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Asymmetric behavior of archaeal prolyl-tRNA synthetase

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Auteur
Ambrogelly, A.; Kamtekar, S.; Stathopoulos, C.; Kennedy, D.; Söll, D.
Date
2005
DOI
10.1016/j.febslet.2005.09.025
Sujet
Half-of-the-site reactivity
Prolyl-tRNA synthetase
ProRS
Stoichiometry
tRNA
amino acid transfer RNA ligase
proline derivative
proline transfer RNA synthetase
prolyladenylate
unclassified drug
aminoacylation
article
carboxy terminal sequence
catalysis
enzyme active site
enzyme activity
enzyme kinetics
gene deletion
Methanococcus jannaschii
priority journal
protein domain
protein function
RNA binding
Amino Acyl-tRNA Synthetases
Archaeal Proteins
Binding Sites
Dimerization
Methanococcales
Nucleotides
Protein Structure, Tertiary
RNA, Transfer, Amino Acyl
Sequence Deletion
Transfer RNA Aminoacylation
Archaea
Bacteria (microorganisms)
Methanocaldococcus jannaschii
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Résumé
Archaeal prolyl-tRNA synthetases differ from their bacterial counterparts: they contain an additional domain (about 70 amino acids) appended to the carboxy-terminus and lack an editing domain inserted into the class II catalytic core. Biochemical and structural approaches have generated a wealth of information on amino acid and tRNA specificities for both types of ProRSs, but have left a number of aspects unexplored. We report here that the carboxy-terminal domain of Methanocaldococcus jannaschii ProRS is not involved in tRNA binding since its deletion only mildly affects the kinetic parameters for the enzyme. We also demonstrate that M. jannaschii ProRS is a homodimeric enzyme that is functionally asymmetric; only one of the two active sites at a time is able to form prolyl-adenylate, and only one tRNA molecule binds per dimer. Together with previous reports our results show that asymmetry might be a general feature of the aminoacylation reaction catalyzed by dimeric aminoacyl-tRNA synthetases from both classes. © 2005 Federation of European Biochemical Societies. Published by Elsevier B.V. All rights reserved.
URI
http://hdl.handle.net/11615/25484
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