首页> 外文期刊>The Journal of biological chemistry >Conditional Deletion of Notch1 and Notch2 Genes in Excitatory Neurons of Postnatal Forebrain Does Not Cause Neurodegeneration or Reduction of Notch mRNAs and Proteins
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Conditional Deletion of Notch1 and Notch2 Genes in Excitatory Neurons of Postnatal Forebrain Does Not Cause Neurodegeneration or Reduction of Notch mRNAs and Proteins

机译:在产后前脑的兴奋性神经元中的诱发Notch1和Notch2基因的条件缺失不会导致神经变性或减少陷波MRNA和蛋白质

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Activation of Notch signaling requires intramembranous cleavage by γ-secretase to release the intracellular domain. We previously demonstrated that presenilin and nicastrin, components of the γ-secretase complex, are required for neuronal survival in the adult cerebral cortex. Here we investigate whether Notch1 and/or Notch2 are functional targets of presenilin/γ-secretase in promoting survival of excitatory neurons in the adult cerebral cortex by generating Notch1, Notch2, and Notch1/Notch2 conditional knock-out (cKO) mice. Unexpectedly, we did not detect any neuronal degeneration in the adult cerebral cortex of these Notch cKO mice up to ~2 years of age, whereas conditional inactivation of presenilin or nicastrin using the same αCaMKII-Cre transgenic mouse caused progressive, striking neuronal loss beginning at 4 months of age. More surprisingly, we failed to detect any reduction of Notch1 and Notch2 mRNAs and proteins in the cerebral cortex of Notch1 and Notch2 cKO mice, respectively, even though Cre-mediated genomic deletion of the floxed Notch1 and Notch2 exons clearly took place in the cerebral cortex of these cKO mice. Furthermore, introduction of Cre recombinase into primary cortical cultures prepared from postnatal floxed Notch1/Notch2 pups, where Notch1 and Notch2 are highly expressed, completely eliminated their expression, indicating that the floxed Notch1 and Notch2 alleles can be efficiently inactivated in the presence of Cre. Together, these results demonstrate that Notch1 and Notch2 are not involved in the age-related neurodegeneration caused by loss of presenilin or γ-secretase and suggest that there is no detectable expression of Notch1 and Notch2 in pyramidal neurons of the adult cerebral cortex.
机译:Notch信号传导的激活需要γ-分泌酶的intRammshous切割以释放细胞内结构域。我们之前证明了预衰老和尼卡斯汀,γ-分泌酶复合物的组分是成人脑皮质中的神经元存活所必需的。在这里,我们研究了Notch1和/或Notch2是否是Presenilin /γ-分泌酶的功能靶标,通过产生Notch1,Notch2和Notch1 / Notch2条件敲除(CKO)小鼠来促进成人脑皮质中兴奋性神经元的存活。出乎意料的是,我们没有检测到这些NOTCH CKO小鼠的成人脑皮层中的任何神经元变性,高达〜2岁,而使用相同的αcamkii-CRE转基因小鼠的PRESENILIN或NICASTRIN的条件失活,从而开始突出的神经元损失4个月的年龄。更令人惊讶的是,即使CRE介导的荧光的Notch1和Notch2外显然在脑皮层中清楚地发生过荧光的Notch1和Notch2外显子,也未能检测到Notch1和Notch2 MRNA和蛋白质的任何减少的Notch1和Notch2 mRNA和蛋白质。这些cko小鼠。此外,将CRE重组酶引入由产后氟化氟皿1 / Notch2幼崽制备的原发性皮质培养物,其中Notch1和Notch2高度表达,完全消除了它们的表达,表明浮油Notch1和Notch2等位基因可以在CRE存在下有效地灭活。这些结果表明,Notch1和Notch2不参与由Presenilin或γ-分泌酶的损失引起的年龄相关的神经变性,并表明成人脑皮质的金字塔1和Notch2中没有可检测到的表达。

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