Abnormal neocortical development in mice lacking cGMP-dependent protein kinase I

Galina P. Demyanenko , Ari I. Halberstadt , Katherine B. Pryzwansky , Claudia Werner , Franz Hofmann , Patricia F. Maness
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引用次数: 23

Abstract

Cyclic GMP-dependent protein kinase type I (cGKI) is a key signaling intermediate important for synaptic potentiation in the hippocampus and cerebellum, but its expression and function in cortical development have not been elucidated. The expression of cGKI in the developing mouse neocortex was evaluated by immunofluorescence labeling, and effect of cGKI deletion on cortical development was studied in adult cGKI knockout mice. cGKI was expressed at highest levels at embryonic stages in young neurons and radial glial fibers, corresponding to the major period of radial migration and laminar development of pyramidal neurons (embryonic day E13.5–E14.5), declining upon maturation (E17.5–postnatal day P28). The cerebral cortex of homozygous null mutant mice lacking cGKI exhibited heterotopic collections of neurons in the upper cortical layers and abnormal invaginations of layer I, in accord with a neuronal migration or positioning defect. Some cGKI mutant mice displayed defects in midline development resulting in partial fusion of cerebral hemispheres with adjacent neuronal heterotopias. Apical dendrites of cortical pyramidal neurons were misoriented in the cerebral cortex of cGKI null mutants, as shown in reporter mice expressing yellow fluorescent protein in layer V pyramidal neurons and by Golgi impregnation. These results demonstrate a role for cGKI signaling in cortical development related to neuronal migration/positioning that is important for dendritic orientation and connectivity.

缺乏cgmp依赖性蛋白激酶I的小鼠新皮质发育异常
环gmp依赖性蛋白激酶I型(cGKI)是海马和小脑突触增强的关键信号传导介质,但其在皮质发育中的表达和功能尚未阐明。采用免疫荧光标记法检测发育中的小鼠新皮层中cGKI的表达,并在成年cGKI敲除小鼠中研究cGKI缺失对皮层发育的影响。cGKI在胚胎期年轻神经元和径向胶质纤维中表达水平最高,与锥体神经元径向迁移和层状发育的主要时期(胚胎期E13.5-E14.5)相对应,成熟后(e17.5 -出生后P28)表达水平下降。缺乏cGKI的纯合子零突变小鼠的大脑皮层表现为皮层上层神经元的异位聚集和第一层的异常内陷,符合神经元迁移或定位缺陷。一些cGKI突变小鼠表现出中线发育缺陷,导致大脑半球与相邻神经元异位部分融合。通过高尔基浸染和在V层锥体神经元中表达黄色荧光蛋白的报告小鼠,可以发现cGKI零突变体大脑皮层皮层锥体神经元顶端树突定向错误。这些结果证明了cGKI信号在皮层发育中与神经元迁移/定位相关的作用,这对树突定向和连接很重要。
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