[1] | Jiang ZW, Liu XG, Zhou ZJ . The regulation of histone modifications. Prog Biochem Biophys, 2009,36(10):1252-1259. | [1] | 蒋智文, 刘新光, 周中军 . 组蛋白修饰调节机制的研究进展. 生物化学与生物物理进展, 2009,36(10):1252-1259. | [2] | Murray K . The occurrence of Epsilon-N-methyl lysine in histones. Biochemistry -Us, 1964,3(1):10-15. | [3] | Kim S, Paik WK . Studies on the origin of epsilon-N- methyl-L-lysine in protein. J Biol Chem, 1965,240(12):4629-4634. | [4] | Martin C, Zhang Y . The diverse functions of histone lysine methylation. Nat Rev Mol Cell Bio, 2005,6(11):838-849. | [5] | Song BY, Zhu WG . Advances in effector protein of histone methylation. Hereditas(Beijing), 2011,33(4):285-292. | [5] | 宋博研, 朱卫国 . 组蛋白甲基化修饰效应分子的研究进展. 遗传, 2011,33(4):285-292. | [6] | Chang CP, Bruneau BG . Epigenetics and cardiovascular development. Annu Rev Physiol, 2012,74:41-68. | [7] | Creyghton MP, Cheng AW, Welstead GG, Kooistra T, Carey BW, Steine EJ, Hanna J, Lodato MA, Frampton GM, Sharp PA, Boyer LA, Young RA, Jaenisch R . Histone H3K27ac separates active from poised enhancers and predicts developmental state. Proc Natl Acad Sci USA, 2010,107(50):21931-21936. | [8] | Heintzman ND, Hon GC, Hawkins RD, Kheradpour P, Stark A, Harp LF, Ye Z, Lee LK, Stuart RK, Ching CW, Ching KA, Antosiewicz-Bourget JE, Liu H, Zhang X, Green RD, Lobanenkov VV, Stewart R, Thomson JA, Crawford GE, Kellis M, Ren B . Histone modifications at human enhancers reflect global cell-type-specific gene expression. Nature, 2009,459(7243):108-112. | [9] | Vieux-Rochas M, Fabre PJ, Leleu M, Duboule D, Noordermeer D . Clustering of mammalian Hox genes with other H3K27me3 targets within an active nuclear domain. Proc Natl Acad Sci USA, 2015,112(15):4672-4677. | [10] | Agger K, Cloos PA, Christensen J, Pasini D, Rose S, Rappsilber J, Issaeva I, Canaani E, Salcini AE, Helin K . UTX and JMJD3 are histone H3K27 demethylases involved in HOX gene regulation and development. Nature, 2007,449(7163):731-734. | [11] | Hong S, Cho YW, Yu LR, Yu H, Veenstra TD, Ge K . Identification of JmjC domain-containing UTX and JMJD3 as histone H3 lysine 27 demethylases. Proc Natl Acad Sci USA, 2007,104(47):18439-18444. | [12] | Shpargel KB, Starmer J, Yee D, Pohlers M, Magnuson T . KDM6 demethylase independent loss of histone H3 lysine 27 trimethylation during early embryonic development. PLoS Genet, 2014,10(8):e1004507. | [13] | Vermeulen M, Eberl HC, Matarese F, Marks H, Denissov S, Butter F, Lee KK, Olsen JV, Hyman AA, Stunnenberg HG, Mann M . Quantitative interaction proteomics and genome-wide profiling of epigenetic histone marks and their |
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