Sun Jiandong, Zhu Guoqi, Liu Yan, Standley Steve, Ji Angela, Tunuguntla Rashmi, Wang Yubin, Claus Chad, Luo Yun, Baudry Michel, Bi Xiaoning
Western University of Health Sciences, Pomona, CA 91766, USA.
Key Laboratory of Xin'an Medicine, Ministry of Education, Anhui University of Traditional Chinese Medicine, Hefei 230038, China.
Cell Rep. 2015 Jul 21;12(3):449-61. doi: 10.1016/j.celrep.2015.06.023. Epub 2015 Jul 9.
Gated solely by activity-induced changes in intracellular calcium, small-conductance potassium channels (SKs) are critical for a variety of functions in the CNS, from learning and memory to rhythmic activity and sleep. While there is a wealth of information on SK2 gating, kinetics, and Ca(2+) sensitivity, little is known regarding the regulation of SK2 subcellular localization. We report here that synaptic SK2 levels are regulated by the E3 ubiquitin ligase UBE3A, whose deficiency results in Angelman syndrome and overexpression in increased risk of autistic spectrum disorder. UBE3A directly ubiquitinates SK2 in the C-terminal domain, which facilitates endocytosis. In UBE3A-deficient mice, increased postsynaptic SK2 levels result in decreased NMDA receptor activation, thereby impairing hippocampal long-term synaptic plasticity. Impairments in both synaptic plasticity and fear conditioning memory in UBE3A-deficient mice are significantly ameliorated by blocking SK2. These results elucidate a mechanism by which UBE3A directly influences cognitive function.
小电导钾通道(SKs)仅由细胞内钙的活性诱导变化门控,对中枢神经系统的多种功能至关重要,从学习和记忆到节律性活动和睡眠。虽然关于SK2门控、动力学和Ca(2+)敏感性有大量信息,但关于SK2亚细胞定位的调节知之甚少。我们在此报告,突触SK2水平受E3泛素连接酶UBE3A调节,其缺陷导致天使综合征,而过表达则增加自闭症谱系障碍的风险。UBE3A直接在C末端结构域将SK2泛素化,这促进了内吞作用。在UBE3A缺陷小鼠中,突触后SK2水平升高导致NMDA受体激活减少,从而损害海马体长期突触可塑性。通过阻断SK2,显著改善了UBE3A缺陷小鼠的突触可塑性和恐惧条件记忆障碍。这些结果阐明了UBE3A直接影响认知功能的机制。