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Double deletion of the active zone proteins CAST/ELKS in the mouse forebrain causes high mortality of newborn pups

机译:双重缺失的双鼠蛋白蛋白铸造/麋鹿导致新生儿幼仔的死亡率很高

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Presynaptic active zone cytomatrix proteins are essential elements of neurotransmitter release machinery that govern neural transmission. Among active zone proteins, cytomatrix at the active zone-associated structural protein (CAST) is known to regulate active zone size in retinal photoreceptors and neurotransmitter release by recruiting Ca2 channels at various synapses. However, the role of ELKS—a protein from the same family as CAST—and the synergistic roles of CAST/ELKS have not been thoroughly investigated, particularly with regard to mouse behavior. Here, we generated ELKS conditional KO in mouse forebrain synapses by crossing ELKS flox mice with a CaMKII promoter-induced Cre line. Results showed that CAST is dominant at these synapses and that ELKS can support CAST function, but is less effective in the ELKS single KO. Pups of CAST/ELKS double KO in the forebrain were born in Mendelian rations but resulted in eventual death right after the birth. Anatomically, the forebrain neuronal compositions of CAST KO and CAST/ELKS double KO mice were indistinguishable, and the sensory neural network from whiskers on the face was identified as barrelette-like patches in the spinal trigeminal nucleus. Therefore, depletion of CAST and ELKS disrupts neurotransmission from sensory to motor networks, which can lead to deficits in exploration and failure to suckle.
机译:突触前有源区Cytomatrix蛋白是治理神经传输的神经递质释放机械的必要因素。在有源区蛋白质中,已知在有源区相关结构蛋白(浇铸)的细胞瘤通过在各种突触处募集CA2通道来调节视网膜感受和神经递质释放的有源区尺寸。然而,Elks-A蛋白与与铸造/麋鹿的协同作用相同的蛋白质的作用尚未彻底研究,特别是关于小鼠行为。在这里,我们通过用Camkii启动子诱导的CRE线穿过麋鹿小鼠,在小鼠前脑突触中产生耳壳条件KO。结果表明,铸件在这些突触中占主导地位,并且麋鹿可以支持铸造功能,但在麋鹿单ko中不太有效。前脑中的铸造/麋鹿双KO的幼崽出生在孟德利亚的口粮中,但出生后导致最终死亡。解剖学上,铸造KO和铸造/耳朵的前脑神经元组合物难以区分,并且脸上的晶须的感官神经网络被鉴定为脊柱三核中的胆汁样贴片。因此,铸造和麋鹿的消耗扰乱了来自电机网络的感官的神经递质,这可能导致勘探和吮吸的缺陷。

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