Nanog safeguards pluripotency and mediates germline development

被引:1117
作者
Chambers, Ian
Silva, Jose
Colby, Douglas
Nichols, Jennifer
Nijmeijer, Bianca
Robertson, Morag
Vrana, Jan
Jones, Ken
Grotewold, Lars
Smith, Austin
机构
[1] Univ Edinburgh, MRC Ctr Dev Stem Cell Biol, Inst Stem Cell Res, Sch Biol Sci, Edinburgh EH9 3JQ, Midlothian, Scotland
[2] Univ Cambridge, Wellcome Trust Ctr Stem Cell Res, Cambridge CB2 1QR, England
[3] Univ Cambridge, Dept Biochem, Cambridge CB2 1QR, England
[4] Univ Cambridge, Dept Physiol Dev & Neurosci, Cambridge CB2 1QR, England
基金
英国医学研究理事会; 英国生物技术与生命科学研究理事会; 英国惠康基金;
关键词
D O I
10.1038/nature06403
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Nanog is a divergent homeodomain protein found in mammalian pluripotent cells and developing germ cells(1,2). Deletion of Nanog causes early embryonic lethality(2), whereas constitutive expression enables autonomous self- renewal of embryonic stem cells(1). Nanog is accordingly considered a core element of the pluripotent transcriptional network(3-7). However, here we report that Nanog fluctuates in mouse embryonic stem cells. Transient downregulation of Nanog appears to predispose cells towards differentiation but does not mark commitment. By genetic deletion we show that, although they are prone to differentiate, embryonic stem cells can self- renew indefinitely in the permanent absence of Nanog. Expanded Nanog null cells colonize embryonic germ layers and exhibit multilineage differentiation both in fetal and adult chimaeras. Although they are also recruited to the germ line, primordial germ cells lacking Nanog fail to mature on reaching the genital ridge. This defect is rescued by repair of the mutant allele. Thus Nanog is dispensible for expression of somatic pluripotency but is specifically required for formation of germ cells. Nanog therefore acts primarily in construction of inner cell mass and germ cell states rather than in the housekeeping machinery of pluripotency. We surmise that Nanog stabilizes embryonic stem cells in culture by resisting or reversing alternative gene expression states.
引用
收藏
页码:1230 / U8
页数:6
相关论文
共 33 条
  • [1] MAZ-DEPENDENT TERMINATION BETWEEN CLOSELY SPACED HUMAN-COMPLEMENT GENES
    ASHFIELD, R
    PATEL, AJ
    BOSSONE, SA
    BROWN, H
    CAMPBELL, RD
    MARCU, KB
    PROUDFOOT, NJ
    [J]. EMBO JOURNAL, 1994, 13 (23) : 5656 - 5667
  • [2] Core transcriptional regulatory circuitry in human embryonic stem cells
    Boyer, LA
    Lee, TI
    Cole, MF
    Johnstone, SE
    Levine, SS
    Zucker, JR
    Guenther, MG
    Kumar, RM
    Murray, HL
    Jenner, RG
    Gifford, DK
    Melton, DA
    Jaenisch, R
    Young, RA
    [J]. CELL, 2005, 122 (06) : 947 - 956
  • [3] Derivation of pluripotent epiblast stem cells from mammalian embryos
    Brons, I. Gabrielle M.
    Smithers, Lucy E.
    Trotter, Matthew W. B.
    Rugg-Gunn, Peter
    Sun, Bowen
    de Sousa Lopes, Susana M. Chuva
    Howlett, Sarah K.
    Clarkson, Amanda
    Ahrlund-Richter, Lars
    Pedersen, Roger A.
    Vallier, Ludovic
    [J]. NATURE, 2007, 448 (7150) : 191 - U7
  • [4] Self-renewal of teratocarcinoma and embryonic stem cells
    Chambers, I
    Smith, A
    [J]. ONCOGENE, 2004, 23 (43) : 7150 - 7160
  • [5] Functional expression cloning of Nanog, a pluripotency sustaining factor in embryonic stem cells
    Chambers, I
    Colby, D
    Robertson, M
    Nichols, J
    Lee, S
    Tweedie, S
    Smith, A
    [J]. CELL, 2003, 113 (05) : 643 - 655
  • [6] CHAMBERS I, 2004, REND FIS ACC LINCEI, P83
  • [7] Transcriptional dynamics of the embryonic stem cell switch
    Chickarmane, Vijay
    Troein, Carl
    Nuber, Ulrike A.
    Sauro, Herbert M.
    Peterson, Carsten
    [J]. PLOS COMPUTATIONAL BIOLOGY, 2006, 2 (09) : 1080 - 1092
  • [8] Epigenetic reprogramming in mouse primordial germ cells
    Hajkova, P
    Erhardt, S
    Lane, N
    Haaf, T
    El-Maarri, O
    Reik, W
    Walter, J
    Surani, MA
    [J]. MECHANISMS OF DEVELOPMENT, 2002, 117 (1-2) : 15 - 23
  • [9] Identification, cloning and expression analysis of the pluripotency promoting Nanog genes in mouse and human
    Hart, AH
    Hartley, L
    Ibrahim, M
    Robb, L
    [J]. DEVELOPMENTAL DYNAMICS, 2004, 230 (01) : 187 - 198
  • [10] Pluripotential competence of cells associated with Nanog activity
    Hatano, S
    Tada, M
    Kimura, H
    Yamaguchi, S
    Kono, T
    Nakano, T
    Suemori, H
    Nakatsuji, N
    Tada, T
    [J]. MECHANISMS OF DEVELOPMENT, 2005, 122 (01) : 67 - 79