detailed and quantitative analyses. Here, we report that IRs with cruciform-forming potential are statistically enriched in the following five regions: the adjacent regions downstream of the stop codon-coding sites (referred to as the stop codons), on and around the positions corresponding to mRNA ends (referred to as the gene ends), similar to 20 to similar to 45 bp upstream of the start codon-coding sites (referred to as the start codons) within the 5'-UTR (untranslated region), similar to 25 to similar to 60 bp downstream of the start codons, and promoter regions. For the adjacent regions downstream of the stop codons and on and around the gene ends, most of the IRs with a repeat unit length of ae 8 bp and a spacer size of ae 8 bp were parts of the intrinsic terminators, regardless of the location, and presumably used for Rho-independent transcription termination. In contrast, fewer IRs were present in the small region preceding the start codons. In E. coli, IRs with cruciform-forming potential are actively placed or excluded in the regulatory regions for the initiation and termination of transcription and translation, indicating their deep involvement or influence in these processes.

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