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Journal Abstract Search


240 related items for PubMed ID: 24081582

  • 1. Crystal structure of tRNA m1G9 methyltransferase Trm10: insight into the catalytic mechanism and recognition of tRNA substrate.
    Shao Z, Yan W, Peng J, Zuo X, Zou Y, Li F, Gong D, Ma R, Wu J, Shi Y, Zhang Z, Teng M, Li X, Gong Q.
    Nucleic Acids Res; 2014 Jan; 42(1):509-25. PubMed ID: 24081582
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  • 2. Mechanistic features of the atypical tRNA m1G9 SPOUT methyltransferase, Trm10.
    Krishnamohan A, Jackman JE.
    Nucleic Acids Res; 2017 Sep 06; 45(15):9019-9029. PubMed ID: 28911116
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  • 3. A Family Divided: Distinct Structural and Mechanistic Features of the SpoU-TrmD (SPOUT) Methyltransferase Superfamily.
    Krishnamohan A, Jackman JE.
    Biochemistry; 2019 Feb 05; 58(5):336-345. PubMed ID: 30457841
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  • 4. Structural basis for methyl-donor-dependent and sequence-specific binding to tRNA substrates by knotted methyltransferase TrmD.
    Ito T, Masuda I, Yoshida K, Goto-Ito S, Sekine S, Suh SW, Hou YM, Yokoyama S.
    Proc Natl Acad Sci U S A; 2015 Aug 04; 112(31):E4197-205. PubMed ID: 26183229
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  • 6. Structural and biochemical analysis of the dual-specificity Trm10 enzyme from Thermococcus kodakaraensis prompts reconsideration of its catalytic mechanism.
    Singh RK, Feller A, Roovers M, Van Elder D, Wauters L, Droogmans L, Versées W.
    RNA; 2018 Aug 04; 24(8):1080-1092. PubMed ID: 29848639
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  • 10. tRNA m1G9 modification depends on substrate-specific RNA conformational changes induced by the methyltransferase Trm10.
    Strassler SE, Bowles IE, Krishnamohan A, Kim H, Edgington CB, Kuiper EG, Hancock CJ, Comstock LR, Jackman JE, Conn GL.
    J Biol Chem; 2023 Dec 04; 299(12):105443. PubMed ID: 37949221
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  • 13. Insights into Catalytic and tRNA Recognition Mechanism of the Dual-Specific tRNA Methyltransferase from Thermococcus kodakarensis.
    Krishnamohan A, Dodbele S, Jackman JE.
    Genes (Basel); 2019 Jan 30; 10(2):. PubMed ID: 30704107
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  • 15. Structure of tRNA methyltransferase complex of Trm7 and Trm734 reveals a novel binding interface for tRNA recognition.
    Hirata A, Okada K, Yoshii K, Shiraishi H, Saijo S, Yonezawa K, Shimizu N, Hori H.
    Nucleic Acids Res; 2019 Nov 18; 47(20):10942-10955. PubMed ID: 31586407
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  • 16. Crystal structure of the two-subunit tRNA m(1)A58 methyltransferase TRM6-TRM61 from Saccharomyces cerevisiae.
    Wang M, Zhu Y, Wang C, Fan X, Jiang X, Ebrahimi M, Qiao Z, Niu L, Teng M, Li X.
    Sci Rep; 2016 Sep 01; 6():32562. PubMed ID: 27582183
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  • 17. Identification of the yeast gene encoding the tRNA m1G methyltransferase responsible for modification at position 9.
    Jackman JE, Montange RK, Malik HS, Phizicky EM.
    RNA; 2003 May 01; 9(5):574-85. PubMed ID: 12702816
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  • 18. Crystal structures of the tRNA:m2G6 methyltransferase Trm14/TrmN from two domains of life.
    Fislage M, Roovers M, Tuszynska I, Bujnicki JM, Droogmans L, Versées W.
    Nucleic Acids Res; 2012 Jun 01; 40(11):5149-61. PubMed ID: 22362751
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  • 19. Structural model of the M7G46 Methyltransferase TrmB in complex with tRNA.
    Blersch KF, Burchert JP, August SC, Welp L, Neumann P, Köster S, Urlaub H, Ficner R.
    RNA Biol; 2021 Dec 01; 18(12):2466-2479. PubMed ID: 34006170
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  • 20. The tRNA recognition mechanism of the minimalist SPOUT methyltransferase, TrmL.
    Liu RJ, Zhou M, Fang ZP, Wang M, Zhou XL, Wang ED.
    Nucleic Acids Res; 2013 Sep 01; 41(16):7828-42. PubMed ID: 23804755
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