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Trypanosome Spliced-Leader-Associated RNA (SLA1) Localization and Implications for Spliced-Leader RNA Biogenesis

机译:锥虫剪接的领导者相关RNA(SLA1)的定位和对剪接领导者RNA生物发生的影响。

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Spliced-leader-associated RNA (SLA1) guides the pseudouridylation at position ?12 (relative to the 5′ splice site) of the spliced-leader (SL) RNA in all trypanosomatid species. Nevertheless, the exact role of this RNA is currently unknown. Here, we demonstrate that the absence of pseudouridine on Leptomonas collosoma SL RNA has only a minor effect on the ability of this RNA to function in trans splicing in vivo. To investigate the possible role of SLA1 during SL RNA biogenesis, the structure of the SL RNA was examined in permeable Trypanosoma brucei cells depleted for CBF5, the H/ACA pseudouridine synthase, lacking SLA1. Our results suggest that in the absence of SLA1, the SL RNA secondary structure is changed, as was detected by differential sensitivity to oligonucleotide-directed RNase H cleavage, suggesting that the association of SLA1 maintains the SL RNA in a structural form which is distinct from the structure of the SL RNA in the steady state. In T. brucei cells depleted for the SL RNA core protein SmD1, SL RNA first accumulates in large amounts in the nucleus and then is expelled to the cytoplasm. Here, we demonstrate by in vivo aminomethyltrimethyl UV cross-linking studies that under SmD1 depletion, SLA1 remains bound to SL RNA and escorts the SL RNA to the cytoplasm. In situ hybridization with SLA1 and SL RNA demonstrates colocalization between SLA1 and the SL RNA transcription factor tSNAP42, as well as with Sm proteins, suggesting that SLA1 associates with SL RNA early in its biogenesis. These results demonstrate that SLA1 is a unique chaperonic RNA that functions during the early biogenesis of SL RNA to maintain a structure that is most probably suitable for cap 4 modification.
机译:剪接头相关RNA(SLA1)指导所有锥虫科物种中剪接头(SL)RNA的位置?12(相对于5'剪接位点)的假尿苷化。然而,目前尚不清楚该RNA的确切作用。在这里,我们证明了在 Leptomonas collosoma SL RNA上不存在假尿苷对该RNA在体内 trans 剪接中发挥作用的能力只有很小的影响。为了研究SLA1在SL RNA生物发生过程中的可能作用,在缺少CLA5的缺乏SLA1的CBF5(H / ACA假尿苷合酶)的通透性 Try 我们的结果表明,在不存在SLA1的情况下,SL RNA二级结构发生了变化,这是通过对寡核苷酸定向的RNase H裂解的不同敏感性所检测到的,这表明SLA1的缔合将SL RNA保持与以下形式不同的结构形式稳定状态下SL RNA的结构。在 T中。耗尽SL RNA核心蛋白SmD1的brucei细胞,SL RNA首先在细胞核中大量积累,然后被排到细胞质中。在这里,我们通过体内氨基甲基三甲基UV交联研究证明,在SmD1耗尽的情况下,SLA1仍与SL RNA结合,并将SL RNA护送到细胞质中。与SLA1和SL RNA的原位杂交表明SLA1与SL RNA转录因子tSNAP42以及与Sm蛋白共定位,这表明SLA1在其生物发生的早期就与SL RNA缔合。这些结果表明,SLA1是独特的伴侣RNA,在SL RNA的早期生物合成过程中发挥功能,以维持最可能适合帽4修饰的结构。

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