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PMID: 9520265 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Targeted alteration of the substrate specificity of peptide synthetases by rational module swapping.

Molecular & general genetics : MGG ·Vol. 257 ·No. 3 ·1998-02-00 ·Pages 308-18

Schneider A, Stachelhaus T, Marahiel MA

Abstract

Analysis of the primary structure of peptide synthetases involved in the non-ribosomal synthesis of peptide antibiotics has revealed a highly conserved and ordered modular arrangement. A module contains at least two domains, involved in ATP-dependent substrate activation and thioester formation. The occurrence and arrangement of these functional building blocks is associated with the number and order of the amino acids incorporated in the peptide product. In this study, we present data on the targeted exchange of the leucine-activating module within the three-module surfactin synthetase 1 (SrfA-A) of Bacillus subtilis. This was achieved by engineering several hybrid srfA-A genes, which were introduced into the surfactin biosynthesis operon by in vivo recombination. We examined the hybrid genes for expression and investigated the enzymatic activities of the resulting recombinant peptide synthetases. For the first time, we demonstrate directly that an individual minimal module, of bacterial or fungal origin, confers its amino acid-specific activity on a multi-modular peptide synthetase. Furthermore, it is shown that directed incorporation of ornithine at the second position of the peptide chain induces a global alteration in the conformation of surfactin and may result in premature cyclization or a branched cyclic structure.

MeSH Terms
Bacillus subtilis/enzymology,genetics Bacterial Proteins/biosynthesis,genetics Genetic Engineering/methods Lipopeptides Peptide Synthases/genetics,metabolism Peptides, Cyclic Substrate Specificity
Chemicals
Bacterial Proteins Lipopeptides Peptides, Cyclic surfactin peptide Peptide Synthases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Schneider A
Biochemie/Fachbereich Chemie, Philipps-Universität Marburg, Germany.
Stachelhaus T
Marahiel M A
Article Info
Journal
Molecular & general genetics : MGG
Abbr.
Mol Gen Genet
ISSN
0026-8925
Published
1998-02-00
Pages
308-18
Language
English
Region
Germany
NLM ID
0125036
Subset
IM
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