Chen Ying-Jiun J, Johnson Madeleine A, Lieberman Michael D, Goodchild Rose E, Schobel Scott, Lewandowski Nicole, Rosoklija Gorazd, Liu Ruei-Che, Gingrich Jay A, Small Scott, Moore Holly, Dwork Andrew J, Talmage David A, Role Lorna W
Department of Cell Biology and Pathology, School of Pubic Health, Columbia University, New York, New York, USA.
J Neurosci. 2008 Jul 2;28(27):6872-83. doi: 10.1523/JNEUROSCI.1815-08.2008.
Neuregulin-1 (Nrg1)/erbB signaling regulates neuronal development, migration, myelination, and synaptic maintenance. The Nrg1 gene is a schizophrenia susceptibility gene. To understand the contribution of Nrg1 signaling to adult brain structure and behaviors, we studied the regulation of type III Nrg1 expression and evaluated the effect of decreased expression of the type III Nrg1 isoforms. Type III Nrg1 is transcribed by a promoter distinct from those for other Nrg1 isoforms and, in the adult brain, is expressed in the medial prefrontal cortex, ventral hippocampus, and ventral subiculum, regions involved in the regulation of sensorimotor gating and short-term memory. Adult heterozygous mutant mice with a targeted disruption for type III Nrg1 (Nrg1(tm1.1Lwr+/-)) have enlarged lateral ventricles and decreased dendritic spine density on subicular pyramidal neurons. Magnetic resonance imaging of type III Nrg1 heterozygous mice revealed hypofunction in the medial prefrontal cortex and the hippocampal CA1 and subiculum regions. Type III Nrg1 heterozygous mice also have impaired performance on delayed alternation memory tasks, and deficits in prepulse inhibition (PPI). Chronic nicotine treatment eliminated differences in PPI between type III Nrg1 heterozygous mice and their wild-type littermates. Our findings demonstrate a role of type III Nrg1 signaling in the maintenance of corticostriatal components and in the neural circuits involved in sensorimotor gating and short-term memory.
神经调节蛋白-1(Nrg1)/erbB信号通路调节神经元的发育、迁移、髓鞘形成和突触维持。Nrg1基因是一种精神分裂症易感基因。为了解Nrg1信号通路对成体脑结构和行为的作用,我们研究了III型Nrg1表达的调控,并评估了III型Nrg1亚型表达降低的影响。III型Nrg1由一个与其他Nrg1亚型不同的启动子转录,在成体脑中,它在内侧前额叶皮质、腹侧海马和腹侧下托中表达,这些区域参与感觉运动门控和短期记忆的调节。III型Nrg1靶向敲除的成年杂合突变小鼠(Nrg1(tm1.1Lwr+/-))侧脑室扩大,下托锥体神经元上的树突棘密度降低。对III型Nrg1杂合小鼠的磁共振成像显示内侧前额叶皮质以及海马CA1和下托区域功能减退。III型Nrg1杂合小鼠在延迟交替记忆任务中的表现也受损,并且在预脉冲抑制(PPI)方面存在缺陷。慢性尼古丁治疗消除了III型Nrg1杂合小鼠与其野生型同窝小鼠在PPI上的差异。我们的研究结果表明III型Nrg1信号通路在维持皮质纹状体成分以及参与感觉运动门控和短期记忆的神经回路中发挥作用。