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视网膜 Müller 细胞终足的功能特化取决于两种肌联蛋白异构体之间的相互作用。

Functional specialization of retinal Müller cell endfeet depends on an interplay between two syntrophin isoforms.

机构信息

Division of Anatomy, Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Post box 1105, Blindern, 0317, Oslo, Norway.

Department of Physiology and Biophysics, University of Washington, Seattle, WA, 98195-7290, USA.

出版信息

Mol Brain. 2020 Mar 16;13(1):40. doi: 10.1186/s13041-020-00581-w.

Abstract

Retinal Müller cells are highly polarized macroglial cells with accumulation of the aquaporin-4 (AQP4) water channel and the inwardly rectifying potassium channel K4.1 at specialized endfoot membrane domains abutting microvessels and corpus vitreum. Proper water and potassium homeostasis in retina depends on these membrane specializations. Here we show that targeted deletion of β1-syntrophin leads to a partial loss of AQP4 from perivascular Müller cell endfeet and that a concomitant deletion of both α1- and β1-syntrophin causes a near complete loss of AQP4 from both perivascular and subvitreal endfoot membranes. α1-syntrophin is normally very weakly expressed in Müller cell endfeet but β1-syntrophin knockout mice display an increased amount of α1-syntrophin at these sites. We suggest that upregulation of perivascular α1-syntrophin restricts the effect of β1-syntrophin deletion. The present findings indicate that β1-syntrophin plays an important role in maintaining the functional polarity of Müller cells and that α1-syntrophin can partially substitute for β1-syntrophin in AQP4 anchoring. Functional polarization of Müller cells thus depends on an interplay between two syntrophin isoforms.

摘要

视网膜 Müller 细胞是高度极化的大胶质细胞,在与微血管和玻璃体毗邻的特化终足膜域积累水通道蛋白-4(AQP4)和内向整流钾通道 K4.1。视网膜中适当的水和钾离子稳态依赖于这些膜特化。在这里,我们表明靶向敲除β1-肌联蛋白会导致血管周围 Müller 细胞终足的 AQP4 部分丢失,并且同时敲除α1-和β1-肌联蛋白会导致血管周围和玻璃体下终足膜的 AQP4 几乎完全丢失。α1-肌联蛋白在 Müller 细胞终足中通常表达较弱,但β1-肌联蛋白敲除小鼠在这些部位显示出更多的α1-肌联蛋白。我们认为,血管周围α1-肌联蛋白的上调限制了β1-肌联蛋白缺失的影响。目前的研究结果表明,β1-肌联蛋白在维持 Müller 细胞的功能极性方面发挥着重要作用,并且α1-肌联蛋白可以部分替代 AQP4 锚定中的β1-肌联蛋白。因此,Müller 细胞的功能极化取决于两种肌联蛋白同工型之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb21/7074989/dffbfd36f128/13041_2020_581_Fig1_HTML.jpg

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