利用小分子抑制剂靶向表观遗传调控癌症治疗。

2区 医学 Q1 Medicine Advances in Cancer Research Pub Date : 2023-01-01 DOI:10.1016/bs.acr.2023.01.001
Amit Kumar, Luni Emdad, Paul B Fisher, Swadesh K Das
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引用次数: 3

摘要

癌细胞在DNA甲基化、组蛋白翻译后修饰模式中断、染色质组成或组织以及调节元件活性方面表现出普遍的变化,这些变化改变了正常的基因表达程序。越来越清楚的是,表观基因组的紊乱是癌症的标志,这是可靶向的,并且代表了药物创造的有吸引力的起点。在过去的几十年里,发现和开发基于表观遗传学的小分子抑制剂取得了显著的进展。近年来,表观遗传靶向治疗血液恶性肿瘤和实体肿瘤的药物已经被发现,这些药物要么正在进行临床试验,要么被批准用于治疗。然而,表观遗传药物的应用面临着选择性低、生物利用度差、不稳定性和获得性耐药等诸多挑战。正在设计新的多学科方法来克服这些限制,例如,机器学习、药物再利用、高通量虚拟筛选技术的应用,以识别具有更高稳定性和更好生物利用度的选择性化合物。我们概述了介导表观遗传调控的关键蛋白,包括组蛋白和DNA修饰,并讨论了影响染色质结构和功能组织的效应蛋白,以及目前可用的抑制剂作为潜在药物。目前针对表观遗传修饰酶的抗癌小分子抑制剂已被世界各地的治疗监管机构批准。其中许多都处于临床评估的不同阶段。我们还评估了表观遗传药物与免疫疗法、标准化疗或其他类别药物组合方法的新兴策略,以及新型表观遗传疗法设计的进展。
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Targeting epigenetic regulation for cancer therapy using small molecule inhibitors.

Cancer cells display pervasive changes in DNA methylation, disrupted patterns of histone posttranslational modification, chromatin composition or organization and regulatory element activities that alter normal programs of gene expression. It is becoming increasingly clear that disturbances in the epigenome are hallmarks of cancer, which are targetable and represent attractive starting points for drug creation. Remarkable progress has been made in the past decades in discovering and developing epigenetic-based small molecule inhibitors. Recently, epigenetic-targeted agents in hematologic malignancies and solid tumors have been identified and these agents are either in current clinical trials or approved for treatment. However, epigenetic drug applications face many challenges, including low selectivity, poor bioavailability, instability and acquired drug resistance. New multidisciplinary approaches are being designed to overcome these limitations, e.g., applications of machine learning, drug repurposing, high throughput virtual screening technologies, to identify selective compounds with improved stability and better bioavailability. We provide an overview of the key proteins that mediate epigenetic regulation that encompass histone and DNA modifications and discuss effector proteins that affect the organization of chromatin structure and function as well as presently available inhibitors as potential drugs. Current anticancer small-molecule inhibitors targeting epigenetic modified enzymes that have been approved by therapeutic regulatory authorities across the world are highlighted. Many of these are in different stages of clinical evaluation. We also assess emerging strategies for combinatorial approaches of epigenetic drugs with immunotherapy, standard chemotherapy or other classes of agents and advances in the design of novel epigenetic therapies.

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来源期刊
Advances in Cancer Research
Advances in Cancer Research 医学-肿瘤学
CiteScore
10.00
自引率
0.00%
发文量
52
期刊介绍: Advances in Cancer Research (ACR) has covered a remarkable period of discovery that encompasses the beginning of the revolution in biology. Advances in Cancer Research (ACR) has covered a remarkable period of discovery that encompasses the beginning of the revolution in biology. The first ACR volume came out in the year that Watson and Crick reported on the central dogma of biology, the DNA double helix. In the first 100 volumes are found many contributions by some of those who helped shape the revolution and who made many of the remarkable discoveries in cancer research that have developed from it.
期刊最新文献
Hereditary diffuse gastric cancer. Mass spectrometry based biomarkers for early detection of HCC using a glycoproteomic approach. Targeting the super elongation complex for oncogenic transcription driven tumor malignancies: Progress in structure, mechanisms and small molecular inhibitor discovery. Targeting epigenetic regulation for cancer therapy using small molecule inhibitors. Collaborative Spirit Drives the Field of Tumor Glycobiology: A Preface to Special Volume on Cancer Glycobiology.
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