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PMID: 9572951 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Truncation of peptide deformylase reduces the growth rate and stabilizes solvent production in Clostridium beijerinckii NCIMB 8052.

Applied and environmental microbiology ·Vol. 64 ·No. 5 ·1998-05-00 ·Pages 1780-5

Evans VJ, Liyanage H, Ravagnani A, Young M, Kashket ER

Abstract

The wild-type strain of Clostridium beijerinckii NCIMB 8052 tends to degenerate (i.e., lose the ability to form solvents) after prolonged periods of laboratory culture. Several Tn1545 mutants of this organism showing enhanced long-term stability of solvent production were isolated. Four of them harbor identical insertions within the fms (def) gene, which encodes peptide deformylase (PDF). The C. beijerinckii fms gene product contains four diagnostic residues involved in the Zn2+ coordination and catalysis found in all PDFs, but it is unusually small, because it lacks the dispensable disordered C-terminal domain. Unlike previously characterized PDFs from Escherichia coli and Thermus thermophilus, the C. beijerinckii PDF can apparently tolerate N-terminal truncation. The Tn1545 insertion in the mutants is at a site corresponding to residue 15 of the predicted gene product. This probably removes 23 N-terminal residues from PDF, leaving a 116-residue protein. The mutant PDF retains at least partial function, and it complements an fms(Ts) strain of E. coli. Northern hybridizations indicate that the mutant gene is actively transcribed in C. beijerinckii. This can only occur from a previously unsuspected, outwardly directed promoter located close to the right end of Tn1545. The Tn1545 insertion in fms causes a reduction in the growth rate of C. beijerinckii, and, associated with this, the bacteria display an enhanced stability of solvent production. The latter phenotype can be mimicked in the wild type by reducing the growth rate. Therefore, the observed amelioration of degeneration in the mutants is probably due to their reduced growth rates.

MeSH Terms
Amidohydrolases Amino Acid Sequence Aminopeptidases/genetics,physiology Clostridium/enzymology,growth & development DNA Transposable Elements Molecular Sequence Data Mutation Solvents/metabolism
Chemicals
DNA Transposable Elements Solvents Aminopeptidases Amidohydrolases peptide deformylase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Evans V J
Institute of Biological Sciences, University of Wales, Aberystwyth, Ceredigion.
Liyanage H
Ravagnani A
Young M
Kashket E R
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Article Info
Journal
Applied and environmental microbiology
Abbr.
Appl Environ Microbiol
ISSN
0099-2240
Published
1998-05-00
Pages
1780-5
Language
English
Region
United States
NLM ID
7605801
PMCID
PMC106230
Subset
IM
Databases
GENBANK
Z96934
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