A dyad oct-binding sequence functions as a maintenance sequence for the unmethylated state within the H19/Igf2-imprinted control region

被引:41
作者
Hori, N
Nakano, H
Takeuchi, T
Kato, H
Hamaguchi, S
Oshimura, M
Sato, K
机构
[1] Tottori Univ, Fac Med, Sch Life Sci, Dept Mol Biol, Yonago, Tottori 6830853, Japan
[2] Tottori Univ, Fac Med, Sch Life Sci, Dept Mol & Cell Genet, Yonago, Tottori 6830853, Japan
关键词
D O I
10.1074/jbc.M202280200
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
DNA methylation of an imprinted control region (ICR) directs the allele-specific and reciprocal expression of the mouse H19 and the insulin-like growth factor 2 (Igf2) genes, mediated by controlling enhancer access. The ICR shows enhancer blocking activity through CTCF binding to an unmethylated sequence. The unmethylated state of the maternal ICR is maintained throughout development after establishment in the germ line; however, little is known of the molecular mechanisms that regulate DNA methylation. Hence, in this study we show that a dyad Oct-binding sequence (DOS) in the ICR mediates the demethylation of low-density methylation but not hypermethylation and is required to maintain the unmethylated state against the tendency for de novo methylation within the ICR in the embryonic carcinoma cell line P19. Furthermore, we also reveal that the unmethylated state of at least one CTCF-binding site within the ICR is under the control of DOS. Our results suggest that the ICR, as a CTCF-dependent insulator, requires DOS as well as CTCF-binding sites and that DOS maintains the maternal specific unmethylated state of the ICR at postimplantation stages.
引用
收藏
页码:27960 / 27967
页数:8
相关论文
共 35 条
[1]   The protein CTCF is required for the enhancer blocking activity of vertebrate insulators [J].
Bell, AC ;
West, AG ;
Felsenfeld, G .
CELL, 1999, 98 (03) :387-396
[2]   Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene [J].
Bell, AC ;
Felsenfeld, G .
NATURE, 2000, 405 (6785) :482-485
[3]   The imprinting box of the mouse Igf2r gene [J].
Birger, Y ;
Shemer, R ;
Perk, J ;
Razin, A .
NATURE, 1999, 397 (6714) :84-88
[4]   SP1 ELEMENTS PROTECT A CPG ISLAND FROM DE-NOVO METHYLATION [J].
BRANDEIS, M ;
FRANK, D ;
KESHET, I ;
SIEGFRIED, Z ;
MENDELSOHN, M ;
NEMES, A ;
TEMPER, V ;
RAZIN, A ;
CEDAR, H .
NATURE, 1994, 371 (6496) :435-438
[5]   THE ONTOGENY OF ALLELE-SPECIFIC METHYLATION ASSOCIATED WITH IMPRINTED GENES IN THE MOUSE [J].
BRANDEIS, M ;
KAFRI, T ;
ARIEL, M ;
CHAILLET, JR ;
MCCARREY, J ;
RAZIN, A ;
CEDAR, H .
EMBO JOURNAL, 1993, 12 (09) :3669-3677
[6]  
Drewell RA, 2000, DEVELOPMENT, V127, P3419
[7]   PARENTAL-ORIGIN-SPECIFIC EPIGENETIC MODIFICATION OF THE MOUSE H19 GENE [J].
FERGUSONSMITH, AC ;
SASAKI, H ;
CATTANACH, BM ;
SURANI, MA .
NATURE, 1993, 362 (6422) :751-755
[8]   CTCF-binding sites flank CTG/CAG repeats and form a methylation-sensitive insulator at the DM1 locus [J].
Filippova, GN ;
Thienes, CP ;
Penn, BH ;
Cho, DH ;
Hu, YJ ;
Moore, JM ;
Klesert, T ;
Lobanenkov, VV ;
Tapscott, SJ .
NATURE GENETICS, 2001, 28 (04) :335-343
[9]   Methylation sequencing analysis refines the region of H19 epimutation in Wilms tumor [J].
Frevel, MAE ;
Sowerby, SJ ;
Petersen, GB ;
Reeve, AE .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (41) :29331-29340
[10]   CTCF mediates methylation-sensitive enhancer-blocking activity at the H19/Igf2 locus [J].
Hark, AT ;
Schoenherr, CJ ;
Katz, DJ ;
Ingram, RS ;
Levorse, JM ;
Tilghman, SM .
NATURE, 2000, 405 (6785) :486-489