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TAF9b (Formerly TAF9L) Is a Bona Fide TAF That Has Unique and Overlapping Roles with TAF9

机译:TAF9b(以前称为TAF9L)是一种真正的TAF与TAF9具有独特且重叠的作用

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摘要

TFIID plays a key role in transcription initiation of RNA polymerase II preinitiation complex assembly. TFIID is comprised of the TATA box binding protein (TBP) and 14 TBP-associated factors (TAFs). A second set of transcriptional regulatory multiprotein complexes containing TAFs has been described (called SAGA, TFTC, STAGA, and PCAF/GCN5). Using matrix-assisted laser desorption ionization mass spectrometry, we identified a novel TFTC subunit, human TAF9Like, encoded by a TAF9 paralogue gene. We show that TAF9Like is a subunit of TFIID, and thus, it will be called TAF9b. TFIID and TFTC complexes in which both TAF9 and TAF9b are present exist. In vitro and in vivo experiments indicate that the interactions between TAF9b and TAF6 or TAF9 and TAF6 histone fold pairs are similar. We observed a differential induction of TAF9 and TAF9b during apoptosis that, together with their different ability to stabilize p53, points to distinct requirements for the two proteins in gene regulation. Small interfering RNA (siRNA) knockdown of TAF9 and TAF9b revealed that both genes are essential for cell viability. Gene expression analysis of cells treated with either TAF9 or TAF9b siRNAs indicates that the two proteins regulate different sets of genes with only a small overlap. Taken together, these data demonstrate that TAF9 and TAF9b share some of their functions, but more importantly, they have distinct roles in the transcriptional regulatory process.
机译:TFIID在RNA聚合酶II预起始复合物装配体的转录起始中起关键作用。 TFIID由TATA盒结合蛋白(TBP)和14种TBP相关因子(TAF)组成。已经描述了第二组含有TAF的转录调控多蛋白复合物(称为SAGA,TFTC,STAGA和PCAF / GCN5)。使用基质辅助激光解吸电离质谱,我们确定了一个新型的TFTC亚基,人TAF9Like,由TAF9旁系同源基因编码。我们显示TAF9Like是TFIID的一个亚基,因此将其称为TAF9b。存在同时存在TAF9和TAF9b的TFIID和TFTC复合物。体外和体内实验表明,TAF9b和TAF6或TAF9和TAF6组蛋白折叠对之间的相互作用是相似的。我们观察到在凋亡过程中TAF9和TAF9b的差异诱导,以及它们稳定p53的不同能力,对这两种蛋白在基因调控中的要求不同。 TAF9和TAF9b的小分子干扰RNA(siRNA)敲低表明这两个基因对于细胞生存力至关重要。用TAF9或TAF9b siRNA处理的细胞的基因表达分析表明,这两种蛋白质仅以很小的重叠即可调节不同的基因集。总而言之,这些数据表明TAF9和TAF9b共享其某些功能,但更重要的是,它们在转录调控过程中具有独特的作用。

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