Transcriptional control of cell-cycle quiescence during C. elegans development

被引:33
|
作者
Clayton, Joseph E. [1 ]
van den Heuvel, Sander J. L. [2 ]
Saito, R. Mako [1 ]
机构
[1] Dartmouth Coll, Sch Med, Dept Genet, Hanover, NH 03755 USA
[2] Univ Utrecht, Fac Sci, Dept Biol, NL-3584 CH Utrecht, Netherlands
关键词
C; elegans; vulval development; cell-cycle quiescence; transcription; FoxB; Ets; mediator; CKI;
D O I
10.1016/j.ydbio.2007.10.051
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
During the development of the C elegans reproductive system, cells that give rise to the vulva, the vulval precursor cells (VPCs), remain quiescent for two larval stages before resuming cell division in the third larval stage. We have identified several transcriptional regulators that contribute to this temporary cell-cycle arrest. Mutation of lin-1 or lin-31, two downstream targets of the Receptor Tyrosine kinase (RTK)/Ras/MAP kinase cascade that controls VPC cell fate, disrupts the temporary VPC quiescence. We found that the LIN-1/Ets and LIN-31/FoxB transcription factors promote expression of CKI-1, a member of the p27 family of cyclin-dependent kinase inhibitors (CKIs). LIN-1 and LIN-31 promote cki-11 Kip-1 transcription prior to their inhibition through RTK/Ras/MAPK activation. Another mutation identified in the screen defined the mdt-13 TRAP240 Mediator subunit. Further analysis of the multi-subunit Mediator complex revealed that a specific subset of its components act in VPC quiescence. These components substantially overlap with the CDK-8 module implicated in transcriptional repression. Taken together, strict control of cell-cycle quiescence during VPC development involves transcriptional induction of CKI-1 and transcriptional regulation through the Mediator complex. These transcriptional regulators represent potential molecular connections between development and the basic cell-cycle machinery. (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:603 / 613
页数:11
相关论文
共 50 条
  • [31] Transcriptional control of the C. elegans hox gene ceh-13
    Streit, A
    Kohler, R
    Marty, T
    Belfiore, M
    Stoyanov, C
    Affolter, M
    Schnabel, R
    Müller, F
    DEVELOPMENTAL BIOLOGY, 2000, 222 (01) : 279 - 279
  • [32] Transcriptional control of dorsal-ventral polarity cues in C. elegans
    Kersey, Rossio K.
    Brodigan, Thomas
    Fukushige, Tetsu
    Krause, Mike
    DEVELOPMENTAL BIOLOGY, 2010, 344 (01) : 503 - 504
  • [33] Spatial and molecular cues for cell outgrowth during C. elegans uterine development
    Ghosh, Srimoyee
    Sternberg, Paul W.
    DEVELOPMENTAL BIOLOGY, 2014, 396 (01) : 121 - 135
  • [34] A transcriptional network controlling male sensory organ development in C. elegans
    Chan, W. H.
    Yip, S. Y.
    Cheng, A. W.
    Chow, K. L.
    DEVELOPMENTAL BIOLOGY, 2006, 295 (01) : 457 - 458
  • [35] CONTROL OF CELL-CYCLE TIMING IN EARLY EMBRYOS OF CAENORHABDITIS-ELEGANS
    SCHIERENBERG, E
    WOOD, WB
    DEVELOPMENTAL BIOLOGY, 1985, 107 (02) : 337 - 354
  • [36] CELL-CYCLE CONTROL IN EARLY MOUSE DEVELOPMENT
    MCCONNELL, J
    JOURNAL OF REPRODUCTION AND FERTILITY, 1990, : 205 - 213
  • [37] Erratum: Cell-cycle control and cortical development
    Colette Dehay
    Henry Kennedy
    Nature Reviews Neuroscience, 2007, 8 (7) : 568 - 568
  • [38] Cell-cycle control during meiotic maturation
    Kishimoto, T
    CURRENT OPINION IN CELL BIOLOGY, 2003, 15 (06) : 654 - 663
  • [39] The CRL2LRR-1 ubiquitin ligase regulates cell cycle progression during C. elegans development
    Merlet, Jorge
    Burger, Julien
    Tavernier, Nicolas
    Richaudeau, Benedicte
    Gomes, Jose-Eduardo
    Pintard, Lionel
    DEVELOPMENT, 2010, 137 (22): : 3857 - 3866
  • [40] Cell cycle controls stress response and longevity in C. elegans
    Dottermusch, Matthias
    Lakner, Theresa
    Peyman, Tobias
    Klein, Marinella
    Walz, Gerd
    Neumann-Haefelin, Elke
    AGING-US, 2016, 8 (09): : 2100 - 2126