Single-Nucleotide Variants and Epimutations Induce Proteasome Inhibitor Resistance in Multiple Myeloma

DNA甲基化 生物 表观遗传学 硼替佐米 蛋白酶体 蛋白酶体抑制剂 基因沉默 癌症研究 甲基化 分子生物学 遗传学 基因表达 多发性骨髓瘤 基因 免疫学
作者
Larissa Haertle,Santiago Barrio,Umair Munawar,Seungbin Han,Xiang Zhou,Michal Šimíček,Cornelia Vogt,Marietta Truger,Rafael Alonso Fernández,Maximilian Steinhardt,Julia Weingart,Renáta Šnaurová,Silvia Nerreter,Eva Teufel,Andoni Garitano-Trojaola,Matteo Da Vià,Yanira Ruiz‐Heredia,Andreas Rosenwald,Niccolò Bolli,Roman Hájek
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:29 (1): 279-288 被引量:14
标识
DOI:10.1158/1078-0432.ccr-22-1161
摘要

Abstract Purpose: Proteasome inhibitors (PI) are the backbone of various treatment regimens in multiple myeloma. We recently described the first in-patient point mutations affecting the 20S subunit PSMB5 underlying PI resistance. Notably, in vivo, the incidence of mutations in PSMB5 and other proteasome encoding genes is too low to explain the development of resistance in most of the affected patients. Thus, additional genetic and epigenetic alterations need to be explored. Experimental Design: We performed DNA methylation profiling by Deep Bisulfite Sequencing in PSMB5, PSMC2, PSMC5, PSMC6, PSMD1, and PSMD5, a subset of proteasome subunits that have hitherto been associated with PI resistance, recruited from our own previous research, the literature, or a meta-analysis on the frequency of somatic mutations. Methylation was followed up on gene expression level and by dual-luciferase reporter assay. The KMS11 cell line served as a model to functionally test the impact of demethylating agents. Results: We identified PSMD5 promoter hypermethylation and subsequent epigenetic gene silencing in 24% of PI refractory patients. Hypermethylation correlated with decreased expression and the regulatory impact of this region was functionally confirmed. In contrast, patients with newly diagnosed multiple myeloma, along with peripheral blood mononuclear cells and CD138+ plasma cells from healthy donors, generally show unmethylated profiles. Conclusions: Under the selective pressure of PI treatment, multiple myeloma cells acquire methylation of the PSMD5 promoter silencing the PSMD5 gene expression. PSMD5 acts as a key orchestrator of proteasome assembly and its downregulation was described to increase the cell's proteolytic capacity. PSMD5 hypermethylation, therefore, represents a novel mechanism of PI tolerance in multiple myeloma.
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