The Plasma Cell Signature in Autoimmune Disease
ARTHRITIS & RHEUMATOLOGY
Authors: Streicher, Katie; Morehouse, Christopher A.; Groves, Christopher J.; Rajan, Bhargavi; Pilataxi, Fernanda; Lehmann, Kim P.; Brohawn, Philip Z.; Higgs, Brandon W.; McKeever, Kathleen; Greenberg, Steven A.; Fiorentino, David; Richman, Laura K.; Jallal, Bahija; Herbst, Ronald; Yao, Yihong; Ranade, Koustubh
Abstract
Objective. Production of pathogenic autoantibodies by self-reactive plasma cells (PCs) is a hallmark of autoimmune diseases. We undertook this study to investigate the prevalence of PCs and their relationship to known pathogenic pathways to increase our understanding of the role of PCs in disease progression and treatment response. Methods. We developed a sensitive gene expression-based method to overcome the challenges of measuring PCs using flow cytometry. Whole-genome microarray analysis of sorted cellular fractions identified a panel of genes, IGHA1, IGJ, IGKC, IGKV4-1, and TNFRSF17, expressed predominantly in PCs. The sensitivity of the PC signature score created from the combined expression levels of these genes was assessed through ex vivo experiments with sorted cells. This PC gene expression signature was used for monitoring changes in PC levels following anti-CD19 therapy, for evaluating the relationship between PCs and other autoimmune disease-related genes, and for estimating PC levels in affected blood and tissue from patients with multiple autoimmune diseases. Results. The PC signature was highly sensitive and capable of detecting a change in as few as 360 PCs. The PC signature was reduced more than 90% in scleroderma patients following anti-CD19 treatment, and this reduction was highly correlated (r = 0.80) with inhibition of collagen gene expression. Evaluation of multiple autoimmune diseases revealed that 30-35% of lupus and rheumatoid arthritis patients had increased levels of PCs. Conclusion. This newly developed PC signature provides a robust and accurate method of measuring PC levels in the clinic. Our results highlight subsets of patients across multiple autoimmune diseases who may benefit from PC-depleting therapy.
Serum B-cell maturation antigen is elevated in multiple myeloma and correlates with disease status and survival
BRITISH JOURNAL OF HAEMATOLOGY
Authors: Sanchez, Eric; Li, Mingjie; Kitto, Alex; Li, Jennifer; Wang, Cathy S.; Kirk, Dylan T.; Yellin, Ori; Nichols, Cydney M.; Dreyer, Marissa P.; Ahles, Cameryn P.; Robinson, Austin; Madden, Erik; Waterman, Gabriel N.; Swift, Regina A.; Bonavida, Benjamin; Boccia, Ralph; Vescio, Robert A.; Crowley, John; Chen, Hai-ming; Berenson, James R.
Abstract
Although TNFRSF17 (also designated as B-cell maturation antigen (BCMA)) is expressed on tumour cells in B-cell malignancies, it has not been found in serum. The present study found that BCMA concentrations were higher in the supernatants of cultured bone marrow mononuclear cells from multiple myeloma (MM) patients than in healthy subjects. Serum BCMA levels were measured in samples from MM patients (n = 209), monoclonal gammopathy of undetermined significance (MGUS) individuals (n = 23) and age-matched controls (n = 40). BCMA was detected in the serum of untreated MM patients (n = 50) and levels were higher than in MGUS patients (P = 0.0157) and healthy subjects (P < 0.0001). Serum BCMA levels were higher among patients with progressive disease (n = 80) compared to those with responsive disease (n = 79; P = 0.0038). Among all MM patients, overall survival was shorter among patients whose serum BCMA levels were above the median (P = 0.001). We also demonstrated that sera from mice with human MM xenografts contained human BCMA, and levels correlated with the change in tumour volume in response to melphalan or cyclophosphamide with bortezomib. These results suggest that serum BCMA levels may be a new biomarker for monitoring disease status and overall survival of MM patients.