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Expression of the Gene for Escherichia Coli Initiation Factor IE-3 in Vivo and in Vitro

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Journal Eur J Biochem
Specialty Biochemistry
Date 1982 Apr 1
PMID 7042344
Citations 10
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Abstract

Expression of protein synthesis initiation factor IF-3 in vivo was studied by measuring its level in exponentially growing cells as a function of gene dosage. A strain haploid for infC, the gene for IF-3, was modified to carry one or two additional infC genes giving diploid and triploid strains. Polyploid strains were achieved by the presence of multicopy plasmids expressing the infC gene. When IF-3 levels were measured by quantitative immunoblotting they were found to be proportional to the gene dosage; the presence of a multicopy plasmid thus causes considerable overproduction of IF-3, enabling large quantities to be purified. When lysates were prepared from freshly grown cells, only IF-3 alpha (the long form) was detected; however when IF-3 was purified from a strain containing a multicopy plasmid which overproduced it, the major product found was IF-3 beta (the short form, lacking six amino acids from the N terminus). The synthesis of the two IF-3 forms was also studied by using a cell-free coupled transcription-translation system dependent on exogenous DNA: the IF-3 gene was found to be very efficiently expressed. IF-3 alpha increased more rapidly than IF-3 beta but following the cessation of protein synthesis IF-3 alpha decreased while IF-3 beta still increased. The results suggest that IF-3 alpha is slowly degraded to the beta form. Addition of non-radioactive IF-3 alpha, up to fivefold molar excess over ribosomes, to the synthesizing system in vitro did not inhibit IF-3 synthesis. Synthesis of IF-3 in vitro appears to be sensitive to guanosine 3'-diphosphate 5'-diphosphate.

Citing Articles

Transcription units around the gene for E. coli translation initiation factor IF3 (infC).

Springer M, Plumbridge J, Trudel M, Graffe M, GRUNBERG-MANAGO M Mol Gen Genet. 1982; 186(2):247-52.

PMID: 7050631 DOI: 10.1007/BF00331857.


Escherichia coli translational initiation factor IF3: a unique case of translational regulation.

Gold L, Stormo G, Saunders R Proc Natl Acad Sci U S A. 1984; 81(22):7061-5.

PMID: 6390429 PMC: 392076. DOI: 10.1073/pnas.81.22.7061.


Structural and transcriptional evidence for related thrS and infC expression.

Mayaux J, Fayat G, Fromant M, Springer M, GRUNBERG-MANAGO M, Blanquet S Proc Natl Acad Sci U S A. 1983; 80(20):6152-6.

PMID: 6353409 PMC: 390161. DOI: 10.1073/pnas.80.20.6152.


Nuclease mapping of the secondary structure of the 49-nucleotide 3' terminal cloacin fragment of Escherichia coli 16s RNA and its interactions with initiation factor 3.

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PMID: 6340066 PMC: 325860. DOI: 10.1093/nar/11.7.2035.


Identification of clones carrying an E. coli tRNAPhe gene by suppression of phenylalanyl-tRNA synthetase thermosensitive mutants.

Caillet J, Plumbridge J, Springer M, Vacher J, Delamarche C, Buckingham R Nucleic Acids Res. 1983; 11(3):727-36.

PMID: 6300764 PMC: 325749. DOI: 10.1093/nar/11.3.727.