Using Mass Spectrometry to Monitor Monoclonal Immunoglobulins in Patients with a Monoclonal Gammopathy

免疫球蛋白轻链 同型 化学 多克隆抗体 血清蛋白电泳 分子质量 分子生物学 单克隆抗体 凝胶电泳 不确定意义的单克隆抗体病 单克隆 肽序列 质谱法 抗体 色谱法 生物化学 生物 遗传学 基因
作者
David R. Barnidge,Surendra Dasari,Chad M. Botz,Danelle H. Murray,Melissa R. Snyder,Jerry A. Katzmann,Angela Dispenzieri,David Murray
出处
期刊:Journal of Proteome Research [American Chemical Society]
卷期号:13 (3): 1419-1427 被引量:117
标识
DOI:10.1021/pr400985k
摘要

A monoclonal gammopathy is defined by the detection a monoclonal immunoglobulin (M-protein). In clinical practice, the M-protein is detected by protein gel electrophoresis (PEL) and immunofixation electrophoresis (IFE). We theorized that molecular mass could be used instead of electrophoretic patterns to identify and quantify the M-protein because each light and heavy chain has a unique amino acid sequence and thus a unique molecular mass whose increased concentration could be distinguished from the normal polyclonal background. In addition, we surmised that top-down MS could be used to isotype the M-protein because each immunoglobulin has a constant region with an amino acid sequence unique to each isotype. Our method first enriches serum for immunoglobulins followed by reduction using DTT to separate light chains from heavy chains and then by microflow LC-ESI-Q-TOF MS. The multiply charged light and heavy chain ions are converted to their molecular masses, and reconstructed peak area calculations for light chains are used for quantification. Using this method, we demonstrate how the light chain portion of an M-protein can be monitored by molecular mass, and we also show that in sequential samples from a patient with multiple myeloma the light chain portion of the M-protein was detected in all samples, even those negative by PEL, IFE, and quantitative FLC. We also present top-down MS isotyping of M-protein light chains using a unique isotype-specific fragmentation pattern allowing for quantification and isotype identification in the same run. Our results show that microLC-ESI-Q-TOF MS provides superior sensitivity and specificity compared to conventional methods and shows promise as a viable method of detecting and isotyping an M-protein.
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