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A novel hypomorphic MECP2 point mutation is associated with a neuropsychiatric phenotype

机译:新的亚型MECP2点突变与神经精神病学表型有关。

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The MECP2 gene on Xq28 encodes a transcriptional repressor, which binds to and modulates expression of active genes. Mutations in MECP2 cause classic or preserved speech variant Rett syndrome and intellectual disability in females and early demise or marked neurodevelopmental handicap in males. The consequences of a hypomorphic Mecp2 allele were recently investigated in a mouse model, which developed obesity, motor, social, learning, and behavioral deficits, predicting a human neurobehavioral syndrome. Here, we describe mutation analysis of a nondysmorphic female proband and her father who presented with primarily neuropsychiatric manifestations and obesity with relative sparing of intelligence, language, growth, and gross motor skills. We identified and characterized a novel missense mutation (c.454C>G; p.P152A) in the critical methyl-binding domain of MeCP2 that disrupts MeCP2 functional activity. We show that a gradient of impairment is present when the p.P152A mutation is compared with an allelic p.P152R mutation, which causes classic Rett syndrome and another Rett syndrome-causing mutation, such that protein–heterochromatin binding observed by immunofluorescence and immunoblotting is wild-type > P152A > P152R > T158 M, consistent with the severity of the observed phenotype. Our findings provide evidence for very mild phenotypes in humans associated with partial reduction of MeCP2 function arising from subtle variation in MECP2.
机译:Xq28上的MECP2基因编码一个转录阻遏物,它与活性基因结合并调节其表达。 MECP2中的突变会导致女性出现经典或保留的言语变异Rett综合征和智力障碍,男性则早逝或出现明显的神经发育障碍。最近在小鼠模型中研究了亚型Mecp2等位基因的后果,该模型出现了肥胖,运动,社交,学习和行为缺陷,从而预测了人类神经行为综合症。在这里,我们描述了一个非畸形的女性先证者和她的父亲的突变分析,他们的父亲主要表现为神经精神病学表现和肥胖,相对于智力,语言,生长和总体运动技能相对较少。我们在MeCP2的关键甲基结合域中鉴定并鉴定了一种新颖的错义突变(c.454C> G; p.P152A),该突变会破坏MeCP2的功能活性。我们显示当将p.P152A突变与等位基因p.P152R突变进行比较时,存在一个梯度梯度,这会导致经典的Rett综合征和另一个引起Rett综合征的突变,因此通过免疫荧光和免疫印迹观察到的蛋白质-异染色质结合是野生型> P152A> P152R> T158 M,与观察到的表型严重程度一致。我们的发现为人的非常轻微的表型提供了证据,该表型与MECP2的细微变化引起的MeCP2功能的部分降低有关。

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