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PMID: 1375309 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

The influence of ribosome-binding-site elements on translational efficiency in Bacillus subtilis and Escherichia coli in vivo.

Molecular microbiology ·Vol. 6 ·No. 9 ·1992-05-00 ·Pages 1105-14

Vellanoweth RL, Rabinowitz JC

Abstract

A method is described to determine simultaneously the effect of any changes in the ribosome-binding site (RBS) of mRNA on translational efficiency in Bacillus subtilis and Escherichia coli in vivo. The approach was used to analyse systematically the influence of spacing between the Shine-Dalgarno sequence and the initiation codon, the three different initiation codons, and RBS secondary structure on translational yields in the two organisms. Both B. subtilis and E. coli exhibited similar spacing optima of 7-9 nucleotides. However, B. subtilis translated messages with spacings shorter than optimal much less efficiently than E. coli. In both organisms, AUG was the preferred initiation codon by two- to threefold. In E. coli GUG was slightly better than UUG while in B. subtilis UUG was better than GUG. The degree of emphasis placed on initiation codon type, as measured by translational yield, was dependent on the strength of the Shine-Dalgarno interaction in both organisms. B. subtilis was also much less able to tolerate secondary structure in the RBS than E. coli. While significant differences were found between the two organisms in the effect of specific RBS elements on translation, other mRNA components in addition to those elements tested appear to be responsible, in part, for translational species specificity. The approach described provides a rapid and systematic means of elucidating such additional determinants.

MeSH Terms
Bacillus subtilis/genetics Base Sequence Binding Sites Cloning, Molecular Codon DNA, Bacterial Escherichia coli/genetics Genetic Vectors Molecular Sequence Data Nucleic Acid Conformation Protein Biosynthesis/physiology RNA, Bacterial/metabolism RNA, Messenger/metabolism Ribosomes/chemistry,metabolism Transformation, Bacterial beta-Galactosidase/genetics
Chemicals
Codon DNA, Bacterial RNA, Bacterial RNA, Messenger beta-Galactosidase
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Vellanoweth R L
Department of Molecular and Cell Biology, University of California, Berkeley 94720.
Rabinowitz J C
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
1992-05-00
Pages
1105-14
Language
English
Region
England
NLM ID
8712028
Subset
IM
Grants
NIADDK NIH HHS · AM2109 · United States
NIGMS NIH HHS · GM09094 · United States
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