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首页> 外文期刊>Nucleic acids research >TRAP150 interacts with the RNA-binding domain of PSF and antagonizes splicing of numerous PSF-target genes in T cells
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TRAP150 interacts with the RNA-binding domain of PSF and antagonizes splicing of numerous PSF-target genes in T cells

机译:TRAP150与PSF的RNA结合域相互作用并拮抗T细胞中众多PSF靶基因的剪接

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PSF (a.k.a. SFPQ) is a ubiquitously expressed, essential nuclear protein with important roles in DNA damage repair and RNA biogenesis. In stimulated T cells, PSF binds to and suppresses the inclusion of CD45 exon 4 in the final mRNA; however, in resting cells, TRAP150 binds PSF and prevents access to the CD45 RNA, though the mechanism for this inhibition has remained unclear. Here, we show that TRAP150 binds a region encompassing the RNA recognition motifs (RRMs) of PSF using a previously uncharacterized, 70 residue region we have termed the PSF-interacting domain (PID). TRAP150's PID directly inhibits the interaction of PSF RRMs with RNA, which is mediated through RRM2. However, interaction of PSF with TRAP150 does not appear to inhibit the dimerization of PSF with other Drosophila Behavior, Human Splicing (DBHS) proteins, which is also dependent on RRM2. Finally, we use RASL-Seq to identify ~40 T cell splicing events sensitive to PSF knockdown, and show that for the majority of these, PSF's effect is antagonized by TRAP150. Together these data suggest a model in which TRAP150 interacts with dimeric PSF to block access of RNA to RRM2, thereby regulating the activity of PSF toward a broad set of splicing events in T cells.
机译:PSF(又称SFPQ)是一种普遍表达的必需核蛋白,在DNA损伤修复和RNA生物发生中具有重要作用。在刺激的T细胞中,PSF结合并抑制最终mRNA中CD45外显子4的包含;然而,在静止细胞中,TRAP150结合PSF并阻止进入CD45 RNA,尽管这种抑制机制尚不清楚。在这里,我们显示TRAP150使用我们以前称为PSF相互作用域(PID)的先前未表征的70个残基区域,结合了包含PSF的RNA识别基序(RRM)的区域。 TRAP150的PID会直接抑制PSF RRM与RNA的相互作用,这是通过RRM2介导的。但是,PSF与TRAP150的相互作用似乎并未抑制PSF与其他果蝇行为,人类剪接(DBHS)蛋白的二聚作用,后者也依赖于RRM2。最后,我们使用RASL-Seq鉴定了对PSF敲低敏感的约40个T细胞剪接事件,并表明对于其中大多数,PSP的作用被TRAP150拮抗。这些数据一起提出了一个模型,其中TRAP150与二聚体PSF相互作用以阻止RNA进入RRM2,从而调节PSF在T细胞中针对广泛剪接事件的活性。

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