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PMID: 15611111 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Gln-tRNAGln formation from Glu-tRNAGln requires cooperation of an asparaginase and a Glu-tRNAGln kinase.

The Journal of biological chemistry ·Vol. 280 ·No. 9 ·2005-03-04 ·Pages 8150-5

Feng L, Sheppard K, Tumbula-Hansen D, Söll D

Abstract

Gln-tRNA(Gln) is synthesized from Glu-tRNA(Gln) in most microorganisms by a tRNA-dependent amidotransferase in a reaction requiring ATP and an amide donor such as glutamine. GatDE is a heterodimeric amidotransferase that is ubiquitous in Archaea. GatD resembles bacterial asparaginases and is expected to function in amide donor hydrolysis. We show here that Methanothermobacter thermautotrophicus GatD acts as a glutaminase but only in the presence of both Glu-tRNA(Gln) and the other subunit, GatE. The fact that only Glu-tRNA(Gln) but not tRNA(Gln) could activate the glutaminase activity of GatD suggests that glutamine hydrolysis is coupled tightly to transamidation. M. thermautotrophicus GatDE enzymes that were mutated in GatD at each of the four critical asparaginase-active site residues lost the ability to hydrolyze glutamine and were unable to convert Glu-tRNA(Gln) to Gln-tRNA(Gln) when glutamine was the amide donor. However, ammonium chloride rescued the activities of these mutants, suggesting that the integrity of the ATPase and the transferase activities in the mutant GatDE enzymes was maintained. In addition, pyroglutamyl-tRNA(Gln) accumulated during the reaction catalyzed by the glutaminase-deficient mutants or by GatE alone. The pyroglutamyl-tRNA is most likely a cyclized by-product derived from gamma-phosphoryl-Glu-tRNA(Gln), the proposed high energy intermediate in Glu-tRNA(Gln) transamidation. That GatE alone could form the intermediate indicates that GatE is a Glu-tRNA(Gln) kinase. The activation of Glu-tRNA(Gln) via gamma-phosphorylation bears a similarity to the mechanism used by glutamine synthetase, which may point to an ancient link between glutamine synthesized for metabolism and translation.

MeSH Terms
Adenosine Triphosphate/chemistry Ammonium Chloride/pharmacology Archaea/metabolism Asparaginase/chemistry Aspartic Acid/chemistry Binding Sites Chromatography, Thin Layer Cloning, Molecular Enzyme Activation Glutamate-Ammonia Ligase/chemistry Glutamic Acid/chemistry Glutaminase/chemistry Glutamine/chemistry Hydrolysis Lysine/chemistry Methanobacteriaceae/enzymology Models, Chemical Mutation Phosphorylation Protein Biosynthesis Protein Kinases/chemistry,metabolism Pyrrolidonecarboxylic Acid/chemistry RNA, Transfer/chemistry RNA, Transfer, Gln/chemistry Threonine/chemistry
Chemicals
RNA, Transfer, Gln Ammonium Chloride Glutamine Threonine Aspartic Acid Glutamic Acid Adenosine Triphosphate RNA, Transfer Protein Kinases Asparaginase Glutaminase Glutamate-Ammonia Ligase Lysine Pyrrolidonecarboxylic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Feng Liang
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.
Sheppard Kelly
Tumbula-Hansen Debra
Söll Dieter
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2005-03-04
Epub
2004-00-16
Pages
8150-5
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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