Genetic and epigenetic mechanisms of GPRC5D loss after anti-GPRC5D CAR T-cell therapy in multiple myeloma
Abstract
Abstract G protein-coupled receptor, class C, group 5, member D (GPRC5D) has emerged as a novel target for chimeric antigen receptor (CAR) T-cell therapy, demonstrating promising efficacy in multiple myeloma (MM). However, disease relapse is still common, and the mechanism of resistance remains poorly understood. In this study, we conducted whole-genome sequencing and whole-genome bisulfite sequencing on MM samples from 10 patients who relapsed after GPRC5D CAR T-cell therapy. Among these patients, 8 had GPRC5D loss, whereas 2 presented mixed expression (GPRC5D+/−). Genetic alterations were identified in 3 cases: one had a homozygous deletion in the GPRC5D gene, another had a biallelic loss in the regulatory regions of GPRC5D, and the third had homozygous deletions in both TNFRSF17 and GPRC5D after sequential anti–B-cell maturation antigen and anti-GPRC5D CAR T-cell therapies. No genetic changes were detected at GPRC5D locus in the remaining 7 cases. However, multiple hypermethylation sites were present in the transcriptional regulatory elements of the GPRC5D gene in 5 post-treatment MM samples. In MM cell lines, GPRC5D expression was inversely correlated with methylation levels in its regulatory regions. Furthermore, azacitidine treatment induced GPRC5D messenger RNA and protein expression in hypermethylated MM cell lines. Our findings highlight that biallelic genetic inactivation and hypermethylation-driven epigenetic silencing are key mechanisms contributing to GPRC5D loss and treatment resistance.
Article Details
Authors (27)
Sha Ma
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Jieyun Xia
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Miao Zhang
State Key Laboratory of Advanced Materials for Intelligent Sensing, Key Laboratory of Organic Integrated Circuits, Ministry of Education & Tianjin Key Laboratory of Molecular Optoelectronic Sciences, Department of Chemistry, School of Science
Wenyu Li
Frontier Institute of Science and Technology
Meng Xiao
Yuqian Sha
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Wenya Wang
Jianteng Zhou
4Department of Genetics, Xuzhou Medical University, Xuzhou, China
Ying Wang
Kunming Qi
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Chunling Fu
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Zengtian Sun
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China
Dian Zhou
Qian Sun
Tingting Qiu
Zhiling Yan
Feng Zhu
Wei Chen
Hai Cheng
Institute of Global Environmental Change, Xi’an Jiaotong University
Wei Sang
Jiang Cao
Depeng Li
Institute of Nanoscience and Applications, and Department of Electrical and Electronic Engineering, Southern University of Science and Technology 1 , Shenzhen 518055,
Zhenyu Li
Mariateresa Fulciniti
Dana Farber Cancer Institute, Boston, Massachusetts, United States
Yao Yao
Kailin Xu
Mingshan Niu
1Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China