Literature DB >> 23986443

The temperature sensitivity of a mutation in the essential tRNA modification enzyme tRNA methyltransferase D (TrmD).

Isao Masuda1, Reiko Sakaguchi, Cuiping Liu, Howard Gamper, Ya-Ming Hou.   

Abstract

Conditional temperature-sensitive (ts) mutations are important reagents to study essential genes. Although it is commonly assumed that the ts phenotype of a specific mutation arises from thermal denaturation of the mutant enzyme, the possibility also exists that the mutation decreases the enzyme activity to a certain level at the permissive temperature and aggravates the negative effect further upon temperature upshifts. Resolving these possibilities is important for exploiting the ts mutation for studying the essential gene. The trmD gene is essential for growth in bacteria, encoding the enzyme for converting G37 to m(1)G37 on the 3' side of the tRNA anticodon. This conversion involves methyl transfer from S-adenosyl methionine and is critical to minimize tRNA frameshift errors on the ribosome. Using the ts-S88L mutation of Escherichia coli trmD as an example, we show that although the mutation confers thermal lability to the enzyme, the effect is relatively minor. In contrast, the mutation decreases the catalytic efficiency of the enzyme to 1% at the permissive temperature, and at the nonpermissive temperature, it renders further deterioration of activity to 0.1%. These changes are accompanied by losses of both the quantity and quality of tRNA methylation, leading to the potential of cellular pleiotropic effects. This work illustrates the principle that the ts phenotype of an essential gene mutation can be closely linked to the catalytic defect of the gene product and that such a mutation can provide a useful tool to study the mechanism of catalytic inactivation.

Entities:  

Keywords:  Bacterial Metabolism; Methyl Transfer; Protein Folding; RNA Methyltransferase; RNA Modification; Transfer RNA (tRNA); Trefoil Knot Fold; TrmD; m1G37-tRNA Modification

Mesh:

Substances:

Year:  2013        PMID: 23986443      PMCID: PMC3789996          DOI: 10.1074/jbc.M113.485797

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  38 in total

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2.  Essential Bacillus subtilis genes.

Authors:  K Kobayashi; S D Ehrlich; A Albertini; G Amati; K K Andersen; M Arnaud; K Asai; S Ashikaga; S Aymerich; P Bessieres; F Boland; S C Brignell; S Bron; K Bunai; J Chapuis; L C Christiansen; A Danchin; M Débarbouille; E Dervyn; E Deuerling; K Devine; S K Devine; O Dreesen; J Errington; S Fillinger; S J Foster; Y Fujita; A Galizzi; R Gardan; C Eschevins; T Fukushima; K Haga; C R Harwood; M Hecker; D Hosoya; M F Hullo; H Kakeshita; D Karamata; Y Kasahara; F Kawamura; K Koga; P Koski; R Kuwana; D Imamura; M Ishimaru; S Ishikawa; I Ishio; D Le Coq; A Masson; C Mauël; R Meima; R P Mellado; A Moir; S Moriya; E Nagakawa; H Nanamiya; S Nakai; P Nygaard; M Ogura; T Ohanan; M O'Reilly; M O'Rourke; Z Pragai; H M Pooley; G Rapoport; J P Rawlins; L A Rivas; C Rivolta; A Sadaie; Y Sadaie; M Sarvas; T Sato; H H Saxild; E Scanlan; W Schumann; J F M L Seegers; J Sekiguchi; A Sekowska; S J Séror; M Simon; P Stragier; R Studer; H Takamatsu; T Tanaka; M Takeuchi; H B Thomaides; V Vagner; J M van Dijl; K Watabe; A Wipat; H Yamamoto; M Yamamoto; Y Yamamoto; K Yamane; K Yata; K Yoshida; H Yoshikawa; U Zuber; N Ogasawara
Journal:  Proc Natl Acad Sci U S A       Date:  2003-04-07       Impact factor: 11.205

Review 3.  Many paths to methyltransfer: a chronicle of convergence.

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Journal:  Trends Biochem Sci       Date:  2003-06       Impact factor: 13.807

4.  Structure and folding of a designed knotted protein.

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Authors:  Glenn R Björk; Kristina Nilsson
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9.  Crystal structure of tRNA(m1G37)methyltransferase: insights into tRNA recognition.

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10.  Insights into catalysis by a knotted TrmD tRNA methyltransferase.

Authors:  Patricia A Elkins; Joseph M Watts; Magdalena Zalacain; Adam van Thiel; Patrik R Vitazka; Maria Redlak; Cecile Andraos-Selim; Fraydoon Rastinejad; Walter M Holmes
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  13 in total

1.  Mg2+ regulates transcription of mgtA in Salmonella Typhimurium via translation of proline codons during synthesis of the MgtL peptide.

Authors:  Aaron R Gall; Kirill A Datsenko; Nara Figueroa-Bossi; Lionello Bossi; Isao Masuda; Ya-Ming Hou; Laszlo N Csonka
Journal:  Proc Natl Acad Sci U S A       Date:  2016-11-14       Impact factor: 11.205

Review 2.  TrmD: A Methyl Transferase for tRNA Methylation With m1G37.

Authors:  Ya-Ming Hou; Ryuma Matsubara; Ryuichi Takase; Isao Masuda; Joanna I Sulkowska
Journal:  Enzymes       Date:  2017-04-12

3.  A surprising range of modified-methionyl S-adenosylmethionine analogues support bacterial growth.

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4.  Kinetic Analysis of tRNA Methyltransferases.

Authors:  Ya-Ming Hou; Isao Masuda
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5.  A divalent metal ion-dependent N(1)-methyl transfer to G37-tRNA.

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6.  Maintenance of protein synthesis reading frame by EF-P and m(1)G37-tRNA.

Authors:  Howard B Gamper; Isao Masuda; Milana Frenkel-Morgenstern; Ya-Ming Hou
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Review 7.  tRNAs as antibiotic targets.

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Journal:  Int J Mol Sci       Date:  2014-12-25       Impact factor: 5.923

Review 8.  Transfer RNA methyltransferases with a SpoU-TrmD  (SPOUT) fold and their modified nucleosides in  tRNA.

Authors:  Hiroyuki Hori
Journal:  Biomolecules       Date:  2017-02-28

9.  Selective terminal methylation of a tRNA wobble base.

Authors:  Isao Masuda; Ryuichi Takase; Ryuma Matsubara; Mellie June Paulines; Howard Gamper; Patrick A Limbach; Ya-Ming Hou
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10.  DPY-17 and MUA-3 Interact for Connective Tissue-Like Tissue Integrity in Caenorhabditis elegans: A Model for Marfan Syndrome.

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