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Role for PSF in Mediating Transcriptional Activator-Dependent Stimulation of Pre-mRNA Processing In Vivo

机译:PSF在介导转录激活因子依赖的体内前mRNA处理刺激中的作用。

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In a recent study, we provided evidence that strong promoter-bound transcriptional activators result in higher levels of splicing and 3′-end cleavage of nascent pre-mRNA than do weak promoter-bound activators and that this effect of strong activators requires the carboxyl-terminal domain (CTD) of RNA polymerase II (pol II). In the present study, we have investigated the mechanism of activator- and CTD-mediated stimulation of pre-mRNA processing. Affinity chromatography experiments reveal that two factors previously implicated in the coupling of transcription and pre-mRNA processing, PSF and p54nrb/NonO, preferentially bind a strong rather than a weak activation domain. Elevated expression in human 293 cells of PSF bypasses the requirement for a strong activator to promote efficient splicing and 3′-end cleavage. Truncation of the pol II CTD, which consists of 52 repeats of the consensus heptapeptide sequence YSPTSPS, to 15 heptapeptide repeats prevents PSF-dependent stimulation of splicing and 3′-end cleavage. Moreover, PSF and p54nrb/NonO bind in vitro to the wild-type CTD but not to the truncated 15-repeat CTD, and domains in PSF that are required for binding to activators and to the CTD are also important for the stimulation of pre-mRNA processing. Interestingly, activator- and CTD-dependent stimulation of splicing mediated by PSF appears to primarily affect the removal of first introns. Collectively, these results suggest that the recruitment of PSF to activated promoters and the pol II CTD provides a mechanism by which transcription and pre-mRNA processing are coordinated within the cell.
机译:在最近的研究中,我们提供的证据表明,与弱启动子结合的激活子相比,强启动子结合的转录激活子导致新生的pre-mRNA的剪接和3'末端裂解水平更高,并且强激活子的这种作用需要羧基- RNA聚合酶II(pol II)的末端结构域(CTD)。在本研究中,我们研究了激活剂和CTD介导的前mRNA加工刺激机制。亲和色谱实验表明,以前牵涉转录和mRNA加工前耦合的两个因素PSF和p54 nrb / NonO优先结合强激活域而不是弱激活域。 PSF在人293细胞中的表达升高绕过了对使用强激活剂来促进有效剪接和3'端切割的需求。由共有七肽序列YSPTSPS的52个重复组成的pol II CTD的截短为15个七肽重复,可防止PSF依赖性的剪接和3'末端切割刺激。此外,PSF和p54 nrb / NonO在体外与野生型CTD结合,但不与截短的15重复CTD结合,并且PSF中与激活剂和CTD结合所需的结构域是对刺激前mRNA加工也很重要。有趣的是,PSF介导的剪接的活化剂和CTD依赖性刺激似乎主要影响了第一个内含子的去除。总而言之,这些结果表明,PSF募集到活化的启动子和pol II CTD提供了一种机制,通过该机制可以在细胞内协调转录和mRNA的前处理。

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