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脉络丛上皮细胞中膜相关蛋白在正常和 slc4a10 敲除小鼠中的极化。

Polarization of membrane associated proteins in the choroid plexus epithelium from normal and slc4a10 knockout mice.

机构信息

Department of Biomedicine, Faculty of Health, Aarhus University Aarhus, Denmark.

出版信息

Front Physiol. 2013 Nov 27;4:344. doi: 10.3389/fphys.2013.00344. eCollection 2013.

Abstract

The choroid plexus epithelium (CPE) has served as a model-epithelium for cell polarization and transport studies and plays a crucial role for cerebrospinal fluid (CSF) production. The normal luminal membrane expression of Na(+),K(+)-ATPase, aquaporin-1 and Na(+)/H(+) exchanger 1 in the choroid plexus is severely affected by deletion of the slc4a10 gene that encodes the bicarbonate transporting protein Ncbe/NBCn2. The causes for these deviations from normal epithelial polarization and redistribution following specific gene knockout are unknown, but may be significant for basic epithelial cell biology. Therefore, a more comprehensive analysis of cell polarization in the choroid plexus is warranted. We find that the cytoskeleton in the choroid plexus contains αI-, αII-, βI-, and βII-spectrin isoforms along with the anchoring protein ankyrin-3, most of which are mainly localized in the luminal membrane domain. Furthermore, we find α-adducin localized near the plasma membranes globally, but with only faint expression in the luminal membrane domain. In slc4a10 knockout mice, the abundance of β1 Na(+),K(+)-ATPase subunits in the luminal membrane is markedly reduced. Anion exchanger 2 abundance is increased in slc4a10 knockout and its anchor protein, α-adducin is almost exclusively found near the basolateral domain. The αI- and βI-spectrin abundances are also decreased in the slc4a10 knockout, where the basolateral domain expression of αI-spectrin is exchanged for a strictly luminal domain localization. E-cadherin expression is unchanged in the slc4a10 knockout, while small decreases in abundance are observed for its probable adaptor proteins, the catenins. Interestingly, the abundance of the tight junction protein claudin-2 is significantly reduced in the slc4a10 knockouts, which may critically affect paracellular transport in this epithelium. The observations allow the generation of new hypotheses on basic cell biological paradigms that can be tested experimentally in future studies.

摘要

脉络丛上皮(CPE)一直是细胞极化和转运研究的模型上皮,对脑脊液(CSF)的产生起着至关重要的作用。正常情况下,Na(+)、K(+) -ATPase、水通道蛋白-1 和 Na(+) / H(+) 交换器 1 在脉络丛的腔膜表达会受到严重影响,因为 slc4a10 基因的缺失会导致碳酸氢盐转运蛋白 Ncbe/NBCn2 的编码。这些与正常上皮极化和特定基因敲除后再分布的偏差的原因尚不清楚,但可能对基本的上皮细胞生物学有重要意义。因此,需要对脉络丛的细胞极化进行更全面的分析。我们发现脉络丛的细胞骨架含有αI-、αII-、βI-和βII- spectrin 同工型以及锚蛋白 ankryin-3,其中大部分主要定位于腔膜域。此外,我们发现α-内收蛋白在整个质膜上局部化,但在腔膜域的表达很微弱。在 slc4a10 敲除小鼠中,腔膜上的β1 Na(+)、K(+) -ATPase 亚基的丰度明显降低。阴离子交换器 2 的丰度在 slc4a10 敲除中增加,其锚蛋白α-内收蛋白几乎只在基底外侧域附近发现。在 slc4a10 敲除中,αI-和βI-spectrin 的丰度也降低,其中αI-spectrin 的基底外侧域表达被严格的腔膜域定位取代。E-cadherin 在 slc4a10 敲除中的表达不变,但其可能的衔接蛋白连环蛋白的丰度略有下降。有趣的是,claudin-2 紧密连接蛋白的丰度在 slc4a10 敲除中显著降低,这可能严重影响该上皮细胞的旁细胞转运。这些观察结果为基本细胞生物学范式提供了新的假说,可以在未来的研究中通过实验进行检验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c12/3842056/3072425d2afc/fphys-04-00344-g0001.jpg

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