Integrative Program for Biological and Genome Sciences, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Department of Biophysics, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106 Warsaw, Poland.
Nucleic Acids Res. 2018 May 18;46(9):4752-4770. doi: 10.1093/nar/gky133.
3' end cleavage of metazoan replication-dependent histone pre-mRNAs requires the multi-subunit holo-U7 snRNP and the stem-loop binding protein (SLBP). The exact composition of the U7 snRNP and details of SLBP function in processing remain unclear. To identify components of the U7 snRNP in an unbiased manner, we developed a novel approach for purifying processing complexes from Drosophila and mouse nuclear extracts. In this method, catalytically active processing complexes are assembled in vitro on a cleavage-resistant histone pre-mRNA containing biotin and a photo-sensitive linker, and eluted from streptavidin beads by UV irradiation for direct analysis by mass spectrometry. In the purified processing complexes, Drosophila and mouse U7 snRNP have a remarkably similar composition, always being associated with CPSF73, CPSF100, symplekin and CstF64. Many other proteins previously implicated in the U7-dependent processing are not present. Drosophila U7 snRNP bound to histone pre-mRNA in the absence of SLBP contains the same subset of polyadenylation factors but is catalytically inactive and addition of recombinant SLBP is sufficient to trigger cleavage. This result suggests that Drosophila SLBP promotes a structural rearrangement of the processing complex, resulting in juxtaposition of the CPSF73 endonuclease with the cleavage site in the pre-mRNA substrate.
真核生物复制依赖性组蛋白前体 mRNA3'末端切割需要多亚基全 U7 snRNP 和茎环结合蛋白 (SLBP)。U7 snRNP 的精确组成和 SLBP 在加工中的功能细节仍不清楚。为了以无偏倚的方式鉴定 U7 snRNP 的组成部分,我们开发了一种从果蝇和小鼠核提取物中纯化加工复合物的新方法。在该方法中,在含有生物素和光敏感接头的抗切割组蛋白前体 mRNA 上体外组装具有催化活性的加工复合物,并通过 UV 照射从链霉亲和素珠上洗脱,直接通过质谱进行分析。在纯化的加工复合物中,果蝇和小鼠 U7 snRNP 的组成非常相似,总是与 CPSF73、CPSF100、symplekin 和 CstF64 相关联。以前与 U7 依赖性加工相关的许多其他蛋白质都不存在。在没有 SLBP 的情况下结合到组蛋白前体 mRNA 上的果蝇 U7 snRNP 包含相同的聚腺苷酸化因子亚基,但没有催化活性,添加重组 SLBP 足以触发切割。这一结果表明,果蝇 SLBP 促进了加工复合物的结构重排,导致 CPSF73 内切酶与前体 mRNA 底物中的切割位点并列。