Burg Jonathan M, Link Jennifer E, Morgan Brittany S, Heller Frederick J, Hargrove Amanda E, McCafferty Dewey G
Department of Chemistry, Duke University, Durham, NC, 27708.
Biopolymers. 2015 Jul;104(4):213-46. doi: 10.1002/bip.22643.
Flavin-dependent, lysine-specific protein demethylases (KDM1s) are a subfamily of amine oxidases that catalyze the selective posttranslational oxidative demethylation of methyllysine side chains within protein and peptide substrates. KDM1s participate in the widespread epigenetic regulation of both normal and disease state transcriptional programs. Their activities are central to various cellular functions, such as hematopoietic and neuronal differentiation, cancer proliferation and metastasis, and viral lytic replication and establishment of latency. Interestingly, KDM1s function as catalytic subunits within complexes with coregulatory molecules that modulate enzymatic activity of the demethylases and coordinate their access to specific substrates at distinct sites within the cell and chromatin. Although several classes of KDM1-selective small molecule inhibitors have been recently developed, these pan-active site inhibition strategies lack the ability to selectively discriminate between KDM1 activity in specific, and occasionally opposing, functional contexts within these complexes. Here we review the discovery of this class of demethylases, their structures, chemical mechanisms, and specificity. Additionally, we review inhibition of this class of enzymes as well as emerging interactions with coregulatory molecules that regulate demethylase activity in highly specific functional contexts of biological and potential therapeutic importance.
黄素依赖性赖氨酸特异性蛋白去甲基化酶(KDM1s)是胺氧化酶的一个亚家族,可催化蛋白质和肽底物中甲基赖氨酸侧链的选择性翻译后氧化去甲基化。KDM1s参与正常和疾病状态转录程序的广泛表观遗传调控。它们的活性对于各种细胞功能至关重要,例如造血和神经分化、癌症增殖和转移以及病毒裂解复制和潜伏建立。有趣的是,KDM1s在与共调节分子形成的复合物中作为催化亚基发挥作用,这些共调节分子可调节去甲基化酶的酶活性,并协调它们在细胞和染色质内不同位点对特定底物的作用。尽管最近已经开发出几类KDM1选择性小分子抑制剂,但这些泛活性位点抑制策略缺乏在这些复合物中特定且偶尔相反的功能背景下选择性区分KDM1活性的能力。在这里,我们综述了这类去甲基化酶的发现、它们的结构、化学机制和特异性。此外,我们还综述了这类酶的抑制作用以及与共调节分子的新出现的相互作用,这些共调节分子在具有生物学和潜在治疗重要性的高度特定功能背景下调节去甲基化酶的活性。