Circadian molecular clocks and cancer

被引:230
作者
Kelleher, Fergal C. [1 ,2 ]
Rao, Aparna [1 ]
Maguire, Anne [2 ]
机构
[1] Peter MacCallum Canc Ctr, Dept Med Oncol, Melbourne, Vic, Australia
[2] St Vincents Univ Hosp, Dublin 4, Ireland
关键词
Circadian clocks; Supra-chiasmatic nucleus; Shift-work; Breast cancer; Casein kinase I; CELL-CYCLE PROGRESSION; BREAST-CANCER; GENE-EXPRESSION; ESTROGEN-RECEPTOR; NIGHT WORK; SHIFT-WORK; DIFFERENTIAL REGULATION; THYMIDYLATE SYNTHASE; FOLINIC ACID; TUMOR-GROWTH;
D O I
10.1016/j.canlet.2013.09.040
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Physiological processes such as the sleep-wake cycle, metabolism and hormone secretion are controlled by a circadian rhythm adapted to 24 h day-night periodicity. This circadian synchronisation is in part controlled by ambient light decreasing melatonin secretion by the pineal gland and co-ordinated by the suprachiasmatic nucleus of the hypothalamus. Peripheral cell autonomous circadian clocks controlled by the suprachiasmatic nucleus, the master regulator, exist within every cell of the body and are comprised of at least twelve genes. These include the basic helix-loop-helix/PAS domain containing transcription factors; Clock, BMal1 and Npas2 which activate transcription of the periodic genes (Per1 and Per2) and cryptochrome genes (Cry1 and Cry2). Points of coupling exist between the cellular clock and the cell cycle. Cell cycle genes which are affected by the molecular circadian clock include c-Myc, Wee1, cyclin D and p21. Therefore the rhythm of the circadian clock and cancer are interlinked. Molecular examples exist including activation of Per2 leads to c-myc overexpression and an increased tumor incidence. Mice with mutations in Cryptochrome 1 and 2 are arrhythmic (lack a circadian rhythm) and arrhythmic mice have a faster rate of growth of implanted tumors. Epidemiological finding of relevance include 'The Nurses' Health Study' where it was established that women working rotational night shifts have an increased incidence of breast cancer. Compounds that affect circadian rhythm exist with attendant future therapeutic possibilities. These include casein kinase I inhibitors and a candidate small molecule KL001 that affects the degradation of cryptochrome. Theoretically the cell cycle and malignant disease may be targeted vicariously by selective alteration of the cellular molecular clock. (C) 2013 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:9 / 18
页数:10
相关论文
共 139 条
  • [1] p21 in cancer: intricate networks and multiple activities
    Abbas, Tarek
    Dutta, Anindya
    [J]. NATURE REVIEWS CANCER, 2009, 9 (06) : 400 - 414
  • [2] Mutations in the Circadian Gene CLOCK in Colorectal Cancer
    Alhopuro, Pia
    Bjorklund, Mikael
    Sammalkorpi, Heli
    Turunen, Mikko
    Tuupanen, Sari
    Bistrom, Mia
    Niittymaki, Iina
    Lehtonen, Heli J.
    Kivioja, Teemu
    Launonen, Virpi
    Saharinen, Juha
    Nousiainen, Kari
    Hautaniemi, Sampsa
    Nuorva, Kyosti
    Mecklin, Jukka-Pekka
    Jarvinen, Heikki
    Orntoft, Torben
    Arango, Diego
    Lehtonen, Rainer
    Karhu, Auli
    Taipale, Jussi
    Aaltonen, Lauri A.
    [J]. MOLECULAR CANCER RESEARCH, 2010, 8 (07) : 952 - 960
  • [3] Vasoactive intestinal polypeptide mediates circadian rhythmicity and synchrony in mammalian clock neurons
    Aton, SJ
    Colwell, CS
    Harmar, AJ
    Waschek, J
    Herzog, ED
    [J]. NATURE NEUROSCIENCE, 2005, 8 (04) : 476 - 483
  • [4] Azenshtein E, 2002, CANCER RES, V62, P1093
  • [5] Special Report: Policy A review of human carcinogens-Part F: Chemical agents and related occupations
    Baan, Robert
    Grosse, Yann
    Straif, Kurt
    Secretan, Beatrice
    El Ghissassi, Fatiha
    Bouvard, Veronique
    Benbrahim-Tallaa, Lamia
    Guha, Neela
    Freeman, Crystal
    Galichet, Laurent
    Cogliano, Vincent
    [J]. LANCET ONCOLOGY, 2009, 10 (12) : 1143 - 1144
  • [6] Regulators of cyclin-dependent kinases are crucial for maintaining genome integrity in S phase
    Beck, Halfdan
    Nahse, Viola
    Larsen, Marie Sofie Yoo
    Groth, Petra
    Clancy, Trevor
    Lees, Michael
    Jorgensen, Mette
    Helleday, Thomas
    Syljuasen, Randi G.
    Sorensen, Claus Storgaard
    [J]. JOURNAL OF CELL BIOLOGY, 2010, 188 (05) : 629 - 638
  • [7] Light pulse-induced heme and iron-associated transcripts in mouse brain: A microarray analysis
    Ben-Shlomo, R
    Akhtar, RA
    Collins, BH
    Judah, DJ
    Davies, R
    Kyriacou, CP
    [J]. CHRONOBIOLOGY INTERNATIONAL, 2005, 22 (03) : 455 - 471
  • [8] Evidence for an overlapping role of CLOCK and NPAS2 transcription factors in liver circadian oscillators
    Bertolucci, Cristiano
    Cavallari, Nicola
    Colognesi, Ilaria
    Aguzzi, Jacopo
    Chen, Zheng
    Caruso, Pierpaolo
    Foa, Augusto
    Tosini, Gianluca
    Bernardi, Francesco
    Pinotti, Mirko
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2008, 28 (09) : 3070 - 3075
  • [9] Bhattacharya A., 2012, ONCOGENE
  • [10] Invited Commentary: Shift Work and Cancer
    Bhatti, Parveen
    Mirick, Dana K.
    Davis, Scott
    [J]. AMERICAN JOURNAL OF EPIDEMIOLOGY, 2012, 176 (09) : 760 - 763