Department of Psychiatry, University of Pennsylvania, Philadelphia, PA 19104, USA.
Neurobiol Dis. 2012 Apr;46(1):88-92. doi: 10.1016/j.nbd.2011.12.048. Epub 2012 Jan 9.
Impairments in cortical sensory processing have been demonstrated in Rett syndrome (RTT) and Autism Spectrum Disorders (ASD) and are thought to contribute to high-order phenotypic deficits. However, underlying pathophysiological mechanisms for these abnormalities are unknown. This study investigated auditory sensory processing in a mouse model of RTT with a heterozygous loss of MeCP2 function. Cortical abnormalities in a number of neuropsychiatric disorders, including ASD are reflected in auditory evoked potentials and fields measured by EEG and MEG. One of these abnormalities, increased latency of cortically sourced components, is associated with language and developmental delay in autism. Additionally, gamma-band abnormalities have recently been identified as an endophenotype of idiopathic autism. Both of these cortical abnormalities are potential clinical endpoints for assessing treatment. While ascribing similar mechanisms of idiopathic ASD to Rett syndrome (RTT) has been controversial, we sought to determine if mouse models of RTT replicate these intermediate phenotypes. Mice heterozygous for the null mutations of the gene MeCP2, were implanted for EEG. In response to auditory stimulation, these mice recapitulated specific latency differences as well as select gamma and beta band abnormalities associated with ASD. MeCP2 disruption is the predominant cause of RTT, and reductions in MeCP2 expression predominate in ASD. This work further suggests a common cortical pathophysiology for RTT and ASD, and indicates that the MeCP2+/- model may be useful for preclinical development targeting specific cortical processing abnormalities in RTT with potential relevance to ASD.
皮质感觉处理障碍在雷特综合征(RTT)和自闭症谱系障碍(ASD)中已有研究证实,这些障碍被认为是导致高级表型缺陷的原因之一。然而,这些异常的潜在病理生理机制尚不清楚。本研究在 MeCP2 功能杂合缺失的 RTT 小鼠模型中研究了听觉感觉处理。包括 ASD 在内的许多神经精神疾病的皮质异常反映在 EEG 和 MEG 测量的听觉诱发电位和场中。这些异常之一,皮质来源成分的潜伏期延长,与自闭症中的语言和发育迟缓有关。此外,最近还发现γ频带异常是特发性自闭症的一个表型特征。这些皮质异常都是评估治疗效果的潜在临床终点。虽然将特发性 ASD 的类似机制归因于 RTT 一直存在争议,但我们试图确定 RTT 的小鼠模型是否复制了这些中间表型。MeCP2 基因杂合缺失的小鼠被植入 EEG。这些小鼠对听觉刺激的反应再现了特定的潜伏期差异,以及与 ASD 相关的特定γ和β频带异常。MeCP2 缺失是 RTT 的主要原因,而 ASD 中 MeCP2 的表达减少占主导地位。这项工作进一步表明 RTT 和 ASD 之间存在共同的皮质病理生理学,并表明 MeCP2+/-模型可能对特发性 RTT 具有特定皮质处理异常的临床前开发有用,具有潜在的 ASD 相关性。