Qian Qi, Liu Qiuji, Zhou Dongming, Pan Hongyu, Liu Zhiwei, He Fangping, Ji Suying, Wang Dongpi, Bao Wangxiao, Liu Xinyi, Liu Zhaoling, Zhang Heng, Zhang Xiaoqin, Zhang Ling, Wang Mingkai, Xu Ying, Huang Fude, Luo Benyan, Sun Binggui
Department of Neurobiology, Key Laboratory of Medical Neurobiology, Ministry of Health of China.
Key Laboratory of Neurobiology of Zhejiang Province, and.
FASEB J. 2017 May;31(5):2104-2113. doi: 10.1096/fj.201601207R. Epub 2017 Feb 13.
Efr3 is a newly identified plasma membrane protein and plays an important role in the phosphoinositide metabolism on the plasma membrane. However, although it is highly expressed in the brain, the functional significance of Efr3 in the brain is not clear. In the present study, we generated mice and then crossed them with mice to delete Efr3a, one of the Efr3 isoforms, specifically in the brain. We found that brain-specific ablation of Efr3a promoted adult hippocampal neurogenesis by increasing survival and maturation of newborn neurons without affecting their dendritic tree morphology. Moreover, the brain-derived neurotrophic factor (BDNF)-tropomyosin-related kinase B (TrkB) signaling pathway was significantly enhanced in the hippocampus of Efr3a-deficient mice, as reflected by increased expression of BDNF, TrkB, and the downstream molecules, including phospho-MAPK and phospho-Akt. Furthermore, the number of TUNEL cells was decreased in the subgranular zone of dentate gyrus in Efr3a-deficient mice compared with that of control mice. Our data suggest that brain-specific deletion of Efr3a could promote adult hippocampal neurogenesis, presumably by upregulating the expression of BDNF and its receptor, TrkB, and therefore provide new insight into the roles of Efr3 in the brain.-Qian, Q., Liu, Q., Zhou, D., Pan, H., Liu, Z., He, F., Ji, S., Wang, D., Bao, W., Liu, X., Liu, Z., Zhang, H., Zhang, X., Zhang, L., Wang, M., Xu, Y., Huang, F., Luo, B., Sun B. Brain-specific ablation of Efr3a promotes adult hippocampal neurogenesis the brain-derived neurotrophic factor pathway.
Efr3是一种新发现的质膜蛋白,在质膜的磷酸肌醇代谢中起重要作用。然而,尽管它在大脑中高度表达,但其在大脑中的功能意义尚不清楚。在本研究中,我们构建了小鼠,然后将它们与小鼠杂交,以特异性地在大脑中删除Efr3的一种亚型Efr3a。我们发现,大脑特异性敲除Efr3a可通过增加新生神经元的存活和成熟来促进成年海马神经发生,而不影响其树突形态。此外,Efr3a缺陷小鼠海马中脑源性神经营养因子(BDNF)-原肌球蛋白相关激酶B(TrkB)信号通路显著增强,表现为BDNF、TrkB及其下游分子(包括磷酸化MAPK和磷酸化Akt)的表达增加。此外,与对照小鼠相比,Efr3a缺陷小鼠齿状回颗粒下区的TUNEL细胞数量减少。我们的数据表明,大脑特异性删除Efr3a可能通过上调BDNF及其受体TrkB的表达来促进成年海马神经发生,从而为Efr3在大脑中的作用提供新的见解。-钱,Q.,刘,Q.,周,D.,潘,H.,刘,Z.,何,F.,季,S.,王,D.,鲍,W.,刘,X.,刘,Z.,张,H.,张,X.,张,L.,王,M.,徐,Y.,黄,F.,罗,B.,孙,B.大脑特异性敲除Efr3a通过脑源性神经营养因子途径促进成年海马神经发生。