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通过电喷雾质谱法对化学修饰蛋白质进行快速表征。

Rapid characterization of chemically-modified proteins by electrospray mass spectrometry.

作者信息

Bennett K L, Smith S V, Lambrecht R M, Truscott R J, Sheil M M

机构信息

Department of Chemistry, University of Wollongong, New South Wales, Australia.

出版信息

Bioconjug Chem. 1996 Jan-Feb;7(1):16-22. doi: 10.1021/bc950064c.

Abstract

Electrospray mass spectrometry (ESI-MS) has been used to examine monoclonal antibodies (MAbs), antibody fragments (Fab and Fc), modified fragments, and a range of other chemically-modified proteins as part of a study aimed at establishing ESI-MS as a method for the characterization of radioimmunoconjugates. This has been approached from two angles. Firstly, ESI-MS of complexes formed between chelators and other small molecules conjugated to hen egg white lysozyme (HEL) (14 kDa) demonstrate the considerable advantages of this powerful new technique compared with existing methods for the characterization of chemically-conjugated proteins. Molecular weights can be determined rapidly to within 0.01-0.05% and with good sensitivity (10-50 pmol total), thus providing specific structural information and opening the way for ESI-MS to be applied widely for the structural characterization of radioimmunoconjugates. Secondly, the conditions for ESI-MS of intact antibodies and antibody fragments have been examined in detail, and we have shown that the addition of up to 10 biotin molecules to the 50 kDa Fab fragment can be easily detected in ESI mass spectra, thus demonstrating the potential for the characterization of modified MAb fragments and metabolites. Finally, the strengths and limitations of ESI-MS of intact antibodies are discussed, and these results indicate that it may only be possible to detect average shifts in the mass of intact antibodies following modification.

摘要

作为将电喷雾质谱(ESI-MS)确立为放射性免疫缀合物表征方法的研究的一部分,该技术已被用于检测单克隆抗体(MAb)、抗体片段(Fab和Fc)、修饰片段以及一系列其他化学修饰的蛋白质。这一研究从两个角度展开。首先,与现有化学缀合蛋白质表征方法相比,螯合剂与其他小分子与鸡蛋清溶菌酶(HEL,14 kDa)缀合形成的复合物的ESI-MS展示了这种强大新技术的显著优势。分子量能够快速测定,误差在0.01 - 0.05%以内,且灵敏度良好(总含量为10 - 50 pmol),从而提供特定的结构信息,并为ESI-MS广泛应用于放射性免疫缀合物的结构表征开辟了道路。其次,对完整抗体和抗体片段的ESI-MS条件进行了详细研究,并且我们已经表明,在ESI质谱图中可以轻松检测到向50 kDa Fab片段添加多达10个生物素分子的情况,这证明了表征修饰的单克隆抗体片段和代谢物的潜力。最后,讨论了完整抗体ESI-MS的优势和局限性,这些结果表明,修饰后可能只能检测到完整抗体质量的平均变化。

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