Abstract

Folate derivatives are important cofactors for enzymes in several metabolic processes. Folate-related inhibition and resistance mechanisms in bacteria are potential targets for antimicrobial therapies and therefore a significant focus of current research. Here, we report that the activity of Escherichia coli poly-γ-glutamyl tetrahydrofolate/dihydrofolate synthase (FolC) is regulated by glutamate/glutamine-sensing uridylyltransferase (GlnD), THF-dependent tRNA modification enzyme (MnmE), and UDP-glucose dehydrogenase (Ugd) as shown by direct in vitro protein-protein interactions. Using kinetics analyses, we observed that GlnD, Ugd, and MnmE activate FolC many-fold by decreasing the K half of FolC for its substrate l-glutamate. Moreover, FolC inhibited the GTPase activity of MnmE at low GTP concentrations. The growth phenotypes associated with these proteins are discussed. These results, obtained using direct in vitro enzyme assays, reveal unanticipated networks of allosteric regulatory interactions in the folate pathway in E. coli and indicate regulation of polyglutamylated tetrahydrofolate biosynthesis by the availability of nitrogen sources, signaled by the glutamine-sensing GlnD protein.

Highlights

  • Folate derivatives are important cofactors for enzymes in several metabolic processes

  • We report that the activity of Escherichia coli poly-␥-glutamyl tetrahydrofolate/dihydrofolate synthase (FolC) is regulated by glutamate/glutamine-sensing uridylyltransferase (GlnD), THF-dependent tRNA modification enzyme (MnmE), and UDP-glucose dehydrogenase (Ugd) as shown by direct in vitro protein–protein interactions

  • We show that the GTPase activity of the tRNA modification enzyme, MnmE, is inhibited by FolC, revealing a novel mode of functional protein–protein interactions in E. coli

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Summary

ARTICLE cro

The uridylyltransferase GlnD and tRNA modification GTPase MnmE allosterically control Escherichia coli folylpoly-␥glutamate synthase FolC. Rodionova‡1, Norman Goodacre§, Jimmy Do‡, Ali Hosseinnia¶, X Mohan Babu¶, X Peter Uetz§, and Milton H. Jr.‡2 From the ‡Department of Molecular Biology, Division of Biological Sciences, University of California at San Diego, La Jolla, California 92093-0116, §Center for the Study of Biological Complexity, Virginia Commonwealth University, Richmond, Virginia 23284, and ¶Department of Biochemistry, University of Regina, Regina, Saskatchewan S4S 0A2, Canada

Edited by Chris Whitfield
Results
Discussion
Protein purification
FolC enzymatic activity measurements using an improved FolC assay
MnmE activity measurements
FolC docking
Genetic crosses
Full Text
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