Title of article
Site-Directed Mutagenesis of a Highly Conserved Aspartate in the Putative 10-Formyl-Tetrahydrofolate Binding Site of Yeast C1-Tetrahydrofolate Synthase
Author/Authors
Kirksey، نويسنده , , Timothy J. and Appling، نويسنده , , Dean R.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی 9 سال 1996
Pages
9
From page
251
To page
259
Abstract
C1-tetrahydrofolate (THF) synthase is a eukaryotic trifunctional protein possessing the activities 10-formyl-THF synthetase, 5,10-methenyl-THF cyclohydrolase, and 5,10-methylene-THF dehydrogenase. Although the 10-formyl-THF synthetase reaction (a reversible ATP-dependent formylation of THF) has been studied extensively, little is known about specific residues involved in the catalytic mechanism. In this study, we have examined the role of a highly conserved aspartate residue, Asp449of yeast cytoplasmic C1-THF synthase. Asp449is part of a putative folate binding site found in many proteins that bind 10-formyl-THF. The corresponding aspartate has been identified as a critical catalytic residue inEscherichia coliand human GAR transformylase, which catalyzes a 10-formyl-THF-dependent formyl transfer. In order to determine if Asp449has a similar catalytic role in the 10-formyl-THF synthetase reaction, three mutant proteins were produced by site-directed mutagenesis in which Asp449of yeast cytoplasmic C1-THF synthase was changed to Asn, Glu, or Ala. The mutant proteins were expressed in yeast, purified, and characterized with respect to kinetic properties and enzyme stability. All three of the mutant enzymes retained substantial 10-formyl-THF synthetase activity, indicating that Asp449is not a critical catalytic residue. However, our data suggest that it does play a role in folate binding, probably by contributing to the proper conformation of the active site. Thus, these results suggest that the 10-formyl-THF binding site differs significantly between the GAR transformylase and 10-formyl-THF synthetase families, and that the conserved aspartate plays different roles in the two enzymes.
Journal title
Archives of Biochemistry and Biophysics
Serial Year
1996
Journal title
Archives of Biochemistry and Biophysics
Record number
1607744
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