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U1 snRNA is cleaved by RNase III and processed through an Sm site-dependent pathway.

机译:U1 snRNA被RNase III切割并通过Sm位点依赖性途径加工。

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Core snRNP proteins bind snRNA through the conserved Sm site, PuA(U)n>/=3GPu. While yeast U1 snRNA has three matches to the Sm consensus, the U1 3'-terminal Sm site was found to be both necessary and sufficient for U1 function. Mutation of this site inhibited pre-mRNA splicing, blocked cell division and resulted in the accumulation of two 3'-extended forms of the U1 snRNA. Cells which harbor the Sm site mutation lack mature U1 RNA (U1alpha) but have a minor polyadenylated species, U1gamma, and a prominent, non-polyadenylated species, U1beta. Metabolic depletion of the essential Sm core protein, Smd1p, also resulted in the increased accumulation of U1beta and U1gamma. In vitro, synthetic U1 precursors were cleaved by Rnt1p (RNase III) very near the U1beta 3'-end observed in vivo. We propose that U1beta is an Rnt1p-cleaved intermediate and that U1 maturation to the U1alpha form occurs through an Sm-sensitive step. Interestingly, both U1alpha and a second, much longer RNA, U1straightepsilon, were produced in an rnt1 mutant strain. These results suggest that yeast U1 snRNA processing may progress through Rnt1p-dependent and Rnt1p-independent pathways, both of which require a fun-ctional Sm site for final snRNA maturation.
机译:核心snRNP蛋白通过保守的Sm位点PuA(U)n> / = 3GPu结合snRNA。尽管酵母U1 snRNA与Sm共有序列具有三个匹配,但发现U1 3'端Sm位点对于U1功能既必要又充分。该位点的突变抑制了mRNA前的剪接,阻止了细胞分裂,并导致U1 snRNA的两种3'延伸形式积聚。带有Sm位点突变的细胞缺少成熟的U1 RNA(U1alpha),但具有少量的聚腺苷酸化物种U1gamma和突出的非聚腺苷酸化物种U1beta。必需Sm核心蛋白Smd1p的代谢耗竭也导致U1beta和U1gamma的积累增加。在体外,在体内观察到的非常接近U1beta 3'末端的Rnt1p(RNase III)切割合成的U1前体。我们建议U1beta是Rnt1p裂解的中间体,并且U1成熟到U1alpha形式发生通过Sm敏感的步骤。有趣的是,在rnt1突变株中产生了U1alpha和更长的第二个RNA U1straightepsilon。这些结果表明酵母U1 snRNA加工可能会通过Rnt1p依赖性和Rnt1p无关的途径进行,这两种途径都需要一个功能性Sm位点才能进行最终的snRNA成熟。

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