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小鼠视杆细胞通过与视锥细胞的间隙连接进行信号传递。

Mouse rods signal through gap junctions with cones.

作者信息

Asteriti Sabrina, Gargini Claudia, Cangiano Lorenzo

机构信息

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

出版信息

Elife. 2014;3:e01386. doi: 10.7554/eLife.01386. Epub 2014 Jan 7.

Abstract

Rod and cone photoreceptors are coupled by gap junctions (GJs), relatively large channels able to mediate both electrical and molecular communication. Despite their critical location in our visual system and evidence that they are dynamically gated for dark/light adaptation, the full impact that rod-cone GJs can have on cone function is not known. We recorded the photovoltage of mouse cones and found that the initial level of rod input increased spontaneously after obtaining intracellular access. This process allowed us to explore the underlying coupling capacity to rods, revealing that fully coupled cones acquire a striking rod-like phenotype. Calcium, a candidate mediator of the coupling process, does not appear to be involved on the cone side of the junctional channels. Our findings show that the anatomical substrate is adequate for rod-cone coupling to play an important role in vision and, possibly, in biochemical signaling among photoreceptors. DOI: http://dx.doi.org/10.7554/eLife.01386.001.

摘要

视杆和视锥光感受器通过间隙连接(GJs)相连,间隙连接是相对较大的通道,能够介导电信号和分子信号的传递。尽管它们在我们的视觉系统中处于关键位置,并且有证据表明它们会动态调节以适应暗/亮环境,但视杆 - 视锥间隙连接对视锥功能的全面影响尚不清楚。我们记录了小鼠视锥的光电压,发现获得细胞内通路后,视杆输入的初始水平会自发增加。这个过程使我们能够探究对视杆的潜在耦合能力,结果表明完全耦合的视锥呈现出显著的视杆样表型。钙作为耦合过程的候选介质,似乎并未参与连接通道的视锥侧。我们的研究结果表明,这种解剖学基础足以使视杆 - 视锥耦合在视觉以及光感受器之间的生化信号传递中发挥重要作用。DOI: http://dx.doi.org/10.7554/eLife.01386.001

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b71/3882429/5dd6c68e671a/elife01386f001.jpg

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