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首页> 外文期刊>Analytical chemistry >Multiplexed Middle-Down Mass Spectrometry as a Method for Revealing Light and Heavy Chain Connectivity in a Monoclonal Antibody
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Multiplexed Middle-Down Mass Spectrometry as a Method for Revealing Light and Heavy Chain Connectivity in a Monoclonal Antibody

机译:多路复用的下下质谱作为用于在单克隆抗体中揭示光和重链连接的方法

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Pairing light and heavy chains in monoclonal antibodies (mAbs) using top-down (TD) or middle-down (MD) mass spectrometry (MS) may complement the sequence information on single chains provided by high-throughput genomic sequencing and bottom-up proteomics, favoring the rational selection of drug candidates. The 50 kDa F(ab) subunits of mAbs are the smallest structural units that contain the required information on chain pairing. These subunits can be enzymatically produced from whole mAbs and interrogated in their intact form by TD/MD MS approaches. However, the high structural complexity of F(ab) subunits requires increased sensitivity of the modern TD/MD MS for a comprehensive structural analysis. To address this and similar challenges, we developed and applied a multiplexed TD/MD MS workflow based on spectral averaging of tandem mass spectra (MS/MS) across multiple liquid chromatography (LC)-MS/MS runs acquired in reduced or full profile mode using an Orbitrap Fourier transform mass spectrometer (FTMS). We first benchmark the workflow using myoglobin as a reference protein, and then validate it for the analysis of the 50 kDa F(ab) subunit of a therapeutic mAb, trastuzumab. Obtained results confirm the envisioned benefits in terms of increased signal-to-noise ratio of product ions from utilizing multiple LC-MS/MS runs for TD/MD protein analysis using mass spectral averaging. The workflow performance is compared with the earlier introduced multiplexed TD/MD MS workflow based on transient averaging in Orbitrap FTMS. For the latter, we also report on enabling absorption mode FT processing and demonstrate its comparable performance to the enhanced FT (eFT) spectral representation.
机译:使用自上而下(Td)或下下(MD)质谱(MS)的单克隆抗体(MAb)中的配对光和重链可以补充由高通量基因组测序和自下而上蛋白质组学提供的单链的序列信息,有利于理性选择药物候选人。 MAB的50kDA F(AB)亚基是最小的结构单元,其包含有关链配对所需信息。这些亚基可以从整个mAb酶促制作,并通过Td / MD MS方法以完整形式询问。然而,F(AB)亚基的高结构复杂性需要增加现代TD / MD MS的敏感性,以实现综合结构分析。为了解决这一和类似的挑战,我们开发并基于串联质谱(MS / MS)的串联质谱(MS / MS)的光谱平均在减少或完整概要文件中获取的多液相色谱(LC)/ MS的频谱平均来开发并应用了多路复用的TD / MD MS工作流程使用横梁傅立叶变换质谱仪(FTMS)。我们首先将工作流程用肌蛋白作为参考蛋白基准,然后验证其用于分析治疗mAb,曲妥珠单抗的50kDa f(ab)亚基。获得的结果在利用MATHS光谱平均利用多个LC-MS / MS为TD / MD蛋白质分析运行的产品离子的增加的噪声噪声比来证实设想的益处。基于orbitrap FTMS中的瞬态平均值,将工作流性能与早期引入的多路复用TD / MD MS工作流进行比较。对于后者,我们还报告了启用吸收模式FT处理,并证明其对增强的FT(EFT)光谱表示的可比性。

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