PD-1/PD-L1 immune checkpoint and p53 loss facilitate tumor progression in activated B-cell diffuse large B-cell lymphomas.
Marién PascualMaría Mena-VarasEloy Francisco RoblesMaria-Jose Garcia-BarchinoCarlos PanizoSandra Hervás-StubbsDiego AlignaniAinara SagardoyJose Ignacio Martinez-FerrandisKaren L BuntingStephen MeierXavier SagaertDavide BagnaraElisabeth GuruceagaOscar BlancoJon CelayAlvaro Martínez-BaztanNoelia CasaresJuan Jose LasarteThomas MacCarthyAri M MelnickJose-Angel Martinez-ClimentSergio RoaPublished in: Blood (2019)
Refractory or relapsed diffuse large B-cell lymphoma (DLBCL) often associates with the activated B-cell-like (ABC) subtype and genetic alterations that drive constitutive NF-κB activation and impair B-cell terminal differentiation. Here, we show that DNA damage response by p53 is a central mechanism suppressing the pathogenic cooperation of IKK2ca-enforced canonical NF-κB and impaired differentiation resulting from Blimp1 loss in ABC-DLBCL lymphomagenesis. We provide evidences that the interplay between these genetic alterations and the tumor microenvironment select for additional molecular addictions that promote lymphoma progression, including aberrant coexpression of FOXP1 and the B-cell mutagenic enzyme activation-induced deaminase, and immune evasion through major histocompatibility complex class II downregulation, PD-L1 upregulation, and T-cell exhaustion. Consistently, PD-1 blockade cooperated with anti-CD20-mediated B-cell cytotoxicity, promoting extended T-cell reactivation and antitumor specificity that improved long-term overall survival in mice. Our data support a pathogenic cooperation among NF-κB-driven prosurvival, genetic instability, and immune evasion mechanisms in DLBCL and provide preclinical proof of concept for including PD-1/PD-L1 blockade in combinatorial immunotherapy for ABC-DLBCL.
Keyphrases
- diffuse large b cell lymphoma
- signaling pathway
- epstein barr virus
- dna damage response
- lps induced
- pi k akt
- genome wide
- oxidative stress
- nuclear factor
- cell proliferation
- copy number
- poor prognosis
- regulatory t cells
- type diabetes
- electronic health record
- big data
- immune response
- diabetic rats
- bone marrow
- acute lymphoblastic leukemia
- mesenchymal stem cells
- stem cells
- toll like receptor
- dendritic cells
- insulin resistance
- skeletal muscle
- free survival
- single molecule
- network analysis
- wild type