Zac1 regulates an imprinted gene network critically involved in the control of embryonic growth

被引:379
作者
Varrault, Annie
Gueydan, Charlotte
Delalbre, Annie
Bellmann, Anja
Houssami, Souheir
Aknin, Cindy
Severac, Dany
Chotard, Laetitia
Kahli, Malik
Le Digarcher, Anne
Pavlidis, Paul
Journot, Laurent [1 ]
机构
[1] Univ Montpellier, INSERM U661, CNRS UMR5203, Inst Genom Fonct, F-34094 Montpellier, France
[2] Univ Montpellier 2, F-34094 Montpellier, France
[3] Genopole Montpellier, F-34904 Montpellier, France
[4] Columbia Univ, Columbia Genome Ctr, Coll Phys & Surg, New York, NY 10032 USA
[5] Columbia Univ, Dept Biomed Informat, New York, NY 10032 USA
关键词
D O I
10.1016/j.devcel.2006.09.003
中图分类号
Q2 [细胞生物学];
学科分类号
071009 [细胞生物学]; 090102 [作物遗传育种];
摘要
Genomic imprinting is an epigenetic mechanism of regulation that restrains the expression of a small subset of mammalian genes to one parental allele. The reason for the targeting of these similar to 80 genes by imprinting remains uncertain. We show that inactivation of the maternally repressed Zac1 transcription factor results in intrauterine growth restriction, altered bone formation, and neonatal lethality. A meta-analysis of microarray data reveals that Zac1 is a member of a network of coregulated genes comprising other imprinted genes involved in the control of embryonic growth. Zac1 alters the expression of several of these imprinted genes, including Igf2, H19, Cdkn1c, and Dlk1, and it directly regulates the Igf2/H19 locus through binding to a shared enhancer. Accordingly, these data identify a network of imprinted genes, including Zac1, which controls embryonic growth and which may be the basis for the implementation of a common mechanism of gene regulation during mammalian evolution.
引用
收藏
页码:711 / 722
页数:12
相关论文
共 60 条
[1]
ZAC, LIT1 (KCNQ1OT1) and p57KIP2 (CDKN1C) are in an imprinted gene network that may play a role in Beckwith-Wiedemann syndrome [J].
Arima, T ;
Kamikihara, T ;
Hayashida, T ;
Kato, K ;
Inoue, T ;
Shirayoshi, Y ;
Oshimura, M ;
Soejima, H ;
Mukai, T ;
Wake, N .
NUCLEIC ACIDS RESEARCH, 2005, 33 (08) :2650-2660
[2]
Emergence of scaling in random networks [J].
Barabási, AL ;
Albert, R .
SCIENCE, 1999, 286 (5439) :509-512
[3]
The candidate tumor suppressor gene ZAC is involved in keratinocyte differentiation and its expression is lost in basal cell carcinomas [J].
Basyuk, E ;
Coulon, V ;
Le Digarcher, A ;
Coisy-Quivy, M ;
Moles, JP ;
Gandarillas, A ;
Journot, L .
MOLECULAR CANCER RESEARCH, 2005, 3 (09) :483-492
[4]
Loss of expression of the candidate tumor suppressor gene ZAC in breast cancer cell lines and primary tumors [J].
Bilanges, B ;
Varrault, A ;
Basyuk, E ;
Rodriguez, C ;
Mazumdar, A ;
Pantaloni, C ;
Bockaert, J ;
Theillet, C ;
Spengler, D ;
Journot, L .
ONCOGENE, 1999, 18 (27) :3979-3988
[5]
Alternative splicing of the imprinted candidate tumor suppressor gene ZAC regulates its antiproliferative and DNA binding activities [J].
Bilanges, B ;
Varrault, A ;
Mazumdar, A ;
Pantaloni, C ;
Hoffmann, A ;
Bockaert, J ;
Spengler, D ;
Journot, L .
ONCOGENE, 2001, 20 (10) :1246-1253
[6]
TRANSACTIVATION OF MOUSE INSULIN-LIKE GROWTH FACTOR-II (IGF-II) GENE PROMOTERS BY THE AP-1 COMPLEX [J].
CARICASOLE, A ;
WARD, A .
NUCLEIC ACIDS RESEARCH, 1993, 21 (08) :1873-1879
[7]
DIFFERENTIAL ACTIVITY OF MATERNALLY AND PATERNALLY DERIVED CHROMOSOME REGIONS IN MICE [J].
CATTANACH, BM ;
KIRK, M .
NATURE, 1985, 315 (6019) :496-498
[8]
Disruption of the imprinted Grb10 gene leads to disproportionate overgrowth by an Igf2-independent mechanism [J].
Charalambous, M ;
Smith, FM ;
Bennett, WR ;
Crew, TE ;
Mackenzie, F ;
Ward, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (14) :8292-8297
[9]
Cell cycle in mouse development [J].
Ciemerych, MA ;
Sicinski, P .
ONCOGENE, 2005, 24 (17) :2877-2898
[10]
Resourceful imprinting [J].
Constäncia, M ;
Kelsey, G ;
Reik, W .
NATURE, 2004, 432 (7013) :53-57