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Kinetically selective inhibitors of histone deacetylase 2 (HDAC2) as cognition enhancers

机译:运动选择性组蛋白脱乙酰基酶2(HDAC2)抑制剂作为认知增强剂

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摘要

Aiming towards the development of novel nootropic therapeutics to address the cognitive impairment common to a range of brain disorders, we set out to develop highly selective small molecule inhibitors of HDAC2, a chromatin modifying histone deacetylase implicated in memory formation and synaptic plasticity. Novel ortho-aminoanilide inhibitors were designed and evaluated for their ability to selectively inhibit HDAC2 versus the other Class I HDACs. Kinetic and thermodynamic binding properties were essential elements of our design strategy and two novel classes of ortho-aminoanilides, that exhibit kinetic selectivity (biased residence time) for HDAC2 versus the highly homologous isoform HDAC1, were identified. These kinetically selective HDAC2 inhibitors (>BRD6688 and >BRD4884) increased H4K12 and H3K9 histone acetylation in primary mouse neuronal cell culture assays, in the hippocampus of CK-p25 mice, a model of neurodegenerative disease, and rescued the associated memory deficits of these mice in a cognition behavioural model. These studies demonstrate for the first time that selective pharmacological inhibition of HDAC2 is feasible and that inhibition of the catalytic activity of this enzyme may serve as a therapeutic approach towards enhancing the learning and memory processes that are affected in many neurological and psychiatric disorders.
机译:为了开发新型的促智疗法来解决一系列大脑疾病常见的认知障碍,我们着手开发高度选择性的HDAC2小分子抑制剂,HDAC2是一种染色质修饰组蛋白脱乙酰基酶,与记忆形成和突触可塑性有关。设计和评估了新型邻氨基苯胺抑制剂相对于其他I类HDAC的选择性抑制HDAC2的能力。动力学和热力学结合特性是我们设计策略的基本要素,并且确定了两类新颖的邻氨基苯胺,它们相对于高度同源的同工型HDAC1表现出HDAC2的动力学选择性(滞留时间)。这些动力学选择性HDAC2抑制剂(> BRD6688 和> BRD4884 )在CK-p25小鼠海马模型的原代小鼠神经元细胞培养测定中增加了H4K12和H3K9组蛋白乙酰化作用。神经退行性疾病,并在认知行为模型中挽救了这些小鼠的相关记忆缺陷。这些研究首次证明了对HDAC2的选择性药理抑制是可行的,并且对该酶催化活性的抑制可以作为增强在许多神经和精神疾病中受到影响的学习和记忆过程的治疗方法。

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