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光介导生物钟相位提前后肝脏中 H3K4me3 表观遗传标记的快速响应和缓慢恢复。

Rapid Response and Slow Recovery of the H3K4me3 Epigenomic Marker in the Liver after Light-mediated Phase Advances of the Circadian Clock.

机构信息

1 These authors contributed equally to this study.

Oregon Institute of Occupational Health Sciences, Oregon Health & Science University, Portland, Oregon.

出版信息

J Biol Rhythms. 2018 Aug;33(4):363-375. doi: 10.1177/0748730418779958. Epub 2018 Jun 11.

Abstract

Mammalian tissues display circadian rhythms in transcription, translation, and histone modifications. Here we asked how an advance of the light-dark cycle alters daily rhythms in the liver epigenome at the H3K4me3 (trimethylation of lysine 4 on histone 3) modification, which is found at active and poised gene promoters. H3K4me3 levels were first measured at 4 time points (zeitgeber time [ZT] 3, 8, 15, and 20) during a normal 12L:12D light-dark cycle. Peak levels were observed during the early dark phase at ZT15 and dropped to low levels around lights-on (ZT0) between ZT20 and ZT3. A 6-h phase advance at ZT18 (new lights-on after only 6 h of darkness) led to a transient extension of peak H3K4me3 levels. Although locomotor activity reentrained within a week after the phase advance, H3K4me3 rhythms failed to do so, with peak levels remaining in the light phase at the 1-week recovery time point. Eight weekly phase advances, with 1-week recovery times between each phase advance, further disrupted the H3K4me3 rhythms. Finally, we used the mPer2 knockin mouse to determine whether the phase advance also disrupted Per2 protein expression. Similar to the results from the histone work, we found both a rapid response to the phase advance and a delayed recovery, the latter in sync with H3K4me3 levels. A model to explain these results is offered.

摘要

哺乳动物组织在转录、翻译和组蛋白修饰中表现出昼夜节律。在这里,我们想知道光-暗周期的提前如何改变肝脏表观基因组在 H3K4me3(组蛋白 3 上赖氨酸 4 的三甲基化)修饰中的每日节律,该修饰存在于活性和静止基因启动子中。首先在正常的 12L:12D 光-暗循环的 4 个时间点(时间生物标志物 [ZT] 3、8、15 和 20)测量 H3K4me3 水平。在 ZT15 的早期暗期观察到峰值水平,并在 ZT20 和 ZT3 之间的光照时(ZT0)降低到低水平。在 ZT18 进行 6 小时的相位提前(仅在 6 小时的黑暗后新的光照)导致 H3K4me3 水平的短暂延长。尽管在相位提前后一周内,运动活动重新同步,但 H3K4me3 节律未能同步,在恢复时间点 1 周时,峰值水平仍处于光相。进行了 8 次每周相位提前,每次相位提前之间有 1 周的恢复时间,进一步破坏了 H3K4me3 节律。最后,我们使用 mPer2 敲入小鼠来确定相位提前是否也破坏了 Per2 蛋白表达。与组蛋白工作的结果相似,我们发现对相位提前的快速反应和延迟恢复,后者与 H3K4me3 水平同步。提供了一个解释这些结果的模型。

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