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KAP1负向调节RNA聚合酶II的延伸动力学以激活信号诱导的转录。

KAP1 negatively regulates RNA polymerase II elongation kinetics to activate signal-induced transcription.

作者信息

Hyder Usman, Challa Ashwini, Thornton Micah, Nandu Tulip, Kraus W Lee, D'Orso Iván

机构信息

Department of Microbiology, The University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

Laboratory of Signaling and Gene Regulation, Cecil H. and Ida Green Center for Reproductive Biology Sciences, The University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

bioRxiv. 2024 May 5:2024.05.05.592422. doi: 10.1101/2024.05.05.592422.

Abstract

Signal-induced transcriptional programs regulate critical biological processes through the precise spatiotemporal activation of Immediate Early Genes (IEGs); however, the mechanisms of transcription induction remain poorly understood. By combining an acute depletion system with high resolution genomics approaches to interrogate synchronized, temporal transcription, we reveal that KAP1/TRIM28 is a first responder that fulfills the temporal and heightened transcriptional demand of IEGs. Unexpectedly, acute KAP1 loss triggers an increase in RNA polymerase II elongation kinetics during early stimulation time points. This elongation defect derails the normal progression through the transcriptional cycle during late stimulation time points, ultimately leading to decreased recruitment of the transcription apparatus for re-initiation thereby dampening IEGs transcriptional output. Collectively, KAP1 plays a counterintuitive role by negatively regulating transcription elongation to support full activation across multiple transcription cycles of genes critical for cell physiology and organismal functions.

摘要

信号诱导的转录程序通过即时早期基因(IEGs)的精确时空激活来调节关键的生物学过程;然而,转录诱导的机制仍知之甚少。通过将急性耗竭系统与高分辨率基因组学方法相结合,以研究同步的、时间性的转录,我们发现KAP1/TRIM28是第一个响应者,它满足了IEGs的时间性和增强的转录需求。出乎意料的是,急性KAP1缺失会在早期刺激时间点触发RNA聚合酶II延伸动力学的增加。这种延伸缺陷在后期刺激时间点破坏了转录周期的正常进程,最终导致转录装置重新起始的募集减少,从而抑制了IEGs的转录输出。总的来说,KAP1通过负向调节转录延伸发挥了一个与直觉相反的作用,以支持对细胞生理和机体功能至关重要的基因在多个转录周期中的完全激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7869/11092767/7849a33f98ec/nihpp-2024.05.05.592422v1-f0001.jpg

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