Endogenous assays of DNA methyltransferases: Evidence for differential activities of DNMT1, DNMT2, and DNMT3 in mammalian cells in vivo

被引:119
作者
Liu, K [1 ]
Wang, YF [1 ]
Cantemir, C [1 ]
Muller, MT [1 ]
机构
[1] Ohio State Univ, Dept Mol Genet, Columbus, OH 43210 USA
关键词
D O I
10.1128/MCB.23.8.2709-2719.2003
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
While CpG methylation can be readily analyzed at the DNA sequence level in wild-type and mutant cells, the actual DNA (cytosine-5) methyltransferases (DNMTs) responsible for in vivo methylation on genomic DNA are less tractable. We used an antibody-based method to identify specific endogenous DNMTs (DNMT1, DNMT1b, DNMT2, DNMT3a, and DNMT3b) that stably and selectively bind to genomic DNA containing 5-aza-2'-deoxycytidine (aza-dC) in vivo. Selective binding to aza-dC-containing DNA suggests that the engaged DNMT is catalytically active in the cell. DNMT1b is a splice variant of the predominant maintenance activity DNMT1, while DNMT2 is a well-conserved protein with homologs in plants, yeast, Drosophila, humans, and mice. Despite the presence of motifs essential for transmethylation activity, catalytic activity of DNMT2 has never been reported. The data here suggest that DNMT2 is active in vivo when the endogenous genome is the target, both in human and mouse cell lines. We quantified relative global genomic activity of DNMT1, -2, -3a, and -3b in a mouse teratocarcinoma cell line. DNMT1 and -3b displayed the greatest in vivo binding avidity for aza-dC-containing genomic DNA in these cells. This study demonstrates that individual DNMTs can be tracked and that their binding to genomic DNA can be quantified in mammalian cells in vivo. The different DNMTs display a wide spectrum of genomic DNA-directed activity. The use of an antibody-based tracking method will allow specific DNMTs and their DNA targets to be recovered and analyzed in a physiological setting in chromatin.
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页码:2709 / 2719
页数:11
相关论文
共 40 条
[1]   Enzymatic properties of de novo-type mouse DNA (cytosine-5) methyltransferases [J].
Aoki, A ;
Suetake, I ;
Miyagawa, J ;
Fujio, T ;
Chijiwa, T ;
Sasaki, H ;
Tajima, S .
NUCLEIC ACIDS RESEARCH, 2001, 29 (17) :3506-3512
[2]   Aberrant patterns of DNA methylation, chromatin formation and gene expression in cancer [J].
Baylin, SB ;
Esteller, M ;
Rountree, MR ;
Bachman, KE ;
Schuebel, K ;
Herman, JG .
HUMAN MOLECULAR GENETICS, 2001, 10 (07) :687-692
[3]   Aberrant methylation of p16INK4a is an early event in lung cancer and a potential biomarker for early diagnosis [J].
Belinsky, SA ;
Nikula, KJ ;
Palmisano, WA ;
Michels, R ;
Saccomanno, G ;
Gabrielson, E ;
Baylin, SB ;
Herman, JG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (20) :11891-11896
[4]   The DNA methyltransferases of mammals [J].
Bestor, TH .
HUMAN MOLECULAR GENETICS, 2000, 9 (16) :2395-2402
[5]   Characterization of the human DNA methyltransferase splice variant Dnmt1b [J].
Bonfils, C ;
Beaulieu, N ;
Chan, E ;
Cotton-Montpetit, J ;
MacLeod, AR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (15) :10754-10760
[6]   Inhibition of HhaI DNA (cytosine-C5) methyltransferase by oligodeoxyribonucleotides containing 5-aza-2′-deoxycytidine:: Examination of the intertwined roles of co-factor, target, transition state structure and enzyme conformation [J].
Brank, AS ;
Eritja, R ;
Garcia, RG ;
Marquez, VE ;
Christman, JK .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 323 (01) :53-67
[7]   Methylation matters [J].
Costello, JF ;
Plass, C .
JOURNAL OF MEDICAL GENETICS, 2001, 38 (05) :285-303
[8]   Structure of human DNMT2, an enigmatic DNA methyltransferase homolog that displays denaturant-resistant binding to DNA [J].
Dong, AP ;
Yoder, JA ;
Zhang, X ;
Zhou, L ;
Bestor, TH ;
Cheng, XD .
NUCLEIC ACIDS RESEARCH, 2001, 29 (02) :439-448
[9]   Role of estrogen receptor gene demethylation and DNA methyltransferase DNA adduct formation in 5-aza-2′-deoxycytidine-induced cytotoxicity in human breast cancer cells [J].
Ferguson, AT ;
Vertino, PM ;
Spitzner, JR ;
Baylin, SB ;
Muller, MT ;
Davidson, NE .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (51) :32260-32266
[10]   THE MECHANISM OF INHIBITION OF DNA (CYTOSINE-5-)-METHYLTRANSFERASES BY 5-AZACYTOSINE IS LIKELY TO INVOLVE METHYL TRANSFER TO THE INHIBITOR [J].
GABBARA, S ;
BHAGWAT, AS .
BIOCHEMICAL JOURNAL, 1995, 307 :87-92