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首页> 外文期刊>Human Molecular Genetics >Absence seizures in C3H/HeJ and knockout mice caused by mutation of the AMPA receptor subunit Gria4.
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Absence seizures in C3H/HeJ and knockout mice caused by mutation of the AMPA receptor subunit Gria4.

机译:由AMPA受体亚基Gria4突变引起的C3H / HeJ和基因敲除小鼠无癫痫发作。

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Absence epilepsy, characterized by spike-wave discharges (SWD) in the electroencephalogram, arises from aberrations within the circuitry of the cerebral cortex and thalamus that regulates awareness. The inbred mouse strain C3H/HeJ is prone to absence seizures, with a major susceptibility locus, spkw1, accounting for most of the phenotype. Here we find that spkw1 is associated with a hypomorphic retroviral-like insertion mutation in the Gria4 gene, encoding one of the four amino-3-hydroxy-5-methyl-4isoxazolepropionic acid (AMPA) receptor subunits in the brain. Consistent with this, Gria4 knockout mice also have frequent SWD and do not complement spkw1. In contrast, null mutants for the related gene Gria3 do not have SWD, and Gria3 loss actually lowers SWD of spkw1 homozygotes. Gria3 and Gria4 encode the predominant AMPA receptor subunits in the reticular thalamus, which is thought to play a central role in seizure genesis by inhibiting thalamic relay cells and promoting rebound burst firing responses. In Gria4 mutants, synaptic excitation of inhibitory reticular thalamic neurons is enhanced, with increased duration of synaptic responses-consistent with what might be expected from reduction of the kinetically faster subunit of AMPA receptors encoded by Gria4. These results demonstrate for the first time an essential role for Gria4 in the brain, and suggest that abnormal AMPA receptor-dependent synaptic activity can be involved in the network hypersynchrony that underlies absence seizures.
机译:缺乏性癫痫病的特征是脑电图中的尖峰波放电(SWD),其起因于调节大脑皮质和丘脑的回路中的畸变,从而调节意识。近交小鼠品系C3H / HeJ容易出现癫痫发作,主要的易感基因座spkw1,占大多数表型。在这里,我们发现spkw1与Gria4基因的亚型逆转录病毒样插入突变有关,该基因编码大脑中的四个氨基-3-羟基-5-甲基-4异恶唑丙酸(AMPA)受体亚基之一。与此相一致,Gria4基因敲除小鼠也具有频繁的SWD,并且不能补充spkw1。相反,相关基因Gria3的无效突变体没有SWD,而Gria3缺失实际上降低了spkw1纯合子的SWD。 Gria3和Gria4编码网状丘脑中主要的AMPA受体亚基,据认为在癫痫发作中起重要作用,其方式是抑制丘脑中继细胞并促进反弹性猝发放电反应。在Gria4突变体中,抑制性网状丘脑神经元的突触兴奋增强,突触反应持续时间增加,这与Gria4编码的AMPA受体动力学上更快的亚基减少所预期的一致。这些结果首次证明了Gria4在大脑中的重要作用,并表明异常的AMPA受体依赖性突触活性可能与缺乏癫痫发作的网络超同步性有关。

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