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酿酒酵母内源 U2·U5·U6 snRNA 复合物是内含子套索剪接体。

Endogenous U2·U5·U6 snRNA complexes in S. pombe are intron lariat spliceosomes.

出版信息

RNA. 2014 Mar;20(3):308-20. doi: 10.1261/rna.040980.113. Epub 2014 Jan 17.

Abstract

Excision of introns from pre-mRNAs is mediated by the spliceosome, a multi-megadalton complex consisting of U1, U2, U4/U6, and U5 snRNPs plus scores of associated proteins. Spliceosome assembly and disassembly are highly dynamic processes involving multiple stable intermediates. In this study, we utilized a split TAP-tag approach for large-scale purification of an abundant endogenous U2·U5·U6 complex from Schizosaccharomyces pombe. RNAseq revealed this complex to largely contain excised introns, indicating that it is primarily ILS (intron lariat spliceosome) complexes. These endogenous ILS complexes are remarkably resistant to both high-salt and nuclease digestion. Mass spectrometry analysis identified 68, 45, and 43 proteins in low-salt-, high-salt-, and micrococcal nuclease-treated preps, respectively. The protein content of a S. pombe ILS complex strongly resembles that previously reported for human spliced product (P) and Saccharomyces cerevisiae ILS complexes assembled on single pre-mRNAs in vitro. However, the ATP-dependent RNA helicase Brr2 was either substoichiometric in low-salt preps or completely absent from high-salt and MNase preps. Because Brr2 facilitates spliceosome disassembly, its relative absence may explain why the ILS complex accumulates logarithmically growing cultures and the inability of S. pombe extracts to support in vitro splicing.

摘要

外显子从前体 mRNA 中的切除是由剪接体介导的,剪接体是一个由 U1、U2、U4/U6 和 U5 snRNPs 以及数十种相关蛋白组成的兆道尔顿复合物。剪接体的组装和拆卸是高度动态的过程,涉及多个稳定的中间产物。在这项研究中,我们利用了一种分裂 TAP 标签方法,从酿酒酵母中大规模纯化丰富的内源性 U2·U5·U6 复合物。RNAseq 表明,该复合物主要包含切除的内含子,表明它主要是 ILS(内含子套索剪接体)复合物。这些内源性 ILS 复合物对高盐和核酸酶消化具有很强的抗性。质谱分析分别在低盐、高盐和微球菌核酸酶处理的预孵育物中鉴定出 68、45 和 43 种蛋白。酿酒酵母 ILS 复合物的蛋白质含量与先前报道的人剪接产物(P)和在体外组装在单个前体 mRNA 上的酿酒酵母 ILS 复合物非常相似。然而,ATP 依赖性 RNA 解旋酶 Brr2 在低盐预孵育物中是亚化学计量的,或者完全不存在于高盐和 MNase 预孵育物中。因为 Brr2 促进剪接体的拆卸,其相对缺乏可能解释了为什么 ILS 复合物在对数生长期的培养物中积累,以及酿酒酵母提取物不能支持体外剪接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7db/3923126/691e090e7a21/308fig1.jpg

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