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DIS3L2 and LSm proteins are involved in the surveillance of Sm ring-deficient snRNAs

机译:DIS3L2和LSm蛋白参与Sm环缺陷snRNA的监视

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摘要

Spliceosomal small nuclear ribonucleoprotein particles (snRNPs) undergo a complex maturation pathway containing multiple steps in the nucleus and in the cytoplasm. snRNP biogenesis is strictly proofread and several quality control checkpoints are placed along the pathway. Here, we analyzed the fate of small nuclear RNAs (snRNAs) that are unable to acquire a ring of Sm proteins. We showed that snRNAs lacking the Sm ring are unstable and accumulate in P-bodies in an LSm1-dependent manner. We further provide evidence that defective snRNAs without the Sm binding site are uridylated at the 3′ end and associate with DIS3L2 3′→5′ exoribonuclease and LSm proteins. Finally, inhibition of 5′→3′ exoribonuclease XRN1 increases association of ΔSm snRNAs with DIS3L2, which indicates competition and compensation between these two degradation enzymes. Together, we provide evidence that defective snRNAs without the Sm ring are uridylated and degraded by alternative pathways involving either DIS3L2 or LSm proteins and XRN1.
机译:剪接体核小核糖核蛋白小颗粒(snRNPs)经历了复杂的成熟途径,在细胞核和细胞质中包含多个步骤。 snRNP生物发生经过严格校对,并且沿该路径放置了多个质量控制检查点。在这里,我们分析了无法获得Sm蛋白环的小核RNA(snRNA)的命运。我们表明缺少Sm环的snRNA是不稳定的,并以依赖LSm1的方式在P体内积累。我们进一步提供的证据表明,没有Sm结合位点的有缺陷的snRNA在3'端被尿苷化,并与DIS3L2 3'→5'外切核糖核酸酶和LSm蛋白相关。最后,抑制5'→3'外切核糖核酸酶XRN1会增加ΔSmsnRNA与DIS3L2的结合,这表明这两种降解酶之间存在竞争和补偿。在一起,我们提供的证据表明,不带Sm环的有缺陷的snRNA通过涉及DIS3L2或LSm蛋白和XRN1的替代途径被尿苷化并降解。

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