School of Medical Sciences, Faculty of Medicine, UNSW Sydney, Sydney, New South Wales, Australia.
School of Biomedical Engineering, University of Technology Sydney, Sydney, New South Wales, Australia.
Genes Chromosomes Cancer. 2019 Dec;58(12):859-874. doi: 10.1002/gcc.22794. Epub 2019 Aug 16.
Acute myeloid leukemia (AML) is a complex disease characterized by a diverse range of recurrent molecular aberrations that occur in many different combinations. Components of transcriptional networks are a common target of these aberrations, leading to network-wide changes and deployment of novel or developmentally inappropriate transcriptional programs. Genome-wide techniques are beginning to reveal the full complexity of normal hematopoietic stem cell transcriptional networks and the extent to which they are deregulated in AML, and new understandings of the mechanisms by which AML cells maintain self-renewal and block differentiation are starting to emerge. The hope is that increased understanding of the network architecture in AML will lead to identification of key oncogenic dependencies that are downstream of multiple network aberrations, and that this knowledge will be translated into new therapies that target these dependencies. Here, we review the current state of knowledge of network perturbation in AML with a focus on major mechanisms of transcription factor dysregulation, including mutation, translocation, and transcriptional dysregulation, and discuss how these perturbations propagate across transcriptional networks. We will also review emerging mechanisms of network disruption, and briefly discuss how increased knowledge of network disruption is already being used to develop new therapies.
急性髓细胞白血病(AML)是一种复杂的疾病,其特征是存在多种反复出现的分子异常,这些异常以许多不同的组合形式发生。转录网络的组成部分是这些异常的常见靶点,导致网络范围内的变化,并部署新的或发育上不合适的转录程序。全基因组技术开始揭示正常造血干细胞转录网络的全部复杂性,以及 AML 中它们被失调的程度,并且开始出现对 AML 细胞维持自我更新和阻止分化的机制的新理解。希望对 AML 中网络结构的深入了解将导致鉴定出多个网络异常下游的关键致癌依赖性,并且这些知识将转化为针对这些依赖性的新疗法。在这里,我们重点讨论转录因子失调的主要机制,综述 AML 中网络干扰的当前知识状态,包括突变、易位和转录失调,并讨论这些干扰如何在转录网络中传播。我们还将回顾新兴的网络破坏机制,并简要讨论对网络破坏的深入了解如何已被用于开发新疗法。