Ionescu-Tucker Andra, Butler Christopher W, Berchtold Nicole C, Matheos Dina P, Wood Marcelo A, Cotman Carl W
Department of Neurobiology and Behavior, University of California, Irvine, Irvine, CA, United States.
Institute for Memory Impairments and Neurological Disorders, University of California, Irvine, Irvine, CA, United States.
Front Aging Neurosci. 2021 Dec 14;13:798297. doi: 10.3389/fnagi.2021.798297. eCollection 2021.
Exercise improves cognition in the aging brain and is a key regulator of neuronal plasticity genes such as BDNF. However, the mechanism by which exercise modifies gene expression continues to be explored. The repressive histone modification H3K9me3 has been shown to impair cognition, reduce synaptic density and decrease BDNF in aged but not young mice. Treatment with ETP69, a selective inhibitor of H3K9me3's catalyzing enzyme (SUV39H1), restores synapses, BDNF and cognitive performance. GABA receptor expression, which modulates BDNF secretion, is also modulated by exercise and H3K9me3. In this study, we examined if exercise and ETP69 regulated neuronal plasticity genes by reducing H3K9me3 at their promoter regions. We further determined the effect of age on H3K9me3 promoter binding and neuronal plasticity gene expression. Exercise and ETP69 decreased H3K9me3 at BDNF promoter VI in aged mice, corresponding with an increase in BDNF VI expression with ETP69. Exercise increased GABRA2 in aged mice while increasing BDNF 1 in young mice, and both exercise and ETP69 reduced GABRA2 in young mice. Overall, H3K9me3 repression at BDNF and GABA receptor promoters decreased with age. Our findings suggest that exercise and SUV39H1 inhibition differentially modulate BDNF and GABRA2 expression in an age dependent manner.
运动可改善衰老大脑的认知功能,是诸如脑源性神经营养因子(BDNF)等神经元可塑性基因的关键调节因子。然而,运动改变基因表达的机制仍在探索之中。已证实,抑制性组蛋白修饰H3K9me3会损害老年小鼠而非年轻小鼠的认知功能,降低突触密度并减少BDNF。用ETP69(一种H3K9me3催化酶(SUV39H1)的选择性抑制剂)进行治疗,可恢复突触、BDNF和认知能力。调节BDNF分泌的GABA受体表达也受运动和H3K9me3的调控。在本研究中,我们检测了运动和ETP69是否通过减少神经元可塑性基因启动子区域的H3K9me3来对其进行调控。我们还进一步确定了年龄对H3K9me3启动子结合及神经元可塑性基因表达的影响。运动和ETP69可降低老年小鼠BDNF启动子VI处的H3K9me3,这与ETP69使BDNF VI表达增加相对应。运动可增加老年小鼠的GABRA2,同时增加年轻小鼠的BDNF 1,而运动和ETP69均可降低年轻小鼠的GABRA2。总体而言,BDNF和GABA受体启动子处的H3K9me3抑制作用随年龄增长而降低。我们的研究结果表明,运动和SUV39H1抑制以年龄依赖性方式差异性地调节BDNF和GABRA2的表达。