研究概要
维甲酸(RA)是用于高危神经母细胞瘤(NB)维持治疗的最成功的肿瘤分化治疗药物,但疗效有限。
中文摘要
维甲酸(RA)是高危神经母细胞瘤(NB)维持治疗中用于癌症分化治疗的最成功药物,但疗效仍有限。本研究提出通过BET抑制剂破坏癌细胞身份,以提高疗效。理论认为,阻断发育的突变使NB细胞保留未成熟细胞身份并推动肿瘤发生。NB具有两种可相互转换的细胞身份,由两套不同的核心转录调控环路(CRC)维持:一种是耐药的间充质/干细胞状态,另一种是增殖性肾上腺素能状态。MYCN扩增是高危NB常见突变,近期发现其可通过促进肾上腺素能CRC转录因子ASCL1高表达而阻断分化。由于仅部分NB患者对RA应答,研究者评估破坏未成熟CRC能否促进RA诱导分化。结果发现,沉默肾上腺素能CRC关键成员ASCL1,或使用BET抑制剂JQ1整体破坏CRC,均可抑制多种CRC因子的基因表达,增强RA介导的分化。此外,JQ1与RA可协同抑制NB细胞系增殖并诱导分化。研究结果支持进一步开展RA联合BET抑制剂治疗NB的临床前研究。
展开英文摘要原文
Retinoic acids (RAs) are the most successful therapeutics for cancer differentiation therapy used in high-risk neuroblastoma (NB) maintenance therapy but are limited in effectiveness. This study identifies a strategy for improving efficacy through disruption of cancer cell identity via BET inhibitors. Mutations that block development are theorized to cause NB through retention of immature cell identities contributing to oncogenesis. NB has two interchangeable cell identities, maintained by two different core transcriptional regulatory circuitries (CRCs): a therapy-resistant mesenchymal/stem cell state and a proliferative adrenergic cell state. MYCN amplification is a common mutation of high-risk NB and recently found to block differentiation by driving high expression of the adrenergic CRC transcription factor ASCL1. We investigated whether disruption of immature CRCs can promote RA-induced differentiation since only a subset of NB patients responds to RA. We found that silencing ASCL1, a critical member of the adrenergic CRC, or global disruption of CRCs with the BET inhibitor JQ1, suppresses gene expression of multiple CRC factors, improving RA-mediated differentiation. Further, JQ1 and RA synergistically decrease proliferation and induce differentiation in NB cell lines. Our findings support preclinical studies of RA and BET inhibitors as a combination therapy in treating NB.
论文信息
- 作者
- Alleboina S、Aljouda N、Miller M、Freeman KW
- 单位
- Department of Genetics, Genomics and Informatics, University of Tennessee Health Science Center, 19 S. Manassas St., CRB-326, Memphis, TN 38163, USA.United States
- 期刊
- Molecular therapy oncolytics2021 Dec 17