Ebrahimi Majid, Yamamoto Yui, Sharifi Kazem, Kida Hiroyuki, Kagawa Yoshiteru, Yasumoto Yuki, Islam Ariful, Miyazaki Hirofumi, Shimamoto Chie, Maekawa Motoko, Mitsushima Dai, Yoshikawa Takeo, Owada Yuji
Department of Organ Anatomy, Yamaguchi University Graduate School of Medicine, Ube, Japan.
Department of Organ Anatomy, Tohoku University Graduate School of Medicine, Sendai, Japan.
Glia. 2016 Jan;64(1):48-62. doi: 10.1002/glia.22902. Epub 2015 Aug 21.
Fatty acid binding protein 7 (FABP7) expressed by astrocytes in developing and mature brains is involved in uptake and transportation of fatty acids, signal transduction, and gene transcription. Fabp7 knockout (Fabp7 KO) mice show behavioral phenotypes reminiscent of human neuropsychiatric disorders such as schizophrenia. However, direct evidence showing how FABP7 deficiency in astrocytes leads to altered brain function is lacking. Here, we examined neuronal dendritic morphology and synaptic plasticity in medial prefrontal cortex (mPFC) of Fabp7 KO mice and in primary cortical neuronal cultures. Golgi staining of cortical pyramidal neurons in Fabp7 KO mice revealed aberrant dendritic morphology and decreased spine density compared with those in wild-type (WT) mice. Aberrant dendritic morphology was also observed in primary cortical neurons co-cultured with FABP7-deficient astrocytes and neurons cultured in Fabp7 KO astrocyte-conditioned medium. Excitatory synapse number was decreased in mPFC of Fabp7 KO mice and in neurons co-cultured with Fabp7 KO astrocytes. Accordingly, whole-cell voltage-clamp recording in brain slices from pyramidal cells in the mPFC showed that both amplitude and frequency of action potential-independent miniature excitatory postsynaptic currents (mEPSCs) were decreased in Fabp7 KO mice. Moreover, transplantation of WT astrocytes into the mPFC of Fabp7 KO mice partially attenuated behavioral impairments. Collectively, these results suggest that astrocytic FABP7 is important for dendritic arbor growth, neuronal excitatory synapse formation, and synaptic transmission, and provide new insights linking FABP7, lipid homeostasis, and neuropsychiatric disorders, leading to novel therapeutic interventions.
发育中和成熟大脑中的星形胶质细胞所表达的脂肪酸结合蛋白7(FABP7)参与脂肪酸的摄取与运输、信号转导及基因转录。Fabp7基因敲除(Fabp7 KO)小鼠表现出的行为表型让人联想到精神分裂症等人类神经精神疾病。然而,目前尚缺乏直接证据表明星形胶质细胞中FABP7的缺乏如何导致脑功能改变。在此,我们研究了Fabp7 KO小鼠内侧前额叶皮质(mPFC)以及原代皮质神经元培养物中的神经元树突形态和突触可塑性。与野生型(WT)小鼠相比,Fabp7 KO小鼠皮质锥体神经元的高尔基染色显示出异常的树突形态和降低的棘密度。在与FABP7缺陷型星形胶质细胞共培养的原代皮质神经元以及在Fabp7 KO星形胶质细胞条件培养基中培养的神经元中也观察到了异常的树突形态。Fabp7 KO小鼠的mPFC以及与Fabp7 KO星形胶质细胞共培养的神经元中,兴奋性突触数量减少。相应地,对mPFC锥体细胞脑片进行的全细胞电压钳记录显示,Fabp7 KO小鼠中与动作电位无关的微小兴奋性突触后电流(mEPSCs)的幅度和频率均降低。此外,将野生型星形胶质细胞移植到Fabp7 KO小鼠的mPFC中可部分减轻行为障碍。总体而言,这些结果表明星形胶质细胞FABP7对树突分支生长、神经元兴奋性突触形成和突触传递很重要,并为连接FABP7、脂质稳态和神经精神疾病提供了新见解,从而带来新的治疗干预措施。