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在皮质-海马发育过程中 NKCC1 在神经元和非神经元细胞中的表达模式。

Expression patterns of NKCC1 in neurons and non-neuronal cells during cortico-hippocampal development.

机构信息

Molecular and Integrative Biosciences, University of Helsinki, 00014 Helsinki, Finland.

Neuroscience Center, Helsinki Institute of Life Science, University of Helsinki, 00014 Helsinki, Finland.

出版信息

Cereb Cortex. 2023 May 9;33(10):5906-5923. doi: 10.1093/cercor/bhac470.

Abstract

The Na-K-2Cl cotransporter NKCC1 is widely expressed in cells within and outside the brain. However, our understanding of its roles in brain functions throughout development, as well as in neuropsychiatric and neurological disorders, has been severely hindered by the lack of reliable data on its developmental and (sub)cellular expression patterns. We provide here the first properly controlled analysis of NKCC1 protein expression in various cell types of the mouse brain using custom-made antibodies and an NKCC1 knock-out validated immunohistochemical procedure, with parallel data based on advanced mRNA approaches. NKCC1 protein and mRNA are expressed at remarkably high levels in oligodendrocytes. In immature neurons, NKCC1 protein was located in the somata, whereas in adult neurons, only NKCC1 mRNA could be clearly detected. NKCC1 immunoreactivity is also seen in microglia, astrocytes, developing pericytes, and in progenitor cells of the dentate gyrus. Finally, a differential expression of NKCC1 splice variants was observed, with NKCC1a predominating in non-neuronal cells and NKCC1b in neurons. Taken together, our data provide a cellular basis for understanding NKCC1 functions in the brain and enable the identification of major limitations and promises in the development of neuron-targeting NKCC1-blockers.

摘要

钠钾 2 氯共转运蛋白 NKCC1 在大脑内外的多种细胞中广泛表达。然而,由于缺乏关于其在发育过程中以及神经精神和神经退行性疾病中的作用的可靠数据,我们对其的理解受到了严重阻碍。我们在这里使用定制的抗体和 NKCC1 敲除验证的免疫组织化学程序,对小鼠大脑中各种细胞类型的 NKCC1 蛋白表达进行了首次经过适当控制的分析,并提供了基于先进 mRNA 方法的平行数据。NKCC1 蛋白和 mRNA 在少突胶质细胞中表达水平极高。在未成熟的神经元中,NKCC1 蛋白位于胞体中,而在成熟的神经元中,只能清楚地检测到 NKCC1 mRNA。NKCC1 免疫反应性也见于小胶质细胞、星形胶质细胞、发育中的周细胞和齿状回的祖细胞中。最后,观察到 NKCC1 剪接变体的差异表达,其中 NKCC1a 在非神经元细胞中占优势,而 NKCC1b 在神经元中占优势。总之,我们的数据为理解 NKCC1 在大脑中的功能提供了细胞基础,并确定了针对神经元的 NKCC1 阻滞剂的开发中的主要局限性和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b321/10183754/482119d4eef8/bhac470f1.jpg

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