Connors Nathan C, Kofuji Paulo
Department of Neuroscience, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Neurosci. 2002 Jun 1;22(11):4321-7. doi: 10.1523/JNEUROSCI.22-11-04321.2002.
The Müller cell is the principal glial cell of the vertebrate retina. The primary conductance in Müller cells is the inwardly rectifying potassium channel Kir4.1 (BIR10 and KAB-2), which is highly concentrated at the endfeet at the vitreal border and to processes enveloping blood vessels. Such asymmetric and clustered distribution of Kir4.1 channels in Müller cells is thought to be critical for the buffering of extracellular potassium concentration in retina. Herein we investigated whether the distribution and functional properties of Kir4.1 channels are dependent on expression of the Dp71, a dystrophin isoform expressed in Müller cells. Kir4.1 distribution was determined in mouse retinal sections and whole mounts using anti-Kir4.1 antibodies and confocal microscopy. In Müller cells from wild-type mice, Kir4.1 is highly clustered in their endfeet and perivascular processes. In contrast, in Müller cells from the mdx(3Cv) mouse, which lacks the expression of Dp71, the Kir4.1 immunoreactivity is evenly distributed throughout the cell membrane. Surface expression of Kir4.1 is not affected in mdx(3Cv) Müller cells as current density of barium-sensitive inward currents in mdx(3Cv) Müller cells are not different from wild type. Focal extracellular potassium increases in isolated Müller cells shows that Kir channels in the mdx(3Cv) cells, as opposed to wild type, are less prominently concentrated in their endfeet. In summary, our data indicate that Dp71 is critical for the clustering but not membrane expression of Kir4.1 in mouse Müller cells. These results point to a new role for dystrophin in glial cells.
穆勒细胞是脊椎动物视网膜的主要神经胶质细胞。穆勒细胞的主要电导是内向整流钾通道Kir4.1(BIR10和KAB - 2),其高度集中在玻璃体边界的终足以及包裹血管的突起处。穆勒细胞中Kir4.1通道的这种不对称且成簇的分布被认为对于视网膜细胞外钾离子浓度的缓冲至关重要。在此,我们研究了Kir4.1通道的分布和功能特性是否依赖于Dp71的表达,Dp71是一种在穆勒细胞中表达的肌营养不良蛋白异构体。使用抗Kir4.1抗体和共聚焦显微镜在小鼠视网膜切片和整装标本中确定Kir4.1的分布。在野生型小鼠的穆勒细胞中,Kir4.1高度聚集在其终足和血管周围突起中。相比之下,在缺乏Dp71表达的mdx(3Cv)小鼠的穆勒细胞中,Kir4.1免疫反应性均匀分布于整个细胞膜。mdx(3Cv)穆勒细胞中Kir4.1的表面表达不受影响,因为mdx(3Cv)穆勒细胞中钡敏感内向电流的电流密度与野生型没有差异。分离的穆勒细胞中局部细胞外钾离子增加表明,与野生型相反,mdx(3Cv)细胞中的Kir通道在其终足中的集中程度较低。总之,我们的数据表明Dp71对于小鼠穆勒细胞中Kir4.1的聚集而非膜表达至关重要。这些结果指出了肌营养不良蛋白在神经胶质细胞中的新作用。