Department of Psychiatry and Behavioral Sciences.
MD Degree Program, and.
JCI Insight. 2022 Jul 22;7(14):e158081. doi: 10.1172/jci.insight.158081.
Synaptic dysfunction is a manifestation of several neurobehavioral and neurological disorders. A major therapeutic challenge lies in uncovering the upstream regulatory factors controlling synaptic processes. Plant homeodomain (PHD) finger proteins are epigenetic readers whose dysfunctions are implicated in neurological disorders. However, the molecular mechanisms linking PHD protein deficits to disease remain unclear. Here, we generated a PHD finger protein 21B-depleted (Phf21b-depleted) mutant CRISPR mouse model (hereafter called Phf21bΔ4/Δ4) to examine Phf21b's roles in the brain. Phf21bΔ4/Δ4 animals exhibited impaired social memory. In addition, reduced expression of synaptic proteins and impaired long-term potentiation were observed in the Phf21bΔ4/Δ4 hippocampi. Transcriptome profiling revealed differential expression of genes involved in synaptic plasticity processes. Furthermore, we characterized a potentially novel interaction of PHF21B with histone H3 trimethylated lysine 36 (H3K36me3), a histone modification associated with transcriptional activation, and the transcriptional factor CREB. These results establish PHF21B as an important upstream regulator of synaptic plasticity-related genes and a candidate therapeutic target for neurobehavioral dysfunction in mice, with potential applications in human neurological and psychiatric disorders.
突触功能障碍是几种神经行为和神经紊乱的表现。主要的治疗挑战在于揭示控制突触过程的上游调节因子。植物同源结构域(PHD)手指蛋白是表观遗传读取器,其功能障碍与神经紊乱有关。然而,将 PHD 蛋白缺陷与疾病联系起来的分子机制仍不清楚。在这里,我们生成了一个 PHD 手指蛋白 21B 缺失(Phf21b 缺失)的 CRISPR 突变体小鼠模型(以下称为 Phf21bΔ4/Δ4),以研究 Phf21b 在大脑中的作用。Phf21bΔ4/Δ4 动物表现出社交记忆受损。此外,Phf21bΔ4/Δ4 海马体中观察到突触蛋白表达减少和长时程增强受损。转录组分析显示参与突触可塑性过程的基因表达差异。此外,我们还描述了 PHF21B 与组蛋白 H3 三甲基赖氨酸 36(H3K36me3)的潜在新相互作用,H3K36me3 是与转录激活相关的组蛋白修饰,以及转录因子 CREB。这些结果确立了 PHF21B 作为突触可塑性相关基因的重要上游调节剂,以及小鼠神经行为功能障碍的候选治疗靶点,在人类神经和精神疾病中有潜在的应用。