Sadiq Zuhair, Varghese Elizabeth, Büsselberg Dietrich
Department of Physiology and Biophysics, Weill Cornell Medicine-Qatar, Education City, Qatar Foundation, Doha, P.O. Box, 24144, Qatar.
Neurobiol Sleep Circadian Rhythms. 2020 Jul 30;9:100054. doi: 10.1016/j.nbscr.2020.100054. eCollection 2020 Nov.
The circadian clock, which generates the internal daily rhythm largely mediated through release of melatonin, can be disrupted in various ways. Multiple factors result in a disruption of the circadian cycle in the clinical context, of interest are anti-cancer drugs such as cisplatin. Cisplatin modulates the circadian clock through two mechanisms: 1) the circadian clock control of DNA excision repair and 2) the effect of circadian clock disruption on apoptosis. Cisplatin can stimulate multiple classified molecules, including DNA repair factors, DNA damage recognition factors and transcription factors in drug resistance and cisplatin-induced signal transduction. These factors interact with each other and can be transformed by DNA damage. Hence, these molecular interactions are intimately involved in cell proliferation and damage-induced apoptosis. Cisplatin has a dual-effect on circadian genes: upregulation of CLOCK expression causes an increase in proliferation but upregulation of BMAL1 expression causes an increase in apoptosis. Therefore, the interference of circadian genes by cisplatin can have multiple, opposing effects on apoptosis and cell proliferation, which may have unintended pro-cancer effects. Melatonin and intracellular Ca also have a dual-effect on cell proliferation and apoptosis and can disrupt circadian rhythms.
昼夜节律钟主要通过褪黑素的释放来产生内部的日常节律,它可能会以多种方式受到干扰。多种因素会导致临床环境中的昼夜节律周期紊乱,其中值得关注的是顺铂等抗癌药物。顺铂通过两种机制调节昼夜节律钟:1)DNA切除修复的昼夜节律控制;2)昼夜节律钟紊乱对细胞凋亡的影响。顺铂可以刺激多种分类分子,包括耐药性和顺铂诱导的信号转导中的DNA修复因子、DNA损伤识别因子和转录因子。这些因子相互作用,并可因DNA损伤而发生转变。因此,这些分子相互作用与细胞增殖和损伤诱导的细胞凋亡密切相关。顺铂对昼夜节律基因有双重作用:CLOCK表达上调会导致增殖增加,但BMAL1表达上调会导致细胞凋亡增加。因此,顺铂对昼夜节律基因的干扰可能对细胞凋亡和细胞增殖产生多种相反的影响,这可能会产生意想不到的促癌作用。褪黑素和细胞内钙对细胞增殖和细胞凋亡也有双重作用,并且会扰乱昼夜节律。