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Incorrect dosage of IQSEC2, a known intellectual disability and epilepsy gene, disrupts dendritic spine morphogenesis

机译:错误剂量的 IQSEC2 (一种已知的智力障碍和癫痫基因)破坏了树突棘的形态发生

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There is considerable genetic and phenotypic heterogeneity associated with intellectual disability (ID), specific learning disabilities, attention-deficit hyperactivity disorder, autism and epilepsy. The intelligence quotient (IQ) motif and SEC7 domain containing protein 2 gene ( IQSEC2 ) is located on the X-chromosome and harbors mutations that contribute to non-syndromic ID with and without early-onset seizure phenotypes in both sexes. Although IQ and Sec7 domain mutations lead to partial loss of IQSEC2 enzymatic activity, the in vivo pathogenesis resulting from these mutations is not known. Here we reveal that IQSEC2 has a key role in dendritic spine morphology. Partial loss-of-function mutations were modeled using a lentiviral short hairpin RNA (shRNA) approach, which achieved a 57% knockdown of Iqsec2 expression in primary hippocampal cell cultures from mice. Investigating gross morphological parameters after 8 days of in vitro culture (8DIV) identified a 32% reduction in primary axon length, in contrast to a 27% and 31% increase in the number and complexity of dendrites protruding from the cell body, respectively. This increase in dendritic complexity and spread was carried through dendritic spine development, with a 34% increase in the number of protrusions per dendritic segment compared with controls at 15DIV. Although the number of dendritic spines had normalized by 21DIV, a reduction was noted in the number of immature spines. In contrast, when modeling increased dosage, overexpression of wild-type IQSEC2 led to neurons with shorter axons that were more compact and displayed simpler dendritic branching. Disturbances to dendritic morphology due to knockdown of Iqsec2 were recapitulated in neurons from Iqsec2 knockout mice generated in our laboratory using CRISPR/Cas9 technology. These observations provide evidence of dosage sensitivity for IQSEC2 , which normally escapes X-inactivation in females, and links these disturbances in expression to alterations in the morphology of developing neurons.
机译:与智力障碍(ID),特定学习障碍,注意缺陷多动障碍,自闭症和癫痫症相关的遗传和表型异质性相当大。智商(IQ)基序和包含SEC7域的蛋白2基因(IQSEC2)位于X染色体上,并且具有导致非综合征性ID的突变,无论有无早发性癫痫发作表型,男女都有。尽管IQ和Sec7域突变导致IQSEC2酶促活性部分丧失,但由这些突变导致的体内发病机理尚不明确。在这里,我们揭示了IQSEC2在树突棘形态中具有关键作用。使用慢病毒短发夹RNA(shRNA)方法对部分功能丧失突变进行建模,该方法在小鼠原代海马细胞培养物中实现了Iqsec2表达57%的抑制。在8天的体外培养(8DIV)之后,研究总体形态学参数可确定初级轴突长度减少32%,而从细胞体突出的树突的数量和复杂性分别增加27%和31%。树突复杂性和扩散的这种增加是通过树突棘的发育而进行的,与15DIV的对照组相比,每个树突节段的突出数量增加了34%。尽管树突状棘的数量已通过21DIV标准化,但未成熟棘状的数量有所减少。相反,当模拟增加剂量时,野生型IQSEC2的过度表达导致轴突较短的神经元更紧凑,并显示较简单的树突分支。在我们的实验室中使用CRISPR / Cas9技术从Iqsec2敲除小鼠的神经元中概括了由于Iqsec2敲除对树突形态造成的干扰。这些观察结果提供了IQSEC2剂量敏感性的证据,IQSEC2通常在女性中逃脱X灭活,并将这些表达障碍与发育中的神经元形态改变联系起来。

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