Genomic Imprinting and Physiological Processes in Mammals

被引:345
|
作者
Tucci, Valter [1 ]
Isles, Anthony R. [2 ]
Kelsey, Gavin [3 ,4 ]
Ferguson-Smith, Anne C. [5 ]
机构
[1] Ist Italiano Tecnol, Dept Neurosci & Brain Technol, Via Morego 30, I-16163 Genoa, Italy
[2] Cardiff Univ, Sch Med, MRC, Ctr Neuropsychiat Genet & Genom, Cardiff CF24 44H, S Glam, Wales
[3] Babraham Inst, Epigenet Programme, Cambridge CB22 3AT, England
[4] Univ Cambridge, Ctr Trophoblast Res, Cambridge CB2 3EG, England
[5] Univ Cambridge, Dept Genet, Downing St, Cambridge CB2 3EH, England
基金
英国生物技术与生命科学研究理事会;
关键词
ORIGIN ALLELIC EXPRESSION; DNA METHYLATION; NUCLEAR TRANSPLANTATION; EPIGENETIC MECHANISMS; MATERNAL-BEHAVIOR; CIRCADIAN-RHYTHMS; MICE LACKING; STEM-CELLS; DELTA-LIKE; MOUSE;
D O I
10.1016/j.cell.2019.01.043
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
Complex multicellular organisms, such as mammals, express two complete sets of chromosomes per nucleus, combining the genetic material of both parents. However, epigenetic studies have demonstrated violations to this rule that are necessary for mammalian physiology; the most notable parental allele expression phenomenon is genomic imprinting. With the identification of endogenous imprinted genes, genomic imprinting became well-established as an epigenetic mechanism in which the expression pattern of a parental allele influences phenotypic expression. The expanding study of genomic imprinting is revealing a significant impact on brain functions and associated diseases. Here, we review key milestones in the field of imprinting and discuss mechanisms and systems in which imprinted genes exert a significant role.
引用
收藏
页码:952 / +
页数:15
相关论文
共 50 条
  • [31] Non-coding RNAs and the acquisition of genomic imprinting in mammals
    YiJun Zhang
    LiangHu Qu
    Science in China Series C: Life Sciences, 2009, 52 : 195 - 204
  • [32] Empirical testing of hypotheses about the evolution of genomic imprinting in mammals
    Ashbrook, David G.
    Hager, Reinmar
    FRONTIERS IN NEUROANATOMY, 2013, 7
  • [33] Non-coding RNAs and the acquisition of genomic imprinting in mammals
    Zhang, YiJun
    Qu, LiangHu
    SCIENCE IN CHINA SERIES C-LIFE SCIENCES, 2009, 52 (03): : 195 - 204
  • [34] Non-coding RNAs and the acquisition of genomic imprinting in mammals
    ZHANG YiJun & QU LiangHu Key Laboratory of Gene Engineering of the Ministry of Education
    Science in China(Series C:Life Sciences), 2009, (03) : 195 - 204
  • [35] Genomic imprinting: employing and avoiding epigenetic processes
    Bartolomei, Marisa S.
    GENES & DEVELOPMENT, 2009, 23 (18) : 2124 - 2133
  • [36] REGULATION OF GENOMIC IMPRINTING BY GAMETIC AND EMBRYONIC PROCESSES
    CHAILLET, JR
    BADER, DS
    LEDER, P
    GENES & DEVELOPMENT, 1995, 9 (10) : 1177 - 1187
  • [37] Genomic imprinting, mammalian evolution, and the mystery of egg-laying mammals
    John, RM
    Surani, MA
    CELL, 2000, 101 (06) : 585 - 588
  • [38] Genomic imprinting in mammals: its life cycle, molecular mechanisms and reprogramming
    Li, Yufeng
    Sasaki, Hiroyuki
    CELL RESEARCH, 2011, 21 (03) : 466 - 473
  • [39] Genomic imprinting in mammals: its life cycle, molecular mechanisms and reprogramming
    Yufeng Li
    Hiroyuki Sasaki
    Cell Research, 2011, 21 : 466 - 473
  • [40] Genomic imprinting in plants and mammals: how life history constrains convergence
    Scott, R. J.
    Spielman, M.
    CYTOGENETIC AND GENOME RESEARCH, 2006, 113 (1-4) : 53 - 67