Addepalli Balasubrahmanyam, Venus Sarah, Thakur Priti, Limbach Patrick A
Rieveschl Laboratories for Mass Spectrometry, Department of Chemistry, University of Cincinnati, PO Box 210172, Cincinnati, OH, 45221, USA.
Anal Bioanal Chem. 2017 Sep;409(24):5645-5654. doi: 10.1007/s00216-017-0500-x. Epub 2017 Jul 20.
A recombinant ribonuclease, cusativin, was characterized for its cytidine-specific cleavage ability of RNA to map chemical modifications. Following purification of native cusativin protein as described before (Rojo et al. Planta 194:328, 17), partial amino acid sequencing was carried out to identify the corresponding protein coding gene in cucumber genome. Cloning and heterologous expression of the identified gene in Escherichia coli resulted in successful production of active protein as a C-terminal His-tag fusion protein. The ribonuclease activity and cleavage specificity of the fusion protein were confirmed with a variety of tRNA isoacceptors and total tRNA. Characterization of cusativin digestion products by ion-pairing reverse-phase liquid chromatography coupled with mass spectrometry (IP-RP-LC-MS) analysis revealed cleavage of CpA, CpG, and CpU phosphodiester bonds at the 3'-terminus of cytidine under optimal digestion conditions. Ribose methylation or acetylation of cytosine inhibited RNA cleavage. The CpC phosphodiester bond was also resistant to cusativin-mediated RNA cleavage; a feature to our knowledge has not been reported for other nucleobase-specific ribonucleases. Here, we demonstrate the analytical utility of such a novel feature for obtaining high-sequence coverage and accurate mapping of modified residues in substrate RNAs. Graphical abstract Cytidine-specific novel ribonuclease activity of cusativin.
一种重组核糖核酸酶——催吐素,因其对RNA具有胞苷特异性切割能力,可用于绘制化学修饰图谱。按照之前所述方法纯化天然催吐素蛋白(Rojo等人,《植物》194:328,17)后,进行了部分氨基酸测序,以鉴定黄瓜基因组中相应的蛋白质编码基因。在大肠杆菌中克隆并异源表达鉴定出的基因,成功产生了作为C端His标签融合蛋白的活性蛋白。用多种tRNA同工受体和总tRNA证实了融合蛋白的核糖核酸酶活性和切割特异性。通过离子对反相液相色谱与质谱联用(IP-RP-LC-MS)分析对催吐素消化产物进行表征,结果显示在最佳消化条件下,胞苷3'端的CpA、CpG和CpU磷酸二酯键发生了切割。胞嘧啶的核糖甲基化或乙酰化抑制了RNA切割。CpC磷酸二酯键也对催吐素介导的RNA切割具有抗性;据我们所知,这一特性尚未在其他碱基特异性核糖核酸酶中报道。在此,我们展示了这种新特性在获得底物RNA中修饰残基的高序列覆盖率和精确图谱方面的分析效用。图形摘要:催吐素的胞苷特异性新型核糖核酸酶活性。