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Two splicing factors carrying serine-arginine motifs TSR1 and TSR1IP regulate splicing mRNA stability and rRNA processing in Trypanosoma brucei

机译:带有丝氨酸精氨酸基序的两个剪接因子TSR1和TSR1IP调节布鲁氏锥虫的剪接mRNA稳定性和rRNA加工

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摘要

In trypanosomes, mRNAs are processed by trans-splicing; in this process, a common exon, the spliced leader, is added to all mRNAs from a small RNA donor, the spliced leader RNA (SL RNA). However, little is known regarding how this process is regulated. In this study, we investigated the function of two serine-arginine-rich proteins, TSR1 and TSR1IP, implicated in trans-splicing in Trypanosoma brucei. Depletion of these factors by RNAi suggested their role in both cis- and trans-splicing. Microarray was used to examine the transcriptome of the silenced cells. The level of hundreds of mRNAs was changed, suggesting that these proteins have a role in regulating only a subset of T. brucei mRNAs. Mass-spectrometry analyses of complexes associated with these proteins suggest that these factors function in mRNA stability, translation, and rRNA processing. We further demonstrate changes in the stability of mRNA as a result of depletion of the two TSR proteins. In addition, rRNA defects were observed under the depletion of U2AF35, TSR1, and TSR1IP, but not SF1, suggesting involvement of SR proteins in rRNA processing.
机译:在锥虫中,mRNA通过反式剪接加工。在此过程中,将普通的外显子(剪接的前导序列)添加到来自小型RNA供体(剪接的前导RNA(SL RNA))的所有mRNA中。但是,对于如何调节此过程知之甚少。在这项研究中,我们调查了两个富含丝氨酸精氨酸的蛋白TSR1和TSR1IP的功能,它们涉及布鲁氏锥虫的反式剪​​接。 RNAi对这些因子的消耗表明它们在顺式和反式剪接中均起作用。使用微阵列检查沉默细胞的转录组。数百种mRNA的水平发生了变化,这表明这些蛋白质仅在布鲁氏菌T.mRNA的一部分中起作用。与这些蛋白质相关的复合物的质谱分析表明,这些因素在mRNA稳定性,翻译和rRNA加工中起作用。我们进一步证明了由于两个TSR蛋白的耗尽,mRNA的稳定性发生了变化。此外,在U2AF35,TSR1和TSR1IP耗尽的情况下观察到rRNA缺陷,但在SF1却没有,这表明SR蛋白参与了rRNA加工。

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