Editing and methylation at a single site by functionally interdependent activities

. 2017 Feb 22 ; 542 (7642) : 494-497.

Jazyk angličtina Země Velká Británie, Anglie Médium print

Typ dokumentu časopisecké články, Research Support, N.I.H., Extramural, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/pmid28230119

Grantová podpora
R01 GM058843 NIGMS NIH HHS - United States
R01 GM084065 NIGMS NIH HHS - United States
R56 GM058843 NIGMS NIH HHS - United States

Nucleic acids undergo naturally occurring chemical modifications. Over 100 different modifications have been described and every position in the purine and pyrimidine bases can be modified; often the sugar is also modified. Despite recent progress, the mechanism for the biosynthesis of most modifications is not fully understood, owing, in part, to the difficulty associated with reconstituting enzyme activity in vitro. Whereas some modifications can be efficiently formed with purified components, others may require more intricate pathways. A model for modification interdependence, in which one modification is a prerequisite for another, potentially explains a major hindrance in reconstituting enzymatic activity in vitro. This model was prompted by the earlier discovery of tRNA cytosine-to-uridine editing in eukaryotes, a reaction that has not been recapitulated in vitro and the mechanism of which remains unknown. Here we show that cytosine 32 in the anticodon loop of Trypanosoma brucei tRNAThr is methylated to 3-methylcytosine (m3C) as a pre-requisite for C-to-U deamination. Formation of m3C in vitro requires the presence of both the T. brucei m3C methyltransferase TRM140 and the deaminase ADAT2/3. Once formed, m3C is deaminated to 3-methyluridine (m3U) by the same set of enzymes. ADAT2/3 is a highly mutagenic enzyme, but we also show that when co-expressed with the methyltransferase its mutagenicity is kept in check. This helps to explain how T. brucei escapes 'wholesale deamination' of its genome while harbouring both enzymes in the nucleus. This observation has implications for the control of another mutagenic deaminase, human AID, and provides a rationale for its regulation.

Komentář v

PubMed

Zobrazit více v PubMed

Machnicka MA, et al. MODOMICS: a database of RNA modification pathways--2013 update. Nucleic Acids Res. 2013;41:D262–D267. PubMed PMC

Helm M, Alfonzo JD. Posttranscriptional RNA Modifications: playing metabolic games in a cell’s chemical Legoland. Chem Biol. 2014;21:174–185. PubMed PMC

Crain PF, et al. Modification of the universally unmodified uridine-33 in a mitochondria-imported edited tRNA and the role of the anticodon arm structure on editing efficiency. RNA. 2002;8:752–761. PubMed PMC

Rubio MA, et al. An adenosine-to-inosine tRNA-editing enzyme that can perform C-to-U deamination of DNA. Proc Natl Acad Sci USA. 2007;104:7821–7826. PubMed PMC

Carter CW. In: Modification and Editing of RNA. Grosjean, Benne, editors. ASM Press; 1998. pp. 363–375.

Randau L, et al. A cytidine deaminase edits C to U in transfer RNAs in Archaea. Science. 2009;324:657–659. PubMed PMC

Gaston KW, et al. C to U editing at position 32 of the anticodon loop precedes tRNA 5′ leader removal in trypanosomatids. Nucleic Acids Res. 2007;35:6740–6749. PubMed PMC

Jühling F, et al. tRNAdb 2009: compilation of tRNA sequences and tRNA genes. Nucleic Acids Res. 2009;37:D159–D162. PubMed PMC

Spears JL, Gaston KW, Alfonzo JD. Analysis of tRNA editing in native and synthetic substrates. Methods Mol Biol. 2011;718:209–226. PubMed

Randerath K, Chia LS, Gupta RC, Randerath E. Structural analysis of nonradioactive RNA by postlabeling: the primary structure of baker’s yeast tRNA Leu/CUA. Biochem Biophys Res Commun. 1975;63:157–163. PubMed

Fleming IM, et al. A tRNA methyltransferase paralog is important for ribosome stability and cell division in Trypanosoma brucei. Sci Rep. 2016;6:21438. PubMed PMC

Ross R, Cao X, Yu N, Limbach PA. Sequence mapping of transfer RNA chemical modifications by liquid chromatography tandem mass spectrometry. Methods. 2016;107:73–78. PubMed PMC

Kapushoc ST, Alfonzo JD, Simpson L. Differential localization of nuclear-encoded tRNAs between the cytosol and mitochondrion in Leishmania tarentolae. RNA. 2002;8:57–68. PubMed PMC

Petersen-Mahrt SK, Harris RS, Neuberger MS. AID mutates E. coli suggesting a DNA deamination mechanism for antibody diversification. Nature. 2002;418:99–103. PubMed

Petersen-Mahrt S. DNA deamination in immunity. Immunol Rev. 2005;203:80–97. PubMed

Lonergan KM, Gray MW. Editing of transfer RNAs in Acanthamoeba castellanii mitochondria. Science. 1993;259:812–816. PubMed

Börner GV, Mörl M, Janke A, Pääbo S. RNA editing changes the identity of a mitochondrial tRNA in marsupials. EMBO J. 1996;15:5949–5957. PubMed PMC

Mörl M, Dörner M, Pääbo S. C to U editing and modifications during the maturation of the mitochondrial tRNAAsp in marsupials. Nucleic Acids Res. 1995;23:3380–3384. PubMed PMC

Alfonzo JD, Blanc V, Estévez AM, Rubio MA, Simpson L. C to U editing of the anticodon of imported mitochondrial tRNATrp allows decoding of the UGA stop codon in Leishmania tarentolae. EMBO J. 1999;18:7056–7062. PubMed PMC

Zhou W, Karcher D, Bock R. Identification of enzymes for adenosine-to-inosine editing and discovery of cytidine-to-uridine editing in nucleus-encoded transfer RNAs of Arabidopsis. Plant Physiol. 2014;166:1985–1997. PubMed PMC

Rubio MA, Ragone FL, Gaston KW, Ibba M, Alfonzo JD. C to U editing stimulates A to I editing in the anticodon loop of a cytoplasmic threonyl tRNA in Trypanosoma brucei. J Biol Chem. 2006;281:115–120. PubMed

Teng G, Papavasiliou FN. Immunoglobulin somatic hypermutation. Annu Rev Genet. 2007;41:107–120. PubMed

Sample PJ, et al. A common tRNA modification at an unusual location: the discovery of wyosine biosynthesis in mitochondria. Nucleic Acids Res. 2015;43:4262–4273. PubMed PMC

Kapushoc ST, Alfonzo JD, Rubio MA, Simpson L. End processing precedes mitochondrial importation and editing of tRNAs in Leishmania tarentolae. J Biol Chem. 2000;275:37907–37914. PubMed

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...