Institute of Biochemistry, Carleton University, Ottawa, ON K1S 5B6, Canada.
Department of Biology, Carleton University, Ottawa, ON K1S 5B6, Canada.
Biomolecules. 2022 Apr 27;12(5):641. doi: 10.3390/biom12050641.
Jumonji C (JmjC) lysine demethylases (KDMs) catalyze the removal of methyl (-CH) groups from modified lysyl residues. Several JmjC KDMs promote cancerous properties and these findings have primarily been in relation to histone demethylation. However, the biological roles of these enzymes are increasingly being shown to also be attributed to non-histone demethylation. Notably, KDM3A has become relevant to tumour progression due to recent findings of this enzyme's role in promoting cancerous phenotypes, such as enhanced glucose consumption and upregulated mechanisms of chemoresistance. To aid in uncovering the mechanism(s) by which KDM3A imparts its oncogenic function(s), this study aimed to unravel KDM3A substrate specificity to predict high-confidence substrates. Firstly, substrate specificity was assessed by monitoring activity towards a peptide permutation library of histone H3 di-methylated at lysine-9 (i.e., H3K9me2). From this, the KDM3A recognition motif was established and used to define a set of high-confidence predictions of demethylation sites from within the KDM3A interactome. Notably, this led to the identification of three in vitro substrates (MLL1, p300, and KDM6B), which are relevant to the field of cancer progression. This preliminary data may be exploited in further tissue culture experiments to decipher the avenues by which KDM3A imparts cancerous phenotypes.
Jumonji C(JmjC)赖氨酸去甲基酶(KDMs)催化从修饰的赖氨酸残基上去除甲基(-CH)基团。几种 JmjC KDMs 促进致癌特性,这些发现主要与组蛋白去甲基化有关。然而,这些酶的生物学作用越来越多地被归因于非组蛋白去甲基化。值得注意的是,由于最近发现该酶在促进癌表型(如增强葡萄糖消耗和上调化学抗性机制)方面的作用,KDM3A 与肿瘤进展相关。为了帮助揭示 KDM3A 赋予其致癌功能的机制,本研究旨在揭示 KDM3A 的底物特异性,以预测高可信度的底物。首先,通过监测组蛋白 H3 赖氨酸 9 二甲基化(即 H3K9me2)肽置换文库的活性来评估底物特异性。由此建立了 KDM3A 识别基序,并用于定义一组来自 KDM3A 相互作用组内去甲基化位点的高可信度预测。值得注意的是,这导致鉴定了三种体外底物(MLL1、p300 和 KDM6B),它们与癌症进展领域相关。这些初步数据可用于进一步的组织培养实验,以破译 KDM3A 赋予癌表型的途径。