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PMID: 20348259 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Biochemical characterization of a novel indole prenyltransferase from Streptomyces sp. SN-593.

Journal of bacteriology ·Vol. 192 ·No. 11 ·2010-06-00 ·Pages 2839-51

Takahashi S, Takagi H, Toyoda A, Uramoto M, Nogawa T, Ueki M, Sakaki Y, Osada H

Abstract

Genome sequencing of Streptomyces species has highlighted numerous potential genes of secondary metabolite biosynthesis. The mining of cryptic genes is important for exploring chemical diversity. Here we report the metabolite-guided genome mining and functional characterization of a cryptic gene by biochemical studies. Based on systematic purification of metabolites from Streptomyces sp. SN-593, we isolated a novel compound, 6-dimethylallylindole (DMAI)-3-carbaldehyde. Although many 6-DMAI compounds have been isolated from a variety of organisms, an enzyme catalyzing the transfer of a dimethylallyl group to the C-6 indole ring has not been reported so far. A homology search using known prenyltransferase sequences against the draft sequence of the Streptomyces sp. SN-593 genome revealed the iptA gene. The IptA protein showed 27% amino acid identity to cyanobacterial LtxC, which catalyzes the transfer of a geranyl group to (-)-indolactam V. A BLAST search against IptA revealed much-more-similar homologs at the amino acid level than LtxC, namely, SAML0654 (60%) from Streptomyces ambofaciens ATCC 23877 and SCO7467 (58%) from S. coelicolor A3(2). Phylogenetic analysis showed that IptA was distinct from bacterial aromatic prenyltransferases and fungal indole prenyltransferases. Detailed kinetic analyses of IptA showed the highest catalytic efficiency (6.13 min(-1) microM(-1)) for L-Trp in the presence of dimethylallyl pyrophosphate (DMAPP), suggesting that the enzyme is a 6-dimethylallyl-L-Trp synthase (6-DMATS). Substrate specificity analyses of IptA revealed promiscuity for indole derivatives, and its reaction products were identified as novel 6-DMAI compounds. Moreover, DeltaiptA mutants abolished the production of 6-DMAI-3-carbaldehyde as well as 6-dimethylallyl-L-Trp, suggesting that the iptA gene is involved in the production of 6-DMAI-3-carbaldehyde.

MeSH Terms
Amino Acid Sequence Bacterial Proteins/chemistry,classification,genetics,metabolism Dimethylallyltranstransferase/chemistry,classification,genetics,metabolism Hemiterpenes/metabolism Indoles/metabolism Kinetics Magnetic Resonance Spectroscopy Mass Spectrometry Molecular Sequence Data Molecular Structure Organophosphorus Compounds/metabolism Phylogeny Sequence Homology, Amino Acid Streptomyces/enzymology Substrate Specificity
Chemicals
Bacterial Proteins Hemiterpenes Indoles Organophosphorus Compounds 3,3-dimethylallyl pyrophosphate Dimethylallyltranstransferase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Takahashi Shunji
Chemical Biology Department, Advanced Science Institute, RIKEN, Hirosawa 2-1, Wako, Saitama 351-0198, Japan.
Takagi Hiroshi
Toyoda Atsushi
Uramoto Masakazu
Nogawa Toshihiko
Ueki Masashi
Sakaki Yoshiyuki
Osada Hiroyuki
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Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
1098-5530
Published
2010-06-00
Epub
2010-00-26
Pages
2839-51
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC2876496
Subset
IM
Databases
GENBANK
AB512764
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