Institute of Biomedicine, Physiology, University of Helsinki, Finland.
Genes Brain Behav. 2012 Jul;11(5):513-23. doi: 10.1111/j.1601-183X.2012.00784.x. Epub 2012 Apr 11.
Fragile X syndrome (FXS) is a common cause of inherited intellectual disability and a well-characterized form of autism spectrum disorder. As brain-derived neurotrophic factor (BDNF) is implicated in the pathophysiology of FXS we examined the effects of reduced BDNF expression on the behavioral phenotype of an animal model of FXS, Fmr1 knockout (KO) mice, crossed with mice carrying a deletion of one copy of the Bdnf gene (Bdnf(+/-)). Fmr1 KO mice showed age-dependent alterations in hippocampal BDNF expression that declined after the age of 4 months compared to wild-type controls. Mild deficits in water maze learning in Bdnf(+/-) and Fmr1 KO mice were exaggerated and contextual fear learning significantly impaired in double transgenics. Reduced BDNF expression did not alter basal nociceptive responses or central hypersensitivity in Fmr1 KO mice. Paradoxically, the locomotor hyperactivity and deficits in sensorimotor learning and startle responses characteristic of Fmr1 KO mice were ameliorated by reducing BNDF, suggesting changes in simultaneously and in parallel working hippocampus-dependent and striatum-dependent systems. Furthermore, the obesity normally seen in Bdnf(+/-) mice was eliminated by the absence of fragile X mental retardation protein 1 (FMRP). Reduced BDNF decreased the survival of newborn cells in the ventral part of the hippocampus both in the presence and absence of FMRP. Since a short neurite phenotype characteristic of newborn cells lacking FMRP was not found in cells derived from double mutant mice, changes in neuronal maturation likely contributed to the behavioral phenotype. Our results show that the absence of FMRP modifies the diverse effects of BDNF on the FXS phenotype.
脆性 X 综合征 (FXS) 是一种常见的遗传性智力障碍,也是一种特征明显的自闭症谱系障碍。由于脑源性神经营养因子 (BDNF) 与 FXS 的病理生理学有关,我们研究了 BDNF 表达减少对 FXS 动物模型(Fmr1 敲除 (KO) 小鼠)的行为表型的影响,这些小鼠与携带 Bdnf 基因一个拷贝缺失的小鼠(Bdnf(+/-))杂交。Fmr1 KO 小鼠表现出海马 BDNF 表达随年龄的变化,与野生型对照相比,4 个月后下降。Bdnf(+/-)和 Fmr1 KO 小鼠在水迷宫学习中出现轻度缺陷,双转基因鼠的情景恐惧学习显著受损。减少 BDNF 表达不会改变 Fmr1 KO 小鼠的基础痛觉反应或中枢敏化。矛盾的是,减少 BDNF 改善了 Fmr1 KO 小鼠的运动过度和感觉运动学习以及惊跳反应缺陷,表明同时和并行工作的海马依赖性和纹状体依赖性系统发生了变化。此外,Bdnf(+/-)小鼠通常出现的肥胖症由于脆性 X 智力低下蛋白 1 (FMRP) 的缺失而消除。减少 BDNF 减少了 FMRP 存在和不存在时海马腹侧新生细胞的存活。由于缺乏 FMRP 的新生细胞的短神经突表型在双突变体小鼠衍生的细胞中未发现,神经元成熟的变化可能导致了行为表型。我们的研究结果表明,FMRP 的缺失改变了 BDNF 对 FXS 表型的多种影响。