THE CIRCADIAN CLOCK GENEPER1SUPPRESSES CANCER CELL PROLIFERATION AND TUMOR GROWTH AT SPECIFIC TIMES OF DAY

每1 细胞生长 每2 生物 生物钟 细胞周期 昼夜节律 细胞生物学 时钟 抑癌基因 癌症 癌症研究 癌变 内分泌学 遗传学
作者
Xiaoming Yang,Patricia A. Wood,Christine Ansell,Dinah Faith T. Quiton,Eun-Yeong Oh,Jovelyn Du‐Quiton,William J.M. Hrushesky
出处
期刊:Chronobiology International [Informa]
卷期号:26 (7): 1323-1339 被引量:114
标识
DOI:10.3109/07420520903431301
摘要

Cell cycle progression is tightly regulated. The expressions of cell cycle regulators, the products of which either promote or inhibit cell proliferation, oscillate during each cell cycle. Cellular proliferation and the expression of cell cycle regulators are also controlled by the circadian clock. Disruption of the circadian clock may thereby lead to deregulated cell proliferation. Mammalian Per2 is a core clock gene, the product of which suppresses cancer cell proliferation and tumor growth in vivo and in vitro. Because Per1, another key clock gene, is mutated in human breast cancers, and because its clock functions are similar and complementary to those of Per2, we have studied its role in modulating breast cancer cell proliferation and tumor growth. We find that breast cancer growth rate is gated by the circadian clock with two daily peaks and troughs, and that they are coupled to the daily expression patterns of clock-controlled genes that regulate cell proliferation. Down-regulation of the expression of tumor Per1 increases cancer cell growth in vitro and tumor growth in vivo by enhancing the circadian amplitude of the two daily tumor growth peaks. The data of the study suggest Per1 has tumor-suppressor function that diminishes cancer proliferation and tumor growth, but only at specific times of day.
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