Single‐cell analysis of MYD88L265P and MYD88WT Waldenström macroglobulinemia patients

Author:

Bagratuni Tina1ORCID,Aktypi Foteini1,Theologi Ourania1,Sakkou Maria234,Verrou Kleio Maria25,Mavrianou‐Koutsoukou Nefeli1,Patseas Dimitrios1,Liacos Christine1,Skourti Stamatia1,Papadimou Alexandra1,Taouxi Kostantina1,Theodorakakou Foteini1,Kollias Georgios234,Sfikakis Petros25,Terpos Evangelos1,Dimopoulos Meletios A.1,Kastritis Efstathios1

Affiliation:

1. Department of Clinical Therapeutics, School of Medicine National and Kapodistrian University of Athens Athens Greece

2. School of Medicine, Center of New Biotechnologies & Precision Medicine National and Kapodistrian University of Athens Athens Greece

3. Department of Physiology National and Kapodistrian University of Athens Medical School Athens Greece

4. Biomedical Sciences Research Center (BSRC) ‘Alexander Fleming’ Institute for Bioinnovation Vari Greece

5. Joint Rheumatology Program National and Kapodistrian University of Athens Medical School Athens Greece

Abstract

AbstractWaldenström macroglobulinemia (WM) is characterized by the expansion of clonal lymphoplasmacytic cells; the MYD88L265P somatic mutation is found in >90% of patients, but malignant B cells may still display intra‐clonal heterogeneity. To assess clonal heterogeneity in WM, we generated and performed single‐cell RNA sequencing of CD19+ sorted cells from five patients with MYD88L265P and two patients with MYD88WT genotype as well as two healthy donors. We identified distinct transcriptional patterns in the clonal subpopulations not only between the two genetically distinct WM subgroups but also among MYD88L265P patients, which affected the B cell composition in the different subgroups. Comparison of clonal and normal/polyclonal B cells within each patient sample enabled the identification of patient‐specific transcriptional changes. We identified gene signatures active in a subset of MYD88L265P patients, while other signatures were active in MYD88WT patients. Finally, gene expression analysis showed common transcriptional features between patients compared to the healthy control but also differentially expressed genes between MYD88L265P and MYD88WT patients involved in distinct pathways, including NFκΒ, BCL2, and BTK. Overall, our data highlight the intra‐tumor clonal heterogeneity in WM with potential prognostic and therapeutic implications.

Publisher

Wiley

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