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H3K27me1沉积的昼夜节律控制塑造了细胞周期和DNA损伤反应基因子集的表达。

Diurnal control of H3K27me1 deposition shapes expression of a subset of cell cycle and DNA damage response genes.

作者信息

Fung-Uceda Jorge, Gómez María Sol, Rodríguez-Casillas Laura, González-Gil Anna, Gutierrez Crisanto

机构信息

Centro de Biologia Molecular Severo Ochoa, CSIC-UAM, Nicolas Cabrera 1, Cantoblanco, 28049, Madrid, Spain.

出版信息

Plant J. 2024 Dec;120(6):2325-2336. doi: 10.1111/tpj.17114. Epub 2024 Nov 1.

Abstract

Rhythmic oscillation of biological processes helps organisms adapt their physiological responses to the most appropriate time of the day. Chromatin remodeling has been described as one of the molecular mechanisms controlling these oscillations. The importance of these changes in transcriptional activation as well as in the maintenance of heterochromatic regions has been widely demonstrated. However, little is still known on how diurnal changes can impact the global status of chromatin modifications and, hence, control gene expression. In plants, the repressive mark H3K27me1, deposited by ARABIDOPSIS TRITHORAX-RELATED PROTEIN 5 and 6 (ATXR5 and 6) methyltransferases, is largely associated with transposable elements but also covers lowly expressed genes. Here we show that this histone modification is preferentially deposited during the night. In euchromatic regions, it is found along the bodies of DNA damage response genes (DDR), where it is needed for their proper expression. The absence of H3K27me1 translates into an enhanced expression of DDR genes that follows a rhythmic oscillation pattern. This evidences a link between chromatin modifications and their synchronization with the diurnal cycle in order to accurately modulate the activation of biological processes to the most appropriate time of the day.

摘要

生物过程的节律性振荡有助于生物体使其生理反应适应一天中最合适的时间。染色质重塑已被描述为控制这些振荡的分子机制之一。这些变化在转录激活以及异染色质区域维持中的重要性已得到广泛证明。然而,关于昼夜变化如何影响染色质修饰的整体状态,进而控制基因表达,我们仍然知之甚少。在植物中,由拟南芥三胸相关蛋白5和6(ATXR5和6)甲基转移酶沉积的抑制性标记H3K27me1,在很大程度上与转座元件相关,但也覆盖低表达基因。在这里我们表明,这种组蛋白修饰优先在夜间沉积。在常染色质区域,它存在于DNA损伤反应基因(DDR)的基因体中,其正常表达需要该修饰。H3K27me1的缺失导致DDR基因的表达增强,且遵循节律性振荡模式。这证明了染色质修饰与其与昼夜周期同步之间的联系,以便在一天中最合适的时间精确调节生物过程的激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13fa/11658180/04255f16ebc1/TPJ-120-2325-g005.jpg

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