Scientific publications

Genetically driven immune microenvironment states associate with therapeutic responses in MYD88 mutant lymphomas

Apr 20, 2026 | Magazine: Molecular Cancer

Jon Celay 1, Miriam Recalde 1, Maria V Revuelta 2, Marta Larrayoz 1, Carmen Vicente 1, Teresa Lozano 3, Carmen Gil 1, Jennifer R Chapman 4, Marcos Garcia-Lacarte 5, Carmen Gonzalez 1, Beñat Ariceta 1, Sara Rodriguez 1, Marta Lasa 1, Maria J Garcia-Barchino 1, Vicente Fresquet 1, Maddalen Jimenez 1, Sonia Sanz 1, Ming-Qing Du 6, Giovanna Roncador 7, Zaira Vega 8, Antonio Sacco 9, Aldo Roccaro 9, Gero Knittel 10, Hans Christian Reinhardt 10, Rocco Piazza 11, Sylvia Herter 12, Rebecca Goodhew 13, Jonathan Caron 14, Damien Roos-Weil 14, Jesus San Miguel 1, Miguel Canales 1, Daniel J Hodson 13, Izidore S Lossos 15, Juan J Lasarte 3, Sergio Roa 5, Felipe Prosper 1, Bruno Paiva 1, Leandro Cerchietti 16 17, Jose A Martinez-Climent 18 19


Abstract

The interaction between lymphoma cells and immune microenvironment cells and the impact of this functional interplay on therapeutic responses remain largely unexplored. Here, we utilized murine models with oncogenically active MYD88 and additional genetic lesions co-triggered at selected B cell stages to generate human-like lymphomas harboring the MYD88L265P mutation. Lymphomas exhibited behaviors ranging from clinically indolent small-cell tumors to aggressive diffuse large B-cell lymphoma (DLBCL). Genetically diverse lymphoma cells employ distinct immune evasion mechanisms that shape unique lymphoma microenvironment (LME) states. In this setting, clonally expanded T-cells function as a double-edged sword, either sustaining indolent lymphoma cell survival or promoting antitumor responses in DLBCL. Consequently, the efficacy of standard-of-care and novel immunotherapies was determined using individual T-cell features. Furthermore, the experimental targeting of newly identified immune mechanisms has improved therapeutic responses in vivo. Our results elucidate that genetically driven LME landscapes influence therapeutic outcomes across distinct lymphoma subtypes, providing proof-of-concept for personalized treatment based on immune LME information.

CITA DEL ARTÍCULO Mol Cancer. 2026 Apr 20;25(1):201. doi: 10.1186/s12943-026-02646-1.

Our authors

Dr. Miriam Recalde Domíguez
Dr. Marta Larráyoz Ilundáin
Investigadora adscrita al proyecto del Grupo de Patología Mieloide del Cima Universidad de Navarra
Dr. Carmen Vicente Vázquez
Dr. Carmen Gil Puig
Beñat Ariceta Ganuza
María José García Barchino
Research Technician Lymphomas Research Group
Vicente José Fresquet Arnau
Laboratory technician Lymphomas Research Group
Dr. Maddalen Jiménez Andrés
Sonia Sanz Martínez
Laboratory technician Lymphomas Research Group