ALKBHs-facilitated RNA modifications and de-modifications

被引:58
作者
Alemu, Endalkachew A. [1 ,2 ]
He, Chuan [3 ,4 ]
Klungland, Arne [1 ,2 ]
机构
[1] Oslo Univ Hosp, Rikshosp, Inst Clin Med, Dept Microbiol,Div Diagnost & Intervent, NO-0027 Oslo, Norway
[2] Univ Oslo, Inst Basic Med Sci, Dept Mol Med, Fac Med, NO-0027 Oslo, Norway
[3] Univ Chicago, Dept Chem, Dept Biochem & Mol Biol, Howard Hughes Med Inst, 929 East 57th St, Chicago, IL 60637 USA
[4] Univ Chicago, Howard Hughes Med Inst, Inst Biophys Dynam, 929 East 57th St, Chicago, IL 60637 USA
基金
美国国家卫生研究院;
关键词
AlkB homologs; DNA repair; RNA metabolisms; Oxidative demethylation; YTH domain proteins; MESSENGER-RNA; OXIDATIVE DEMETHYLATION; NUCLEAR-RNA; HISTONE DEMETHYLATION; MEDIATED FORMATION; ALKYLATION DAMAGE; ESCHERICHIA-COLI; DNA-DAMAGE; N-6-METHYLADENOSINE; TRANSCRIPTOME;
D O I
10.1016/j.dnarep.2016.05.026
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The AlkB gene that protects E.coli against methylation damage to DNA was identified more than 3 decades ago. 20 years later, the AlkB protein was shown to catalyze repair of methylated DNA base lesions by oxidative demethylation. Two human AlkB homologs were characterized with similar DNA repair activities and seven additional human AlkB homologs were identified based on sequence homology. All these dioxygenases, ALKBH1-8 and FTO, contain a conserved oc-ketoglutarate/iron-dependent domain for methyl modifications and de-modifications. Well-designed research over the last 10 years has identified unforeseen substrate heterogeneity for the AlkB homologs, including novel reversible methyl modifications in RNA. The discoveries of RNA demethylation catalyzed by AlkB family enzymes initiated a new realm of gene expression regulation, although the understanding of precise endogenous activities and roles of these RNA demethylases are still undeveloped. It is worth mentioning that the AlkB mechanism and use of alpha-ketoglutarate have also emerged to be essential for many enzymes in epigenetic reprogramming that modify and de-modify methylated bases in DNA and methylated amino acids in histones. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:87 / 91
页数:5
相关论文
共 52 条
[1]   Human and bacterial oxidative demethylases repair alkylation damage in both RNA and DNA [J].
Aas, PA ;
Otterlei, M ;
Falnes, PO ;
Vågbo, CB ;
Skorpen, F ;
Akbari, M ;
Sundheim, O ;
Bjorås, M ;
Slupphaug, G ;
Seeberg, E ;
Krokan, HE .
NATURE, 2003, 421 (6925) :859-863
[2]   HNRNPA2B1 Is a Mediator of m6A-Dependent Nuclear RNA Processing Events [J].
Alarcon, Claudio R. ;
Goodarzi, Hani ;
Lee, Hyeseung ;
Liu, Xuhang ;
Tavazoie, Saeed ;
Tavazoie, Sohail F. .
CELL, 2015, 162 (06) :1299-1308
[3]  
Aravind L., 2001, GENOME BIOL, V2, p7.1
[4]   m6A RNA Modification Controls Cell Fate Transition in Mammalian Embryonic Stem Cells [J].
Batista, Pedro J. ;
Molinie, Benoit ;
Wang, Jinkai ;
Qu, Kun ;
Zhang, Jiajing ;
Li, Lingjie ;
Bouley, Donna M. ;
Lujan, Ernesto ;
Haddad, Bahareh ;
Daneshvar, Kaveh ;
Carter, Ava C. ;
Flynn, Ryan A. ;
Zhou, Chan ;
Lim, Kok-Seong ;
Dedon, Peter ;
Wernig, Marius ;
Mullen, Alan C. ;
Xing, Yi ;
Giallourakis, Cosmas C. ;
Chang, Howard Y. .
CELL STEM CELL, 2014, 15 (06) :707-719
[5]   AlkB mystery solved: oxidative demethylation of N1-methyladenine and N3-methylcytosine adducts by a direct reversal mechanism [J].
Begley, TJ ;
Samson, LD .
TRENDS IN BIOCHEMICAL SCIENCES, 2003, 28 (01) :2-5
[6]   Loss-of-Function Mutation in the Dioxygenase-Encoding FTO Gene Causes Severe Growth Retardation and Multiple Malformations [J].
Boissel, Sarah ;
Reish, Orit ;
Proulx, Karine ;
Kawagoe-Takaki, Hiroko ;
Sedgwick, Barbara ;
Yeo, Giles S. H. ;
Meyre, David ;
Golzio, Christelle ;
Molinari, Florence ;
Kadhom, Noman ;
Etchevers, Heather C. ;
Saudek, Vladimir ;
Farooqi, I. Sadaf ;
Froguel, Philippe ;
Lindahl, Tomas ;
O'Rahilly, Stephen ;
Munnich, Arnold ;
Colleaux, Laurence .
AMERICAN JOURNAL OF HUMAN GENETICS, 2009, 85 (01) :106-111
[7]   Nucleosomes Suppress the Formation of Double-strand DNA Breaks during Attempted Base Excision Repair of Clustered Oxidative Damages [J].
Cannan, Wendy J. ;
Tsang, Betty P. ;
Wallace, Susan S. ;
Pederson, David S. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2014, 289 (29) :19881-19893
[8]   High-Resolution Mapping of N6-Methyladenosine in Transcriptome and Genome Using a Photo-Crosslinking-Assisted Strategy [J].
Chen, Kai ;
Luo, Guan-Zheng ;
He, Chuan .
RNA MODIFICATION, 2015, 560 :161-185
[9]   Induction of sporulation in Saccharomyces cerevisiae leads to the formation of N6-methyladenosine in mRNA:: a potential mechanism for the activity of the IME4 gene [J].
Clancy, MJ ;
Shambaugh, ME ;
Timpte, CS ;
Bokar, JA .
NUCLEIC ACIDS RESEARCH, 2002, 30 (20) :4509-4518
[10]   Transcriptome-wide distribution and function of RNA hydroxymethylcytosine [J].
Delatte, Benjamin ;
Wang, Fei ;
Long Vo Ngoc ;
Collignon, Evelyne ;
Bonvin, Elise ;
Deplus, Rachel ;
Calonne, Emilie ;
Hassabi, Bouchra ;
Putmans, Pascale ;
Awe, Stephan ;
Wetzel, Collin ;
Kreher, Judith ;
Soin, Romuald ;
Creppe, Catherine ;
Limbach, Patrick A. ;
Gueydan, Cyril ;
Kruys, Veronique ;
Brehm, Alexander ;
Minakhina, Svetlana ;
Defrance, Matthieu ;
Steward, Ruth ;
Fuks, Francois .
SCIENCE, 2016, 351 (6270) :282-285