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首页> 外文期刊>Human Molecular Genetics >Exaggerated behavioral phenotypes in Fmr1/Fxr2 double knockout mice reveal a functional genetic interaction between Fragile X-related proteins
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Exaggerated behavioral phenotypes in Fmr1/Fxr2 double knockout mice reveal a functional genetic interaction between Fragile X-related proteins

机译:Fmr1 / Fxr2双敲除小鼠中夸大的行为表型揭示了脆性X相关蛋白之间的功能性遗传相互作用

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Individuals affected by Fragile X syndrome (FXS) experience cognitive impairment, hyperactivity, attention deficits, social anxiety and autistic-like behaviors. FXS results from the loss of expression of the Fragile X mental retardation (FMR1) gene, whose protein product FMRP is thought to play an important role in neuronal function and synaptic plasticity. Two paralogs of FMRP, FXR1P and FXR2P, have been identified, forming the Fragile X-related (FXR) family of proteins. Although the functions of FXR1P and FXR2P are not well understood, there are similarities among all three FXR proteins in gene structure, amino acid sequence, expression pattern and cellular functions. Mouse models have been described for loss of Fmrp, Fxr1p and Fxr2p, the mouse homologs of FMRP, FXR1P and FXR2P. In earlier studies, we found that Fmr1 knockout (KO) mice, which do not express Fmrp, and Fxr2 KO mice, which do not express Fxr2p, show similarities in some behavioral responses such as hyperactivity. To better understand the functional relationship between FMRP and FXR2P, we generated Fmr1 KO, Fxr2 KO, Fmr1/Fxr2 double KO and wild-type control mice as littermates on the same genetic background and examined them in several behavioral assays. Results show that Fmr1/Fxr2 double KO mice have exaggerated behavioral phenotypes in open-field activity, prepulse inhibition of acoustic startle response and contextual fear conditioning when compared with Fmr1 KO mice, Fxr2 KO mice or wild-type littermates. Our findings suggest that Fmr1 and Fxr2 genes contribute in a cooperative manner to pathways controlling locomotor activity, sensorimotor gating and cognitive processes.
机译:受脆弱X综合征(FXS)影响的个体会出现认知障碍,活动过度,注意力缺陷,社交焦虑和自闭症样行为。 FXS是由脆性X智力低下(FMR1)基因的表达丧失导致的,该蛋白的蛋白产物FMRP被认为在神经元功能和突触可塑性中起重要作用。已经确定了FMRP的两个旁系同源物FXR1P和FXR2P,它们形成了脆性X相关(FXR)蛋白质家族。尽管对FXR1P和FXR2P的功能尚不甚了解,但所有三种FXR蛋白在基因结构,氨基酸序列,表达模式和细胞功能方面都存在相似之处。已经描述了Fmrp,Fxr1p和Fxr2p(FMRP,FXR1P和FXR2P的小鼠同源物)丢失的小鼠模型。在较早的研究中,我们发现不表达Fmrp的Fmr1基因敲除(KO)小鼠和不表达Fxr2p的Fxr2 KO小鼠在某些行为反应(例如活动过度)中显示出相似之处。为了更好地了解FMRP和FXR2P之间的功能关系,我们在相同的遗传背景下生成了Fmr1 KO,Fxr2 KO,Fmr1 / Fxr2 double KO和野生型对照小鼠,并在几种行为分析中对其进行了检查。结果显示,与Fmr1 KO小鼠,Fxr2 KO小鼠或野生型同窝幼仔相比,Fmr1 / Fxr2双KO小鼠在野外活动,行为前惊吓听觉惊吓反应和情境恐惧条件方面具有夸大的行为表型。我们的发现表明,Fmr1和Fxr2基因以协作方式参与控制运动活动,感觉运动门控和认知过程的途径。

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