W.M. Keck Foundation Center for Integrative Neuroscience, Department of Physiology, University of California, San Francisco, CA 94143-0444, USA.
Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5611-6. doi: 10.1073/pnas.1001281107. Epub 2010 Mar 8.
A defect in the maternal copy of a ubiqutin ligase gene Ube3a can produce a neurodevelopmental defect in human children known as Angelman syndrome. We investigated the role of the maternally expressed Ube3a gene in experience-dependent development and plasticity of the mouse visual system. As demonstrated by optical imaging, rapid ocular dominance (OD) plasticity after brief monocular deprivation (MD) was severely impaired during the critical period (CP) in the visual cortex (VC) of Ube3a maternal-deficient (m-/p+) mice. Prolonged MD elicited significant plasticity in m-/p+ mice that never matched the level seen in control animals. In older animals after the CP, 7-day MD elicited mild OD shifts in both control and m-/p+ mice; however, the OD shifts in m-/p+ mice lacked the strengthening of visual responses to the two eyes characteristic of normal adult plasticity. Anatomic effects of the maternal deficiency include reduced spine density on basal, but not apical, dendrites of pyramidal neurons in the binocular region of the VC. Imprinting of Ube3a expression was not fully established in the early postnatal period, consistent with the normal development of cortical retinotopy and visual acuity that we observed in m-/p+ mice, but was fully established by the onset of the CP. These results demonstrate that paternal and maternal genomes are not functionally equivalent for cortical plasticity, and that maternally expressed Ube3a is required for normal experience-dependent modification of cortical circuits during and after the CP.
母体来源的泛素连接酶基因 Ube3a 的缺陷可导致人类儿童出现神经发育缺陷,即 Angelman 综合征。我们研究了母源表达的 Ube3a 基因在小鼠视觉系统的经验依赖性发育和可塑性中的作用。正如光学成像所证明的,短暂单眼剥夺(MD)后快速眼优势(OD)可塑性在视觉皮层(VC)的关键期(CP)中严重受损在 Ube3a 母源缺失(m-/p+)小鼠中。延长 MD 在 m-/p+ 小鼠中引起显著的可塑性,但从未达到对照动物的水平。在 CP 后年龄较大的动物中,7 天 MD 在对照和 m-/p+ 小鼠中均引起轻微的 OD 变化;然而,m-/p+ 小鼠的 OD 变化缺乏对双眼的视觉反应增强,这是正常成年可塑性的特征。母体缺失的解剖学效应包括 VC 双眼区的锥体细胞基底但不是顶端树突上的棘突密度降低。Ube3a 表达的印迹在出生后早期并未完全建立,这与我们在 m-/p+ 小鼠中观察到的皮质视拓扑和视力的正常发育一致,但在 CP 开始时完全建立。这些结果表明,父本和母本基因组在皮质可塑性方面并非功能等效,并且母源表达的 Ube3a 是 CP 期间和之后皮质回路正常经验依赖性修饰所必需的。