Deciphering the Exact Sequence of Endogenous Soluble B Cell Maturation Antigen and Unbiased Quantitation in Multiple Myeloma Patient Samples by LC-MS

Author:

Shen Xiaomeng1ORCID,Dong Xue1,Shi Jianxia1,Chen Hao2,Lan Yun3,Lim Ai Ching2,Xie Fang1,Ang Agnes3,Kratzer Andrea4,Rock Dan A1,Rock Brooke M1

Affiliation:

1. Pharmacokinetics and Drug Metabolism, Amgen Research, Amgen Inc. , South San Francisco, CA , United States

2. Protein Sciences, Amgen Research, Amgen Inc. , South San Francisco, CA , United States

3. Clinical Biomarkers, Amgen Research, Amgen Inc. , Thousand Oaks, CA , United States

4. Translational Safety and Bioanalytical Sciences, Amgen Research, Amgen Inc. , München , Germany

Abstract

Abstract Background B-cell maturation antigen is a pivotal therapeutic target for multiple myeloma (MM). Membrane-bound BCMA can be cleaved by γ-secretase and shed as soluble BCMA (sBCMA). sBCMA can act as a neutralizing sink to compete with drug, as well as serve as a diagnostic/prognostic biomarker for MM. Antibody-capture based methods, such as enzyme-linked immunosorbent assay (ELISA) and immunoaffinity-liquid chromatography-multiple reaction monitoring (IA-LC-MRM), have been reported and well adopted to measure sBCMA in clinical samples. However, both methods are biased by capturing antibodies. Methods We have used various LC-MS workflows to characterize and quantify endogenous sBCMA in MM patient samples, including bottom-up peptide mapping, intact analysis, IA-based, and reagent-free (RF)-LC-MRM quantitation. Results We have confirmed that sBCMA contains a variable N-terminus and a C-terminus that extends to the transmembrane domain, ending at amino acid 61. Leveraging an in-house synthesized G-1-61 sBCMA recombinant standard, we developed a RF-LC-MRM method for unbiased sBCMA quantitation in MM patient samples. By comparing the results from RF-LC-MRM with ELISA and IA-LC-MRM, we demonstrated that RF-LC-MRM measures a more complete pool of endogenous sBCMA compared to the antibody-based methods. Conclusions This work fills the knowledge gap of the exact sequence of endogenous sBCMA for the first time, which differs from the current commercially available standard. Additionally, this work highlights the necessity of identifying the actual sequence of an endogenous soluble target such as sBCMA, both for bioanalytical purposes and to underpin pharmacodynamic measurements.

Publisher

Oxford University Press (OUP)

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