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小鼠视杆细胞和视锥细胞之间的电耦合需要连接蛋白36的表达。

Connexin 36 expression is required for electrical coupling between mouse rods and cones.

作者信息

Asteriti Sabrina, Gargini Claudia, Cangiano Lorenzo

机构信息

Department of Translational Research,University of Pisa,Pisa,Italy.

Department of Pharmacy,University of Pisa,Pisa,Italy.

出版信息

Vis Neurosci. 2017 Jan;34:E006. doi: 10.1017/S0952523817000037.

Abstract

Rod-cone gap junctions mediate the so-called "secondary rod pathway", one of three routes that convey rod photoreceptor signals across the retina. Connexin 36 (Cx36) is expressed at these gap junctions, but an unidentified connexin protein also seems to be expressed. Cx36 knockout mice have been used extensively in the quest to dissect the roles in vision of all three pathways, with the assumption, never directly tested, that rod-cone electrical coupling is abolished by deletion of this connexin isoform. We previously showed that when wild type mouse cones couple to rods, their apparent dynamic range is extended toward lower light intensities, with the appearance of large responses to dim flashes (up to several mV) originating in rods. Here we recorded from the cones of Cx36del[LacZ]/del[LacZ] mice and found that dim flashes of the same intensity evoked at most small sub-millivolt responses. Moreover, these residual responses originated in the cones themselves, since: (i) their spectral preference matched that of the recorded cone and not of rods, (ii) their time-to-peak was shorter than in coupled wild type cones, (iii) a pharmacological block of gap junctions did not reduce their amplitude. Taken together, our data show that rod signals are indeed absent in the cones of Cx36 knockout mice. This study is the first direct demonstration that Cx36 is crucial for the assembly of functional rod-cone gap junctional channels, implying that its genetic deletion is a reliable experimental approach to eliminate rod-cone coupling.

摘要

视杆-视锥细胞间隙连接介导了所谓的“次级视杆通路”,这是将视杆光感受器信号传递穿过视网膜的三条途径之一。连接蛋白36(Cx36)在这些间隙连接中表达,但似乎也有另一种未鉴定的连接蛋白表达。Cx36基因敲除小鼠已被广泛用于研究所有这三条通路在视觉中的作用,人们一直假设(但从未直接验证),删除这种连接蛋白异构体可消除视杆-视锥细胞电耦合。我们之前表明,当野生型小鼠的视锥细胞与视杆细胞耦合时,它们的表观动态范围会向更低光强度扩展,出现对源自视杆细胞的昏暗闪光(高达几毫伏)的大反应。在这里,我们记录了Cx36del[LacZ]/del[LacZ]小鼠的视锥细胞,发现相同强度的昏暗闪光最多只能诱发小于一毫伏的小反应。此外,这些残余反应源自视锥细胞本身,因为:(i)它们的光谱偏好与记录的视锥细胞而非视杆细胞的光谱偏好相匹配,(ii)它们的峰值时间比耦合的野生型视锥细胞短,(iii)间隙连接的药理学阻断并没有降低它们的幅度。综上所述,我们的数据表明Cx36基因敲除小鼠的视锥细胞中确实不存在视杆细胞信号。这项研究首次直接证明Cx36对于功能性视杆-视锥细胞间隙连接通道的组装至关重要,这意味着其基因缺失是消除视杆-视锥细胞耦合的可靠实验方法。

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