Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2012 Jun;235(6):1253-69.
doi: 10.1007/s00425-011-1572-z. Epub 2011 Dec 28.

Catalytic and structural diversity of the fluazifop-inducible glutathione transferases from Phaseolus vulgaris

Affiliations

Catalytic and structural diversity of the fluazifop-inducible glutathione transferases from Phaseolus vulgaris

Evangelia Chronopoulou et al. Planta. 2012 Jun.

Abstract

Plant glutathione transferases (GSTs) comprise a large family of inducible enzymes that play important roles in stress tolerance and herbicide detoxification. Treatment of Phaseolus vulgaris leaves with the aryloxyphenoxypropionic herbicide fluazifop-p-butyl resulted in induction of GST activities. Three inducible GST isoenzymes were identified and separated by affinity chromatography. Their full-length cDNAs with complete open reading frame were isolated using RACE-RT and information from N-terminal amino acid sequences. Analysis of the cDNA clones showed that the deduced amino acid sequences share high homology with GSTs that belong to phi and tau classes. The three isoenzymes were expressed in E. coli and their substrate specificity was determined towards 20 different substrates. The results showed that the fluazifop-inducible glutathione transferases from P. vulgaris (PvGSTs) catalyze a broad range of reactions and exhibit quite varied substrate specificity. Molecular modeling and structural analysis was used to identify key structural characteristics and to provide insights into the substrate specificity and the catalytic mechanism of these enzymes. These results provide new insights into catalytic and structural diversity of GSTs and the detoxifying mechanism used by P. vulgaris.

PubMed Disclaimer

References

    1. Plant J. 1999 May;18(3):285-92 - PubMed
    1. Annu Rev Pharmacol Toxicol. 2005;45:51-88 - PubMed
    1. Proc Natl Acad Sci U S A. 1976 Feb;73(2):361-5 - PubMed
    1. Biochim Biophys Acta. 1986 Mar 21;876(1):154-66 - PubMed
    1. CRC Crit Rev Biochem. 1988;23(3):283-337 - PubMed

Publication types

MeSH terms

LinkOut - more resources