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42


An Aged/Autoimmune B-cell Program Defines the Early Transformation of Extranodal Lymphomas [Editorial]

Venturutti, Leandro; Rivas, Martin A; Pelzer, Benedikt W; Flümann, Ruth; Hansen, Julia; Karagiannidis, Ioannis; Xia, Min; McNally, Dylan R; Isshiki, Yusuke; Lytle, Andrew; Teater, Matt; Chin, Christopher R; Meydan, Cem; Knittel, Gero; Ricker, Edd; Mason, Christopher E; Ye, Xiaofei; Pan-Hammarström, Qiang; Steidl, Christian; Scott, David W; Reinhardt, Hans Christian; Pernis, Alessandra B; Béguelin, Wendy; Melnick, Ari M
UNLABELLED:A third of patients with diffuse large B-cell lymphoma (DLBCL) present with extranodal dissemination, which is associated with inferior clinical outcomes. MYD88L265P is a hallmark extranodal DLBCL mutation that supports lymphoma proliferation. Yet extranodal lymphomagenesis and the role of MYD88L265P in transformation remain mostly unknown. Here, we show that B cells expressing Myd88L252P (MYD88L265P murine equivalent) activate, proliferate, and differentiate with minimal T-cell costimulation. Additionally, Myd88L252P skewed B cells toward memory fate. Unexpectedly, the transcriptional and phenotypic profiles of B cells expressing Myd88L252P, or other extranodal lymphoma founder mutations, resembled those of CD11c+T-BET+ aged/autoimmune memory B cells (AiBC). AiBC-like cells progressively accumulated in animals prone to develop lymphomas, and ablation of T-BET, the AiBC master regulator, stripped mouse and human mutant B cells of their competitive fitness. By identifying a phenotypically defined prospective lymphoma precursor population and its dependencies, our findings pave the way for the early detection of premalignant states and targeted prophylactic interventions in high-risk patients. SIGNIFICANCE:Extranodal lymphomas feature a very poor prognosis. The identification of phenotypically distinguishable prospective precursor cells represents a milestone in the pursuit of earlier diagnosis, patient stratification, and prophylactic interventions. Conceptually, we found that extranodal lymphomas and autoimmune disorders harness overlapping pathogenic trajectories, suggesting these B-cell disorders develop and evolve within a spectrum. See related commentary by Leveille et al. (Blood Cancer Discov 2023;4:8-11). This article is highlighted in the In This Issue feature, p. 1.
PMID: 36264161
ISSN: 2159-8290
CID: 5946932

Intravital three-photon microscopy allows visualization over the entire depth of mouse lymph nodes

Choe, Kibaek; Hontani, Yusaku; Wang, Tianyu; Hebert, Eric; Ouzounov, Dimitre G; Lai, Kristine; Singh, Ankur; Béguelin, Wendy; Melnick, Ari M; Xu, Chris
Intravital confocal microscopy and two-photon microscopy are powerful tools to explore the dynamic behavior of immune cells in mouse lymph nodes (LNs), with penetration depth of ~100 and ~300 μm, respectively. Here, we used intravital three-photon microscopy to visualize the popliteal LN through its entire depth (600-900 μm). We determined the laser average power and pulse energy that caused measurable perturbation in lymphocyte migration. Long-wavelength three-photon imaging within permissible parameters was able to image the entire LN vasculature in vivo and measure CD8+ T cells and CD4+ T cell motility in the T cell zone over the entire depth of the LN. We observed that the motility of naive CD4+ T cells in the T cell zone during lipopolysaccharide-induced inflammation was dependent on depth. As such, intravital three-photon microscopy had the potential to examine immune cell behavior in the deeper regions of the LN in vivo.
PMCID:9210714
PMID: 35087231
ISSN: 1529-2916
CID: 5946902

Tumor-associated antigen PRAME exhibits dualistic functions that are targetable in diffuse large B cell lymphoma

Takata, Katsuyoshi; Chong, Lauren C; Ennishi, Daisuke; Aoki, Tomohiro; Li, Michael Yu; Thakur, Avinash; Healy, Shannon; Viganò, Elena; Dao, Tao; Kwon, Daniel; Duns, Gerben; Nielsen, Julie S; Ben-Neriah, Susana; Tse, Ethan; Hung, Stacy S; Boyle, Merrill; Mun, Sung Soo; Bourne, Christopher M; Woolcock, Bruce; Telenius, Adèle; Kishida, Makoto; Rai, Shinya; Zhang, Allen W; Bashashati, Ali; Saberi, Saeed; D'Antonio, Gianluca; Nelson, Brad H; Shah, Sohrab P; Hoodless, Pamela A; Melnick, Ari M; Gascoyne, Randy D; Connors, Joseph M; Scheinberg, David A; Béguelin, Wendy; Scott, David W; Steidl, Christian
PRAME is a prominent member of the cancer testis antigen family of proteins, which triggers autologous T cell-mediated immune responses. Integrative genomic analysis in diffuse large B cell lymphoma (DLBCL) uncovered recurrent and highly focal deletions of 22q11.22, including the PRAME gene, which were associated with poor outcome. PRAME-deleted tumors showed cytotoxic T cell immune escape and were associated with cold tumor microenvironments. In addition, PRAME downmodulation was strongly associated with somatic EZH2 Y641 mutations in DLBCL. In turn, PRC2-regulated genes were repressed in isogenic PRAME-KO lymphoma cell lines, and PRAME was found to directly interact with EZH2 as a negative regulator. EZH2 inhibition with EPZ-6438 abrogated these extrinsic and intrinsic effects, leading to PRAME expression and microenvironment restoration in vivo. Our data highlight multiple functions of PRAME during lymphomagenesis and provide a preclinical rationale for synergistic therapies combining epigenetic reprogramming with PRAME-targeted therapies.
PMID: 35380993
ISSN: 1558-8238
CID: 5946922

Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms

DiNapoli, Sara E; Martinez-McFaline, Raúl; Shen, Hao; Doane, Ashley S; Perez, Alexendar R; Verma, Akanksha; Simon, Amanda; Nelson, Isabel; Balgobin, Courtney A; Bourque, Caitlin T; Yao, Jun; Raman, Renuka; Béguelin, Wendy; Zippin, Jonathan H; Elemento, Olivier; Melnick, Ari M; Houvras, Yariv
Perturbations to the epigenome are known drivers of tumorigenesis. In melanoma, alterations in histone methyltransferases that catalyze methylation at histone 3 lysine 9 and histone 3 lysine 27-two sites of critical post-translational modification-have been reported. To study the function of these methyltransferases in melanoma, we engineered melanocytes to express histone 3 lysine-to-methionine mutations at lysine 9 and lysine 27, which are known to inhibit the activity of histone methyltransferases, in a zebrafish melanoma model. Using this system, we found that loss of histone 3 lysine 9 methylation dramatically suppressed melanoma formation and that inhibition of histone 3 lysine 9 methyltransferases in human melanoma cells increased innate immune response signatures. In contrast, loss of histone 3 lysine 27 methylation significantly accelerated melanoma formation. We identified FOXD1 as a top target of PRC2 that is silenced in melanocytes and found that aberrant overexpression of FOXD1 accelerated melanoma onset. Collectively, these data demonstrate how histone 3 lysine-to-methionine mutations can be used to uncover critical roles for methyltransferases.
PMCID:8866878
PMID: 35223844
ISSN: 2296-634x
CID: 5946912

Loss of function mutations of BCOR in classical Hodgkin lymphoma

Giefing, Maciej; Gearhart, Micah D; Schneider, Markus; Overbeck, Birte; Klapper, Wolfram; Hartmann, Sylvia; Ustaszewski, Adam; Weniger, Marc A; Wiehle, Laura; Hansmann, Martin-Leo; Melnick, Ari; Béguelin, Wendy; Sundström, Christer; Küppers, Ralf; Bardwell, Vivian J; Siebert, Reiner
BCOR is a component of a variant Polycomb repressive complex 1 (PRC1.1). PRC1 and PRC2 complexes together constitute a major gene regulatory system critical for appropriate cellular differentiation. The gene is upregulated in germinal center (GC) B cells and mutated in a number of hematologic malignancies. We report BCOR inactivating alterations in 4/7 classic Hodgkin lymphoma (cHL) cell lines, subclonal somatic mutations in Hodgkin and Reed-Sternberg (HRS) cells of 4/10 cHL cases, and deletions in HRS cells of 7/17 primary cHL cases. In mice, conditional loss of Bcor driven by AID-Cre in GC B cells resulted in gene expression changes of 46 genes (>2-fold) including upregulated Lef1 that encodes a transcription factor responsible for establishing T-cell identity and Il9r (interleukin-9 receptor), an important member of the cytokine network in cHL. Our findings suggest a role for BCOR loss in cHL pathogenesis and GC-B cell homeostasis.
PMID: 34957890
ISSN: 1029-2403
CID: 5946892

An Autochthonous Mouse Model of Myd88- and BCL2-Driven Diffuse Large B-cell Lymphoma Reveals Actionable Molecular Vulnerabilities

Flümann, Ruth; Rehkämper, Tim; Nieper, Pascal; Pfeiffer, Pauline; Holzem, Alessandra; Klein, Sebastian; Bhatia, Sanil; Kochanek, Moritz; Kisis, Ilmars; Pelzer, Benedikt W; Ahlert, Heinz; Hauer, Julia; da Palma Guerreiro, Alexandra; Ryan, Jeremy A; Reimann, Maurice; Riabinska, Arina; Wiederstein, Janica; Krüger, Marcus; Deckert, Martina; Altmüller, Janine; Klatt, Andreas R; Frenzel, Lukas P; Pasqualucci, Laura; Béguelin, Wendy; Melnick, Ari M; Sander, Sandrine; Montesinos-Rongen, Manuel; Brunn, Anna; Lohneis, Philipp; Büttner, Reinhard; Kashkar, Hamid; Borkhardt, Arndt; Letai, Anthony; Persigehl, Thorsten; Peifer, Martin; Schmitt, Clemens A; Reinhardt, Hans Christian; Knittel, Gero
Based on gene expression profiles, diffuse large B cell lymphoma (DLBCL) is sub-divided into germinal center B cell-like (GCB) and activated B cell-like (ABC) DLBCL. Two of the most common genomic aberrations in ABC-DLBCL are mutations in MYD88, as well as BCL2 copy number gains. Here, we employ immune phenotyping, RNA-Seq and whole exome sequencing to characterize a Myd88 and Bcl2-driven mouse model of ABC-DLBCL. We show that this model resembles features of human ABC-DLBCL. We further demonstrate an actionable dependence of our murine ABC-DLBCL model on BCL2. This BCL2 dependence was also detectable in human ABC-DLBCL cell lines. Moreover, human ABC-DLBCLs displayed increased PD-L1 expression, compared to GCB-DLBCL. In vivo experiments in our ABC-DLBCL model showed that combined venetoclax and RMP1-14 significantly increased the overall survival of lymphoma bearing animals, indicating that this combination may be a viable option for selected human ABC-DLBCL cases harboring MYD88 and BCL2 aberrations.
PMID: 33447829
ISSN: 2643-3249
CID: 5946872

TBL1XR1 Mutations Drive Extranodal Lymphoma by Inducing a Pro-tumorigenic Memory Fate

Venturutti, Leandro; Teater, Matt; Zhai, Andrew; Chadburn, Amy; Babiker, Leena; Kim, Daleum; Béguelin, Wendy; Lee, Tak C; Kim, Youngjun; Chin, Christopher R; Yewdell, William T; Raught, Brian; Phillip, Jude M; Jiang, Yanwen; Staudt, Louis M; Green, Michael R; Chaudhuri, Jayanta; Elemento, Olivier; Farinha, Pedro; Weng, Andrew P; Nissen, Michael D; Steidl, Christian; Morin, Ryan D; Scott, David W; Privé, Gilbert G; Melnick, Ari M
The most aggressive B cell lymphomas frequently manifest extranodal distribution and carry somatic mutations in the poorly characterized gene TBL1XR1. Here, we show that TBL1XR1 mutations skew the humoral immune response toward generating abnormal immature memory B cells (MB), while impairing plasma cell differentiation. At the molecular level, TBL1XR1 mutants co-opt SMRT/HDAC3 repressor complexes toward binding the MB cell transcription factor (TF) BACH2 at the expense of the germinal center (GC) TF BCL6, leading to pre-memory transcriptional reprogramming and cell-fate bias. Upon antigen recall, TBL1XR1 mutant MB cells fail to differentiate into plasma cells and instead preferentially reenter new GC reactions, providing evidence for a cyclic reentry lymphomagenesis mechanism. Ultimately, TBL1XR1 alterations lead to a striking extranodal immunoblastic lymphoma phenotype that mimics the human disease. Both human and murine lymphomas feature expanded MB-like cell populations, consistent with a MB-cell origin and delineating an unforeseen pathway for malignant transformation of the immune system.
PMCID:7384961
PMID: 32619424
ISSN: 1097-4172
CID: 5946862

Epigenetic Mechanisms in Leukemias and Lymphomas

Duy, Cihangir; Béguelin, Wendy; Melnick, Ari
Although we are just beginning to understand the mechanisms that regulate the epigenome, aberrant epigenetic programming has already emerged as a hallmark of hematologic malignancies including acute myeloid leukemia (AML) and B-cell lymphomas. Although these diseases arise from the hematopoietic system, the epigenetic mechanisms that drive these malignancies are quite different. Yet, in all of these tumors, somatic mutations in transcription factors and epigenetic modifiers are the most commonly mutated set of genes and result in multilayered disruption of the epigenome. Myeloid and lymphoid neoplasms generally manifest epigenetic allele diversity, which contributes to tumor cell population fitness regardless of the underlying genetics. Epigenetic therapies are emerging as one of the most promising new approaches for these patients. However, effective targeting of the epigenome must consider the need to restore the various layers of epigenetic marks, appropriate biological end points, and specificity of therapeutic agents to truly realize the potential of this modality.
PMCID:7706582
PMID: 32014848
ISSN: 2157-1422
CID: 5946842

Mutant EZH2 Induces a Pre-malignant Lymphoma Niche by Reprogramming the Immune Response

Béguelin, Wendy; Teater, Matt; Meydan, Cem; Hoehn, Kenneth B; Phillip, Jude M; Soshnev, Alexey A; Venturutti, Leandro; Rivas, Martín A; Calvo-Fernández, María T; Gutierrez, Johana; Camarillo, Jeannie M; Takata, Katsuyoshi; Tarte, Karin; Kelleher, Neil L; Steidl, Christian; Mason, Christopher E; Elemento, Olivier; Allis, C David; Kleinstein, Steven H; Melnick, Ari M
Follicular lymphomas (FLs) are slow-growing, indolent tumors containing extensive follicular dendritic cell (FDC) networks and recurrent EZH2 gain-of-function mutations. Paradoxically, FLs originate from highly proliferative germinal center (GC) B cells with proliferation strictly dependent on interactions with T follicular helper cells. Herein, we show that EZH2 mutations initiate FL by attenuating GC B cell requirement for T cell help and driving slow expansion of GC centrocytes that become enmeshed with and dependent on FDCs. By impairing T cell help, mutant EZH2 prevents induction of proliferative MYC programs. Thus, EZH2 mutation fosters malignant transformation by epigenetically reprograming B cells to form an aberrant immunological niche that reflects characteristic features of human FLs, explaining how indolent tumors arise from GC B cells.
PMID: 32396861
ISSN: 1878-3686
CID: 5946852

Ex vivo synthetic immune tissues with T cell signals for differentiating antigen-specific, high affinity germinal center B cells

Purwada, Alberto; Shah, Shivem B; Béguelin, Wendy; August, Avery; Melnick, Ari M; Singh, Ankur
Most antigen discovery and vaccine development aimed at driving functional B cell responses rely on mouse immunizations studies. To date, there is no 3D ex vivo immune tissues, which are capable of driving antigen-specific B cell responses to rapidly determine the humoral immunogenicity of antigens, understand the role of extracellular matrix in humoral immunity, and generate high affinity antibody responses. This can be attributed to the complexity of B cell differentiation and affinity maturation process in the germinal center (GC) reaction, which makes these highly specialized cells susceptible to rapid apoptosis ex vivo. We have previously reported immune tissues that show ex vivo GC-like response, however in a non-antigen specific manner. Here, we report a maleimide (MAL)-functionalized polyethylene glycol (PEG)-based designer immune tissues that modulate B cell differentiation and enriches antigen-specific GC B cells in the presence of T-cell like signals. With the 3D synthetic immune tissue platform, we assessed various hydrogel design parameters to control ex vivo GC reaction. Using an Ezh2fl/fl Cγ1-cre transgenic mouse model, we demonstrated ex vivo IgG1 antibody class switching. Using immune tissues developed from a B1-8hi mutant mouse that represents a recombined antibody variable region derived from a 4-hydroxy-3-nitrophenylacetyl (NP) hapten binding antibody (B1-8), we demonstrate antigen specificity and selective enrichment of antigen-specific B cells with high affinity at both cell surface and secreted levels in integrin ligand-dependent manner. The ex vivo antigen-specific platform technology offers use in scientific understanding of immunobiology, matrix immunology, and in biotechnology applications, ranging from the antigen testing, vaccine development, and generation of antibodies against diseases.
PMCID:6355359
PMID: 30041943
ISSN: 1878-5905
CID: 5946812