Department of Genetics, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, USA.
Department of Biological Sciences, Southern Illinois University Edwardsville, 44 Circle Drive, Edwardsville, IL 62026, USA.
Cell Rep. 2021 Feb 16;34(7):108753. doi: 10.1016/j.celrep.2021.108753.
Mutations in the genes encoding the lysine demethylase 5 (KDM5) family of histone demethylases are observed in individuals with intellectual disability (ID). Despite clear evidence linking KDM5 function to neurodevelopmental pathways, how this family of proteins impacts transcriptional programs to mediate synaptic structure and activity remains unclear. Using the Drosophila larval neuromuscular junction (NMJ), we show that KDM5 is required presynaptically for neuroanatomical development and synaptic function. The Jumonji C (JmjC) domain-encoded histone demethylase activity of KDM5, which is expected to be diminished by many ID-associated alleles, is required for appropriate synaptic morphology and neurotransmission. The activity of the C5HC2 zinc finger is also required, as an ID-associated mutation in this motif reduces NMJ bouton number, increases bouton size, and alters microtubule dynamics. KDM5 therefore uses demethylase-dependent and independent mechanisms to regulate NMJ structure and activity, highlighting the complex nature by which this chromatin modifier carries out its neuronal gene-regulatory programs.
编码赖氨酸去甲基酶 5(KDM5)家族组蛋白去甲基酶的基因突变可在智力障碍(ID)个体中观察到。尽管有明确的证据表明 KDM5 功能与神经发育途径有关,但该蛋白家族如何影响转录程序以介导突触结构和活性仍不清楚。我们使用果蝇幼虫神经肌肉接头(NMJ)表明,KDM5 在突触前对于神经解剖发育和突触功能是必需的。预计许多 ID 相关等位基因会降低 KDM5 的组蛋白去甲基酶活性的 Jumonji C(JmjC)结构域编码的去甲基酶活性,对于适当的突触形态和神经递质传递是必需的。C5HC2 锌指的活性也是必需的,因为该基序中的一个 ID 相关突变会减少 NMJ 末梢的数量,增加末梢的大小,并改变微管动力学。因此,KDM5 利用依赖和不依赖去甲基化酶的机制来调节 NMJ 的结构和活性,突出了这种染色质修饰物执行其神经元基因调控程序的复杂性质。