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TRRAP 转录共激活因子在结直肠癌细胞中抑制干扰素刺激基因。

The TRRAP transcription cofactor represses interferon-stimulated genes in colorectal cancer cells.

机构信息

CRBM, University of Montpellier, CNRS, Montpellier, France.

出版信息

Elife. 2022 Mar 4;11:e69705. doi: 10.7554/eLife.69705.

Abstract

Transcription is essential for cells to respond to signaling cues and involves factors with multiple distinct activities. One such factor, TRRAP, functions as part of two large complexes, SAGA and TIP60, which have crucial roles during transcription activation. Structurally, TRRAP belongs to the phosphoinositide 3 kinase-related kinases (PIKK) family but is the only member classified as a pseudokinase. Recent studies established that a dedicated HSP90 co-chaperone, the triple T (TTT) complex, is essential for PIKK stabilization and activity. Here, using endogenous auxin-inducible degron alleles, we show that the TTT subunit TELO2 promotes TRRAP assembly into SAGA and TIP60 in human colorectal cancer cells (CRCs). Transcriptomic analysis revealed that TELO2 contributes to TRRAP regulatory roles in CRC cells, most notably of MYC target genes. Surprisingly, TELO2 and TRRAP depletion also induced the expression of type I interferon genes. Using a combination of nascent RNA, antibody-targeted chromatin profiling (CUT&RUN), ChIP, and kinetic analyses, we propose a model by which TRRAP directly represses the transcription of , which encodes a master regulator of interferon-stimulated genes. We have therefore uncovered an unexpected transcriptional repressor role for TRRAP, which we propose contributes to its tumorigenic activity.

摘要

转录对于细胞响应信号提示至关重要,涉及具有多种不同活性的因子。TRRAP 就是这样一种因子,它作为 SAGA 和 TIP60 两个大型复合物的一部分发挥作用,在转录激活过程中具有关键作用。结构上,TRRAP 属于磷酸肌醇 3 激酶相关激酶(PIKK)家族,但却是唯一被归类为拟激酶的成员。最近的研究表明,一个专门的 HSP90 共伴侣,即三 T(TTT)复合物,对于 PIKK 的稳定和活性是必不可少的。在这里,我们使用内源性的激素诱导的降解结构域等位基因,表明 TTT 亚基 TELO2 促进了人结直肠癌细胞(CRC)中 SAGA 和 TIP60 中 TRRAP 的组装。转录组分析显示,TELO2 有助于 TRRAP 在 CRC 细胞中的调节作用,尤其是 MYC 靶基因。令人惊讶的是,TELO2 和 TRRAP 的缺失也诱导了 I 型干扰素基因的表达。我们结合新生 RNA、抗体靶向染色质谱分析(CUT&RUN)、ChIP 和动力学分析,提出了一个模型,即 TRRAP 直接抑制编码干扰素刺激基因的主调控因子的转录。因此,我们发现了 TRRAP 出乎意料的转录抑制作用,我们推测这与其致瘤活性有关。

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