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An Alternative Homodimerization Interface of MnmG Reveals a Conformational Dynamics that Is Essential for Its tRNA Modification Function.
Ruiz-Partida, Rafael; Prado, Silvia; Villarroya, Magda; Velázquez-Campoy, Adrián; Bravo, Jerónimo; Armengod, M-Eugenia.
Afiliación
  • Ruiz-Partida R; Centro de Investigación Príncipe Felipe, Valencia 46012, Spain. Electronic address: rnamod@cipf.es.
  • Prado S; Centro de Investigación Príncipe Felipe, Valencia 46012, Spain.
  • Villarroya M; Centro de Investigación Príncipe Felipe, Valencia 46012, Spain.
  • Velázquez-Campoy A; Institute of Biocomputation and Physics of Complex Systems (BIFI), Joint Units IQFR-CSIC-BIFI, and GBsC-CSIC-BIFI, and Department of Biochemistry and Molecular and Cell Biology, Universidad de Zaragoza, Zaragoza 50018, Spain; Aragon Institute for Health Research (IIS Aragon), Zaragoza, 50009, Spain;
  • Bravo J; Instituto de Biomedicina de Valencia-CSIC, Valencia 46010, Spain.
  • Armengod ME; Centro de Investigación Príncipe Felipe, Valencia 46012, Spain; Biomedical Research Networking Centre for Rare Diseases (CIBERER, Node 721), Valencia, Spain. Electronic address: marmengod@cipf.es.
J Mol Biol ; 430(17): 2822-2842, 2018 08 17.
Article en En | MEDLINE | ID: mdl-29870725
ABSTRACT
The Escherichia coli homodimeric proteins MnmE and MnmG form a functional complex, MnmEG, that modifies tRNAs using GTP, methylene-tetrahydrofolate, FAD, and glycine or ammonium. MnmE is a tetrahydrofolate- and GTP-binding protein, whereas MnmG is a FAD-binding protein with each protomer composed of the FAD-binding domain, two insertion domains, and the helical C-terminal domain. The detailed mechanism of the MnmEG-mediated reaction remains unclear partially due to incomplete structural information on the free- and substrate-bound forms of the complex. In this study, we show that MnmG can adopt in solution a dimer arrangement (form I) different from that currently considered as the only biologically active (form II). Normal mode analysis indicates that form I can oscillate in a range of open and closed conformations. Using isothermal titration calorimetry and native red electrophoresis, we show that a form-I open conformation, which can be stabilized in vitro by the formation of an interprotomer disulfide bond between the catalytic C277 residues, appears to be involved in the assembly of the MnmEG catalytic center. We also show that residues R196, D253, R436, R554 and E585 are important for the stabilization of form I and the tRNA modification function. We propose that the form I dynamics regulates the alternative access of MnmE and tRNA to the MnmG FAD active site. Finally, we show that the C-terminal region of MnmG contains a sterile alpha motif domain responsible for tRNA-protein and protein-protein interactions.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: ARN de Transferencia / Transferasas del Grupo 1-Carbono / Proteínas de Escherichia coli / Escherichia coli / Multimerización de Proteína Idioma: En Revista: J Mol Biol Año: 2018 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: ARN de Transferencia / Transferasas del Grupo 1-Carbono / Proteínas de Escherichia coli / Escherichia coli / Multimerización de Proteína Idioma: En Revista: J Mol Biol Año: 2018 Tipo del documento: Article
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