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Characterization and site-directed mutagenesis of a novel class II 5-enopyruvylshikimate-3-phosphate (EPSP) synthase from the deep-sea bacterium Alcanivorax sp. L27
Institution:1. College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China;2. The Open University of Japan, Ibaraki Study Center, Bunkyo 2, Mito 310-0056, Japan
Abstract:The 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) is a key enzyme in the aromatic amino acid biosynthetic pathway in microorganisms and plants, which catalyzes the formation of 5-enolpyruvylshikimate-3-phosphate (EPSP) from shikimate-3-phosphate (S3P) and phosphoenolpyruvate (PEP). In this study, a novel AroA-encoding gene was identified from the deep sea bacterium Alcanivorax sp. L27 through screening the genomic library and termed as AroAA.sp. A phylogenetic analysis revealed that AroAA.sp (1317 bp and 438 amino acids) is a class II AroA. This enzyme exhibited considerable activity between pH 5.5 and pH 8.0 and notable activity at low temperatures. The KM for PEP and IC50 glyphosate] values (the concentration of glyphosate that inhibited enzyme activity by 50%) of AroAA.sp were 78 μM and 1.5 mM, respectively. Furthermore, site-directed mutagenesis revealed that the G100A mutant had a 30-fold increase in the IC50 glyphosate] value; while the L105P mutant showed only 20% catalytic activity compared to wild-type AroAA.sp. The specific activity of the wild-type AroAA.sp, the G100A mutant and the L105P mutant were 7.78 U/mg, 7.26 U/mg and 1.76 U/mg, respectively. This is the first report showing that the G100A mutant of AroA displays considerably improved glyphosate resistance and demonstrates that Leu105 is essential for the enzyme's activity.
Keywords:aroA  Cold adaption  Site-directed mutagenesis  EPSPS"}  {"#name":"keyword"  "$":{"id":"kw0030"}  "$$":[{"#name":"text"  "_":"5-enolpyruvylshikimate-3-phosphate synthase  S3P"}  {"#name":"keyword"  "$":{"id":"kw0040"}  "$$":[{"#name":"text"  "_":"shikimate-3-phosphate  PEP"}  {"#name":"keyword"  "$":{"id":"kw0050"}  "$$":[{"#name":"text"  "_":"phosphoenolpyruvate  X-Gal"}  {"#name":"keyword"  "$":{"id":"kw0060"}  "$$":[{"#name":"text"  "$$":[{"#name":"__text__"  "_":"5-bromo-4-chloro-3-indolyl-"}  {"#name":"small-caps"  "_":"d"}  {"#name":"__text__"  "_":"-galactopyranoside  IPTG"}  {"#name":"keyword"  "$":{"id":"kw0070"}  "$$":[{"#name":"text"  "$$":[{"#name":"__text__"  "_":"isopropyl-1-thio-β-"}  {"#name":"small-caps"  "_":"d"}  {"#name":"__text__"  "_":"-galactopyranoside  LB"}  {"#name":"keyword"  "$":{"id":"kw0080"}  "$$":[{"#name":"text"  "_":"Luria–Bertani  DTT"}  {"#name":"keyword"  "$":{"id":"kw0090"}  "$$":[{"#name":"text"  "$$":[{"#name":"small-caps"  "_":"dl"}  {"#name":"__text__"  "_":"-dithiothreitol  GST"}  {"#name":"keyword"  "$":{"id":"kw0100"}  "$$":[{"#name":"text"  "_":"glutathione-S-transferase  kDa"}  {"#name":"keyword"  "$":{"id":"kw0110"}  "$$":[{"#name":"text"  "_":"kilodalton  ORF"}  {"#name":"keyword"  "$":{"id":"kw0120"}  "$$":[{"#name":"text"  "_":"open reading frame  Michaelis constant  half maximal (50%) inhibitory concentration  CP4"}  {"#name":"keyword"  "$":{"id":"kw0150"}  "$$":[{"#name":"text"  "_":"agrobacterium tumefaciens strain CP4  HEPES"}  {"#name":"keyword"  "$":{"id":"kw0170"}  "$$":[{"#name":"text"  "_":"4-(2-hydroxyethyl)-1-piperazineethanesulfonicaci  SDS-PAGE"}  {"#name":"keyword"  "$":{"id":"kw0180"}  "$$":[{"#name":"text"  "_":"sodium dodecyl sulfate polyacrylamide gel electrophoresis
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