School of Pharmacy and Centre for Biomolecular Sciences, University of Nottingham, Nottingham NG7 2RD, UK.
Molecules. 2024 Sep 13;29(18):4351. doi: 10.3390/molecules29184351.
The Caf1/CNOT7 nuclease is a catalytic component of the Ccr4-Not deadenylase complex, which is a key regulator of post-transcriptional gene regulation. In addition to providing catalytic activity, Caf1/CNOT7 and its paralogue Caf1/CNOT8 also contribute a structural function by mediating interactions between the large, non-catalytic subunit CNOT1, which forms the backbone of the Ccr4-Not complex and the second nuclease subunit Ccr4 (CNOT6/CNOT6L). To facilitate investigations into the role of Caf1/CNOT7 in gene regulation, we aimed to discover and develop non-nucleoside inhibitors of the enzyme. Here, we disclose that the tri-substituted 2-pyridone compound 5-(5-bromo-2-hydroxy-benzoyl)-1-(4-chloro-2-methoxy-5-methyl-phenyl)-2-oxo-pyridine-3-carbonitrile is an inhibitor of the Caf1/CNOT7 nuclease. Using a fluorescence-based nuclease assay, the activity of 16 structural analogues was determined, which predominantly explored substituents on the 1-phenyl group. While no compound with higher potency was identified among this set of structural analogues, the lowest potency was observed with the analogue lacking substituents on the 1-phenyl group. This indicates that substituents on the 1-phenyl group contribute significantly to binding. To identify possible binding modes of the inhibitors, molecular docking was carried out. This analysis suggested that the binding modes of the five most potent inhibitors may display similar conformations upon binding active site residues. Possible interactions include π-π interactions with His225, hydrogen bonding with the backbone of Phe43 and Van der Waals interactions with His225, Leu209, Leu112 and Leu115.
Caf1/CNOT7 核酸酶是 Ccr4-Not 脱腺苷酸酶复合物的催化组成部分,是转录后基因调控的关键调节剂。除了提供催化活性外,Caf1/CNOT7 及其同源物 Caf1/CNOT8 还通过介导大的非催化亚基 CNOT1 与第二个核酸酶亚基 Ccr4(CNOT6/CNOT6L)之间的相互作用,发挥结构功能。为了促进对 Caf1/CNOT7 在基因调控中的作用的研究,我们旨在发现和开发该酶的非核苷抑制剂。在这里,我们披露三取代 2-吡啶酮化合物 5-(5-溴-2-羟基苯甲酰基)-1-(4-氯-2-甲氧基-5-甲基-苯基)-2-氧代-吡啶-3-甲腈是 Caf1/CNOT7 核酸酶的抑制剂。使用基于荧光的核酸酶测定法,测定了 16 种结构类似物的活性,这些类似物主要探索了 1-苯基上的取代基。虽然在这组结构类似物中没有发现活性更高的化合物,但在缺乏 1-苯基取代基的类似物中观察到最低的活性。这表明 1-苯基上的取代基对结合有重要贡献。为了确定抑制剂的可能结合模式,进行了分子对接。该分析表明,五个最有效抑制剂的结合模式在结合活性位点残基时可能显示出相似的构象。可能的相互作用包括与 His225 的π-π相互作用、与 Phe43 骨架的氢键相互作用以及与 His225、Leu209、Leu112 和 Leu115 的范德华相互作用。