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Minor introns are embedded molecular switches regulated by highly unstable U6atac snRNA

机译:次要内含子是由高度不稳定的U6atac snRNA调控的嵌入式分子开关

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摘要

Eukaryotes have two types of spliceosomes, comprised of either major (U1, U2, U4, U5, U6) or minor (U11, U12, U4atac, U6atac; <1%) snRNPs. The high conservation of minor introns, typically one amidst many major introns in several hundred genes, despite their poor splicing, has been a long-standing enigma. Here, we discovered that the low abundance minor spliceosome’s catalytic snRNP, U6atac, is strikingly unstable (t½<2 hr). We show that U6atac level depends on both RNA polymerases II and III and can be rapidly increased by cell stress-activated kinase p38MAPK, which stabilizes it, enhancing mRNA expression of hundreds of minor intron-containing genes that are otherwise suppressed by limiting U6atac. Furthermore, p38MAPK-dependent U6atac modulation can control minor intron-containing tumor suppressor PTEN expression and cytokine production. We propose that minor introns are embedded molecular switches regulated by U6atac abundance, providing a novel post-transcriptional gene expression mechanism and a rationale for the minor spliceosome’s evolutionary conservation.>DOI:
机译:真核生物具有两种剪接体,它们由主要的(snRNPs)(U1,U2,U4,U5,U6)或次要的(U11,U12,U4atac,U6atac; <1%)组成。少数内含子尽管剪接较差,但通常在数百个基因的许多主要内含子中占据较高的保守性,这一直是一个谜。在这里,我们发现低丰度的次要剪接体的催化snRNP U6atac非常不稳定(t½<2小时)。我们显示,U6atac水平取决于RNA聚合酶II和III,并且可以通过细胞应激激活的激酶p38MAPK迅速增加,从而使其稳定化,增强数百个含内含子的小基因的mRNA表达,否则该基因可通过限制U6atac来抑制。此外,p38MAPK依赖的U6atac调节可以控制含内含子的肿瘤抑制基因PTEN的少量表达和细胞因子的产生。我们建议,小内含子是受U6atac丰度调控的嵌入式分子开关,为小剪接体的进化保守提供了新的转录后基因表达机制和原理。> DOI:

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