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Mecp2突变小鼠的疾病进展受脑源性神经营养因子(BDNF)表达水平的影响。

The disease progression of Mecp2 mutant mice is affected by the level of BDNF expression.

作者信息

Chang Qiang, Khare Gargi, Dani Vardhan, Nelson Sacha, Jaenisch Rudolf

机构信息

Whitehead Institute for Biomedical Research, Cambridge, Massachusetts 02142, USA.

出版信息

Neuron. 2006 Feb 2;49(3):341-8. doi: 10.1016/j.neuron.2005.12.027.

Abstract

Mutations in the MECP2 gene cause Rett syndrome (RTT). Bdnf is a MeCP2 target gene; however, its role in RTT pathogenesis is unknown. We examined Bdnf conditional mutant mice for RTT-relevant pathologies and observed that loss of BDNF caused smaller brain size, smaller CA2 neurons, smaller glomerulus size, and a characteristic hindlimb-clasping phenotype. BDNF protein level was reduced in Mecp2 mutant mice, and deletion of Bdnf in Mecp2 mutants caused an earlier onset of RTT-like symptoms. To assess whether this interaction was functional and potentially therapeutically relevant, we increased BDNF expression in the Mecp2 mutant brain with a conditional Bdnf transgene. BDNF overexpression extended the lifespan, rescued a locomotor defect, and reversed an electrophysiological deficit observed in Mecp2 mutants. Our results provide in vivo evidence for a functional interaction between Mecp2 and Bdnf and demonstrate the physiological significance of altered BDNF expression/signaling in RTT disease progression.

摘要

MECP2基因突变会导致雷特综合征(RTT)。脑源性神经营养因子(Bdnf)是MeCP2的一个靶基因;然而,其在RTT发病机制中的作用尚不清楚。我们检查了Bdnf条件性突变小鼠是否存在与RTT相关的病理特征,观察到BDNF的缺失导致脑体积减小、CA2神经元变小、肾小球尺寸减小以及特征性的后肢紧握表型。Mecp2突变小鼠的BDNF蛋白水平降低,在Mecp2突变体中删除Bdnf会导致RTT样症状更早出现。为了评估这种相互作用是否具有功能性以及可能与治疗相关,我们用条件性Bdnf转基因增加了Mecp2突变体大脑中的BDNF表达。BDNF的过表达延长了寿命,挽救了运动缺陷,并逆转了在Mecp2突变体中观察到的电生理缺陷。我们的结果为Mecp2和Bdnf之间的功能性相互作用提供了体内证据,并证明了BDNF表达/信号改变在RTT疾病进展中的生理意义。

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