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Top-Down Characterization of Nucleic Acids Modified by Structural Probes Using High-Resolution Tandem Mass Spectrometry and Automated Data Interpretation

机译:使用高分辨率串联质谱和自动数据解释通过结构探针修饰的核酸的自顶向下表征

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A top-down approach based on sustained off-resonance irradiation collision-induced dissociation (SORI-CID) has been implemented on an electrospray ionization (ESI) Fourier transform mass spectrometer (FTMS) to characterize nucleic acid substrates modified by structural probes. Solvent accessibility reagents, such as dimethyl sulfate (DMS), 1-cyclohexyl-3-(2-morpholinoethyl)carbodiimide metho-p-toluenesulfonate (CMCT), and β-ethoxy-α-ketobutyraldehyde (kethoxal, KT) are widely employed to reveal the position of single- vs double-stranded regions and obtain the footprint of bound proteins onto nucleic acids structures. Established methods require end-labeling of the nucleic acid constructs, probe-specific chemistry to produce strand cleavage at the modified nucleotides, and analysis by polyacrylamide gel electrophoresis to determine the position of the susceptible sites. However, these labor-intensive procedures can be avoided when mass spectrometry is used to identify the probeinduced modifications from their characteristic mass signatures. In particular, ESI-FTMS can be directly employed to monitor the conditions of probe application to avoid excessive alkylation, which could induce unwanted distortion or defolding of the substrate of interest. The sequence position of the covalent modifications can be subsequently obtained from classic tandem techniques, which allow for the analysis of individual target adducts present in complex reaction mixtures with no need for separation techniques. Selection and activation by SORI-CID has been employed to reveal the position of adducts in nucleic acid substrates in excess of 6 kDa. The stability of the different covalent modifications under SORI-CID conditions was investigated. Multiple stages of isolation and activation were employed in MS~(n) experiments to obtain the desired sequence information whenever the adduct stability was not particularly favorable, and SORI-CID induced the facile loss of the modified base. A new program called MS2Links was developed for the automated reduction and interpretation of fragmentation data obtained from modified nucleic acids. Based on an algorithm that searches for plausible isotopic patterns, the data reduction module is capable of discriminating legitimate signals from noise spikes of comparable intensity. The fragment identification module calculates the monoisotopic mass of ion products expected from a certain sequence and user-defined covalent modifications, which are finally matched with the signals selected by the data reduction program. Considering that MS2Links can generate similar fragment libraries for peptides and their covalent conjugates with other peptides or nucleic acids, this program provides an integrated platform for the structural investigation of protein-nucleic acid complexes based on cross-linking strategies and top-down ESI-FTMS.
机译:在电喷雾电离(ESI)傅里叶变换质谱仪(FTMS)上已实现了基于持续非共振辐射碰撞诱导解离(SORI-CID)的自顶向下方法,以表征通过结构探针修饰的核酸底物。溶剂可及性试剂如硫酸二甲酯(DMS),1-环己基-3-(2-吗啉代乙基)碳二亚胺甲基对对甲苯磺酸酯(CMCT)和β-乙氧基-α-酮丁醛(kethoxal,KT)被广泛用于揭示单链和双链区域的位置,并获得结合蛋白在核酸结构上的足迹。既定的方法需要核酸构建体的末端标记,探针特异性化学作用以在修饰的核苷酸上产生链切割,并需要通过聚丙烯酰胺凝胶电泳进行分析以确定易感位点的位置。但是,当使用质谱从其特征质谱特征识别探针诱导的修饰时,可以避免这些劳动强度大的过程。特别是,ESI-FTMS可以直接用于监测探针应用的条件,以避免过度的烷基化,而烷基化可能会导致目标基质发生不必要的变形或折叠。随后可以从经典串联技术中获得共价修饰的序列位置,该技术无需分离技术即可分析复杂反应混合物中存在的各个目标加合物。已经通过SORI-CID进行选择和激活以揭示加合物在核酸底物中超过6kDa的位置。研究了在SORI-CID条件下不同共价修饰的稳定性。每当加合物的稳定性不是特别理想时,在MS(n)实验中就采用了分离和激活的多个阶段来获得所需的序列信息,并且SORI-CID导致了修饰碱基的易失。开发了一个名为MS2Links的新程序,用于自动还原和解释从修饰核酸获得的片段数据。基于搜索合理同位素模式的算法,数据缩减模块能够从强度相当的噪声尖峰中区分合法信号。片段识别模块计算从某个序列和用户定义的共价修饰中预期得到的离子产物的单同位素质量,这些最终与数据还原程序选择的信号相匹配。考虑到MS2Link可以为肽及其与其他肽或核酸的共价缀合物生成相似的片段文库,因此该程序为基于交联策略和自上而下的ESI-FTMS的蛋白质-核酸复合物的结构研究提供了一个集成平台。

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