脆性 X 智力迟钝蛋白替代恢复脆性 X 综合征小鼠模型中海马突触功能。
Fragile X mental retardation protein replacement restores hippocampal synaptic function in a mouse model of fragile X syndrome.
机构信息
Department of Molecular Genetics and Microbiology, University of Florida College of Medicine, Gainesville, FL 32610-0266, USA.
出版信息
Gene Ther. 2009 Sep;16(9):1122-9. doi: 10.1038/gt.2009.83. Epub 2009 Jul 2.
Fragile X syndrome (FXS) is caused by a mutation that silences the fragile X mental retardation gene (FMR1), which encodes the fragile X mental retardation protein (FMRP). To determine whether FMRP replacement can rescue phenotypic deficits in a fmr1-knockout (KO) mouse model of FXS, we constructed an adeno-associated virus-based viral vector that expresses the major central nervous system (CNS) isoform of FMRP. Using this vector, we tested whether FMRP replacement could rescue the fmr1-KO phenotype of enhanced long-term depression (LTD), a form of synaptic plasticity that may be linked to cognitive impairments associated with FXS. Extracellular excitatory postsynaptic field potentials were recorded from CA3-CA1 synaptic contacts in hippocampal slices from wild-type (WT) and fmr1-KO mice in the presence of AP-5 and anisomycin. Paired-pulse low-frequency stimulation (PP-LFS)-induced LTD is enhanced in slices obtained from fmr1 KO compared with WT mice. Analyses of hippocampal synaptic function in fmr1-KO mice that received hippocampal injections of vector showed that the PP-LFS-induced LTD was restored to WT levels. These results indicate that expression of the major CNS isoform of FMRP alone is sufficient to rescue this phenotype and suggest that post-developmental protein replacement may have the potential to improve cognitive function in FXS.
脆性 X 综合征(FXS)是由一种导致脆性 X 智力迟钝基因(FMR1)沉默的突变引起的,该基因编码脆性 X 智力迟钝蛋白(FMRP)。为了确定 FMRP 替代是否可以挽救 FXS 的 fmr1 敲除(KO)小鼠模型中的表型缺陷,我们构建了一种基于腺相关病毒的病毒载体,该载体表达 FMRP 的主要中枢神经系统(CNS)同工型。使用该载体,我们测试了 FMRP 替代是否可以挽救增强型长时程抑制(LTD)的 fmr1-KO 表型,这是一种可能与 FXS 相关的认知障碍有关的突触可塑性形式。在存在 AP-5 和 anisomycin 的情况下,从野生型(WT)和 fmr1-KO 小鼠的海马切片中记录 CA3-CA1 突触接触的细胞外兴奋性突触后场电位。与 WT 小鼠相比,来自 fmr1 KO 的切片中,成对脉冲低频刺激(PP-LFS)诱导的 LTD 增强。对接受海马注射载体的 fmr1-KO 小鼠海马突触功能的分析表明,PP-LFS 诱导的 LTD 恢复到 WT 水平。这些结果表明,单独表达主要 CNS 同工型的 FMRP 足以挽救这种表型,并表明发育后蛋白替代可能具有改善 FXS 认知功能的潜力。