Mechanisms of antigen escape from BCMA- or GPRC5D-targeted immunotherapies in multiple myeloma
Holly Lee1, Sungwoo Ahn1, Ranjan Maity1
1Arnie Charbonneau Cancer Institute, University of Calgary, Calgary, Alberta, Canada.
Abstract:
B cell maturation antigen (BCMA) target loss is considered to be a rare event that mediates multiple myeloma (MM) resistance to anti-BCMA chimeric antigen receptor T cell (CAR T) or bispecific T cell engager (TCE) therapies. Emerging data report that downregulation of G-protein-coupled receptor family C group 5 member D (GPRC5D) protein often occurs at relapse after anti-GPRC5D CAR T therapy. To examine the tumor-intrinsic factors that promote MM antigen escape, we performed combined bulk and single-cell whole-genome sequencing and copy number variation analysis of 30 patients treated with anti-BCMA and/or anti-GPRC5D CAR T/TCE therapy. In two cases, MM relapse post-TCE/CAR T therapy was driven by BCMA-negative clones harboring focal biallelic deletions at the TNFRSF17 locus at relapse or by selective expansion of pre-existing subclones with biallelic TNFRSF17 loss. In another five cases of relapse, newly detected, nontruncating, missense mutations or in-frame deletions in the extracellular domain of BCMA negated the efficacies of anti-BCMA TCE therapies, despite detectable surface BCMA protein expression. In the present study, we also report four cases of MM relapse with biallelic mutations of GPRC5D after anti-GPRC5D TCE therapy, including two cases with convergent evolution where multiple subclones lost GPRC5D through somatic events. Immunoselection of BCMA- or GPRC5D-negative or mutant clones is an important tumor-intrinsic driver of relapse post-targeted therapies. Mutational events on BCMA confer distinct sensitivities toward different anti-BCMA therapies, underscoring the importance of considering the tumor antigen landscape for optimal design and selection of targeted immunotherapies in MM.
Insights
Multiple myeloma (MM) relapse after targeted therapies like CAR T or TCE is often driven by tumor cells losing B cell maturation antigen (BCMA) or G-protein-coupled receptor family C group 5 member D (GPRC5D) targets. Understanding these antigen escape mechanisms is crucial for effective MM treatment strategies.
Area of Science:
- Oncology
- Immunotherapy
- Genomics
Background:
- B cell maturation antigen (BCMA) and G-protein-coupled receptor family C group 5 member D (GPRC5D) are key targets for multiple myeloma (MM) immunotherapies.
- Resistance to anti-BCMA or anti-GPRC5D therapies, mediated by target antigen loss, is a significant clinical challenge in MM.
Purpose of the Study:
- To investigate tumor-intrinsic factors driving antigen escape in MM following chimeric antigen receptor T cell (CAR T) or bispecific T cell engager (TCE) therapies targeting BCMA and/or GPRC5D.
- To analyze genetic mechanisms underlying relapse in MM patients treated with BCMA- or GPRC5D-targeted immunotherapies.
Main Methods:
- Combined bulk and single-cell whole-genome sequencing.
- Copy number variation analysis in 30 MM patients treated with anti-BCMA and/or anti-GPRC5D CAR T/TCE therapy.
- Genomic analysis of relapsed tumor samples to identify mutations and deletions in target antigen loci.
Main Results:
- Relapse post-therapy was associated with BCMA-negative clones due to biallelic deletions or mutations in the TNFRSF17 locus.
- Five cases showed relapse driven by novel BCMA mutations (missense or in-frame deletions) affecting TCE efficacy despite surface BCMA expression.
- Four cases of relapse after anti-GPRC5D therapy exhibited biallelic GPRC5D mutations, including instances of convergent evolution.
Conclusions:
- Immunoselection of BCMA- or GPRC5D-negative or mutant clones is a primary driver of relapse in MM after targeted immunotherapies.
- Specific mutational events on BCMA influence sensitivity to different anti-BCMA therapies.
- Tailoring targeted immunotherapies requires careful consideration of the evolving tumor antigen landscape in MM.
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