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Complete MALDI-ToF MS analysis of cross-linked peptide-RNA oligonucleotides derived from nonlabeled UV-irradiated ribonucleoprotein particles

机译:完整的MALDI-ToF MS分析衍生自未标记的紫外线辐射的核糖核蛋白颗粒的交联的肽RNA寡核苷酸

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Protein-RNA cross-linking combined with mass spectrometry is a powerful tool to elucidate hitherto noncharacterized protein-RNA contacts in ribonucleoprotein particles, as, for example, within spliceosomes. Here, we describe an improved methodology for the sequence analysis of purified peptide-RNA oligonucleotide cross-links that is based solely on MALDI-ToF mass spectrometry. The utility of this methodology is demonstrated on cross-links isolated from UV-irradiated spliceosomal particles; these were (1) [15.5K-61K-U4atac] small nuclear ribonucleoprotein (snRNP) particles prepared by reconstitution in vitro, and (2) U1 snRNP particles purified from HeLa cells. We show that the use of 2',4',6'-trihydroxyacetophenone (THAP) as MALDI matrix allows analysis of cross-linked peptide-RNA oligonucleotides in the reflectron mode at high resolution, enabling sufficient accuracy to assign unambiguously cross-linked RNA sequences. Most important, post-source decay (PSD) analysis under these conditions was successfully applied to obtain sequence information about the cross-linked peptide and RNA moieties within a single spectrum, including the identification of the actual cross-linking site. Thus, in U4atac snRNA we identified His270 in the spliceosomal U4/U6 snRNP-specific protein 61 K (hPrp31p) cross-linked to U44; in the U1 snRNP we show that Leu175 of the U1 snRNP-specific 70K protein is cross-linked to U30 of U1 snRNA. This type of analysis is applicable to any type of RNP complex and may be expected to pave the way for the further analysis of protein-RNA complexes in much lower abundance and/or of cross-links that are obtained in low yield.
机译:蛋白质-RNA交联与质谱联用是阐明核糖核蛋白颗粒(例如在剪接体中)迄今未表征的蛋白质-RNA接触的有力工具。在这里,我们描述了一种纯粹基于MALDI-ToF质谱法的纯化的肽-RNA寡核苷酸交联序列分析的改进方法。这种方法的实用性在从紫外线照射的剪接体颗粒分离的交联中得到了证明。这些是(1)通过体外重组制备的[15.5K-61K-U4atac]小核核糖核蛋白(snRNP)颗粒,以及(2)从HeLa细胞纯化的U1 snRNP颗粒。我们显示使用2',4',6'-三羟基苯乙酮(THAP)作为MALDI基质可以在高分辨率下以反射子模式分析交联的肽RNA寡核苷酸,从而确保足够的准确度以分配明确的交联RNA序列。最重要的是,在这些条件下成功地进行了源后衰变(PSD)分析,以获取有关单个光谱中交联肽和RNA部分的序列信息,包括鉴定实际的交联位点。因此,在U4atac snRNA中,我们在与U44交联的剪接U4 / U6 snRNP特异性蛋白61 K(hPrp31p)中鉴定了His270。在U1 snRNP中,我们显示了U1 snRNP特异性70K蛋白的Leu175与U1 snRNA的U30交联。这种类型的分析适用于任何类型的RNP复合物,并有望为进一步分析蛋白质-RNA复合物以低得多的丰度和/或以低产率获得的交联铺平道路。

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