Abstract

Chronic lymphocytic leukemia (CLL) can be divided into prognostically distinct subsets with stereotyped or non-stereotyped, mutated or unmutated B cell receptors (BCRs). Individual subsets vary in antigen specificity and origin, but the impact of antigenic pressure on the CLL BCR repertoire remains unknown. Here, we employed IgH.TEμ mice that spontaneously develop CLL, expressing mostly unmutated BCRs of which ~35% harbor VH11-2/Vκ14-126 and recognize phosphatidylcholine. Proportions of VH11/Vκ14-expressing CLL were increased in the absence of functional germinal centers in IgH.TEμ mice deficient for CD40L or activation-induced cytidine deaminase. Conversely, in vivo T cell-dependent immunization decreased the proportions of VH11/Vκ14-expressing CLL. Furthermore, CLL onset was accelerated by enhanced BCR signaling in Siglec-G−/− mice or in mice expressing constitutively active Bruton's tyrosine kinase. Transcriptional profiling revealed that VH11 and non-VH11 CLL differed in the upregulation of specific pathways implicated in cell signaling and metabolism. Interestingly, principal component analyses using the 148 differentially expressed genes revealed that VH11 and non-VH11 CLL clustered with BCR-stimulated and anti-CD40-stimulated B cells, respectively. We identified an expression signature consisting of 13 genes that were differentially expressed in a larger panel of T cell-dependent non-VH11 CLL compared with T cell-independent VH11/Vκ14 or mutated IgH.TEμ CLL. Parallel differences in the expression of these 13 signature genes were observed between heterogeneous and stereotypic human unmutated CLL. Our findings provide evidence for two distinct unmutated CLL subsets with a specific transcriptional signature: one is T cell-independent and B-1 cell-derived while the other arises upon antigen stimulation in the context of T-cell help.

Highlights

  • Chronic lymphocytic leukemia (CLL) is the most common adult leukemia characterized by an accumulation of monoclonal CD5+ mature B cells with low surface immunoglobulin (Ig) expression in peripheral blood [1].CLL is a clinically and molecularly heterogeneous disease whereby progression is influenced by many factors

  • We performed sequencing analyses of Ig heavy (Igh) and light (Igl) chain transcripts and found that a substantial proportion (∼36%) of CLL in IgH.TEμ mice expressed stereotyped B cell receptors (BCRs) consisting of the VH11-2 Igh chain, with similar Igh CDR3 length and amino acid sequences, and the Vκ14-126 Igl chain [22, 23] (Supplementary Table 1, Figures 1A,B)

  • We investigated the role of antigenic pressure and BCR signaling thresholds on clonal selection of CLL cells in the IgH.TEμ CLL mouse model

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Summary

Introduction

CLL is a clinically and molecularly heterogeneous disease whereby progression is influenced by many factors. CLL can be grouped based on IGHV mutational status [3, 4]. Significant (>2%) somatic hypermutation (SHM) is observed in patients with mutated CLL (M-CLL), who often develop indolent disease. The SHM status provides a robust and stable prognostic marker, independently of clinical stage and other markers [5]. It reinforces the role of selection by self-antigens or exogenous antigens in CLL pathogenesis. CLL cells show constitutive activation of several BCR downstream kinases, increasing leukemic cell survival in vitro [6]. Small molecule inhibitors of BCR–associated kinases including Bruton’s tyrosine kinase (Btk) have shown impressive clinical anti-tumor activity [7, 8]

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