Departments of Neurology and Neurotherapeutics and Psychiatry, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8813, and Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
J Neurosci. 2013 Nov 20;33(47):18448-68. doi: 10.1523/JNEUROSCI.3017-13.2013.
The Shank3 gene encodes a scaffolding protein that anchors multiple elements of the postsynaptic density at the synapse. Previous attempts to delete the Shank3 gene have not resulted in a complete loss of the predominant naturally occurring Shank3 isoforms. We have now characterized a homozygous Shank3 mutation in mice that deletes exon 21, including the Homer binding domain. In the homozygous state, deletion of exon 21 results in loss of the major naturally occurring Shank3 protein bands detected by C-terminal and N-terminal antibodies, allowing us to more definitively examine the role of Shank3 in synaptic function and behavior. This loss of Shank3 leads to an increased localization of mGluR5 to both synaptosome and postsynaptic density-enriched fractions in the hippocampus. These mice exhibit a decrease in NMDA/AMPA excitatory postsynaptic current ratio in area CA1 of the hippocampus, reduced long-term potentiation in area CA1, and deficits in hippocampus-dependent spatial learning and memory. In addition, these mice also exhibit motor-coordination deficits, hypersensitivity to heat, novelty avoidance, altered locomotor response to novelty, and minimal social abnormalities. These data suggest that Shank3 isoforms are required for normal synaptic transmission/plasticity in the hippocampus, as well as hippocampus-dependent spatial learning and memory.
Shank3 基因编码一种支架蛋白,可将突触后密度的多个元素锚定在突触处。以前尝试删除 Shank3 基因并没有导致主要的天然 Shank3 同工型完全缺失。我们现在已经在小鼠中鉴定出 Shank3 基因的纯合突变,该突变删除了外显子 21,包括 Homer 结合域。在外显子 21 缺失的纯合状态下,缺失了 C 末端和 N 末端抗体检测到的主要天然 Shank3 蛋白带,使我们能够更明确地研究 Shank3 在突触功能和行为中的作用。这种 Shank3 的缺失导致 mGluR5 在海马体的突触体和富含突触后密度的部分的定位增加。这些小鼠在海马体 CA1 区表现出 NMDA/AMPA 兴奋性突触后电流比值降低、CA1 区长时程增强减少以及海马体依赖的空间学习和记忆缺陷。此外,这些小鼠还表现出运动协调缺陷、对热的敏感性增加、回避新奇性、对新奇性的运动反应改变以及社交行为异常最小。这些数据表明,Shank3 同工型是海马体正常突触传递/可塑性以及海马体依赖的空间学习和记忆所必需的。