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多发性骨髓瘤中抗 GPRC5D CAR T 细胞治疗后 GPRC5D 缺失的遗传与表观遗传机制

英文原题:Genetic and epigenetic mechanisms of GPRC5D loss after anti-GPRC5D CAR T-cell therapy in multiple myeloma.

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Genetic and epigenetic mechanisms of GPRC5D loss after anti-GPRC5D CAR T-cell therapy in multiple myeloma.

PubMed 2025/07/10(内容时间) Blood Q1 · IF 23.9(JCR 2025)

研究概要

在这项研究中,我们对10例接受GPRC5D CAR T细胞治疗后复发患者的MM样本进行了全基因组测序和全基因组亚硫酸氢盐测序。

中文摘要

G蛋白偶联受体C类5组成员D(GPRC5D)已成为嵌合抗原受体(CAR)T细胞疗法的新靶点,在多发性骨髓瘤(MM)中显示出有希望的疗效。然而,疾病复发仍很常见,耐药机制仍知之甚少。在本研究中,我们对10例接受GPRC5D CAR T细胞治疗后复发的MM患者的样本进行了全基因组测序和全基因组亚硫酸氢盐测序。在这些患者中,8例出现GPRC5D丢失,而2例呈现混合表达(GPRC5D+/-)。在3例中鉴定出遗传改变:1例在GPRC5D基因中具有纯合缺失,另1例在GPRC5D的调控区具有双等位基因丢失,第3例在序贯抗B细胞成熟抗原和抗GPRC5D CAR T细胞疗法后,TNFRSF17和GPRC5D均发生纯合缺失。其余7例在GPRC5D基因座未检测到遗传改变。然而,在5份治疗后MM样本中,GPRC5D基因的转录调控元件存在多个超甲基化位点。在MM细胞系中,GPRC5D表达与其调控区的甲基化水平呈负相关。此外,azacitidine处理在超甲基化MM细胞系中诱导了GPRC5D信使RNA和蛋白表达。我们的发现突出表明,双等位基因遗传失活和超甲基化驱动的表观遗传沉默是导致GPRC5D丢失和治疗耐药的关键机制。

展开英文摘要原文

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.

论文信息

作者
Ma S、Xia J、Zhang M、Li W、Xiao M、Sha Y、Wang W、Zhou J
单位
Blood Diseases Institute, Xuzhou Medical University, Xuzhou, China.China
期刊
Blood2025 Jul 10
原文标识
PubMed 40090012 · DOI 10.1182/blood.2024026622