Optimal therapeutic targeting by HDAC inhibition in biopsy-derived treatment-naïve diffuse midline glioma models

罗咪酯肽 全景望远镜 体内 胶质瘤 癌症研究 表观遗传学 医学 转录组 药理学 下调和上调 组蛋白脱乙酰基酶 生物 组蛋白 基因表达 遗传学 基因
作者
Nicholas Alexander Vitanza,Matthew C. Biery,Carrie H. Myers,Eric Ferguson,Ye Zheng,Emily J. Girard,Justyna Magdalena Przystal,Giulia Park,Alyssa Noll,Fiona J. Pakiam,Conrad Winter,Shelli M. Morris,Jay F. Sarthy,Bonnie Cole,Sarah E. S. Leary,Courtney A. Crane,Nicole A. P. Lieberman,Sabine Mueller,Javad Nazarian,Raphaël Gottardo
出处
期刊:Neuro-oncology [Oxford University Press]
卷期号:23 (3): 376-386 被引量:77
标识
DOI:10.1093/neuonc/noaa249
摘要

BACKGROUND: Diffuse midline gliomas (DMGs), including diffuse intrinsic pontine gliomas (DIPGs), have a dismal prognosis, with less than 2% surviving 5 years postdiagnosis. The majority of DIPGs and all DMGs harbor mutations altering the epigenetic regulatory histone tail (H3 K27M). Investigations addressing DMG epigenetics have identified a few promising drugs, including the HDAC inhibitor (HDACi) panobinostat. Here, we use clinically relevant DMG models to identify and validate other effective HDACi and their biomarkers of response. METHODS: HDAC inhibitors were tested across biopsy-derived treatment-naïve in vitro and in vivo DMG models with biologically relevant radiation resistance. RNA sequencing was performed to define and compare drug efficacy and to map predictive biomarkers of response. RESULTS: Quisinostat and romidepsin showed efficacy with low nanomolar half-maximal inhibitory concentration (IC50) values (~50 and ~5 nM, respectively). Comparative transcriptome analyses across quisinostat, romidepsin, and panobinostat showed a greater degree of shared biological effects between quisinostat and panobinostat, and less overlap with romidepsin. However, some transcriptional changes were consistent across all 3 drugs at similar biologically effective doses, such as overexpression of troponin T1 slow skeletal type (TNNT1) and downregulation of collagen type 20 alpha 1 chain (COL20A1), identifying these as potential vulnerabilities or on-target biomarkers in DMG. Quisinostat and romidepsin significantly (P < 0.0001) inhibited in vivo tumor growth. CONCLUSIONS: Our data highlight the utility of treatment-naïve biopsy-derived models; establishes quisinostat and romidepsin as effective in vivo; illuminates potential mechanisms and/or biomarkers of DMG cell lethality due to HDAC inhibition; and emphasizes the need for brain tumor-penetrant versions of potentially efficacious agents.

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