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Molecular and functional architecture of the mouse photoreceptor network

机译:小鼠感光体网络的分子和功能架构

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摘要

Mouse photoreceptors are electrically coupled via gap junctions, but the relative importance of rod/rod, cone/cone, or rod/cone coupling is unknown. Furthermore, while connexin36 (Cx36) is expressed by cones, the identity of the rod connexin has been controversial. We report that FACS-sorted rods and cones both express Cx36 but no other connexins. We created rod- and cone-specific Cx36 knockout mice to dissect the photoreceptor network. In the wild type, Cx36 plaques at rod/cone contacts accounted for more than 95% of photoreceptor labeling and paired recordings showed the transjunctional conductance between rods and cones was ~300 pS. When Cx36 was eliminated on one side of the gap junction, in either conditional knockout, Cx36 labeling and rod/cone coupling were almost abolished. We could not detect direct rod/rod coupling, and cone/cone coupling was minor. Rod/cone coupling is so prevalent that indirect rod/cone/rod coupling via the network may account for previous reports of rod coupling.
机译:鼠标光感受器通过间隙结电耦合,但杆/杆,锥形/锥形或杆耦合的相对重要性是未知的。此外,虽然Connexin36(CX36)由锥体表示,但棒Connexin的身份一直存在争议。我们报告了FACS排序的棒和锥体都表达CX36,但没有其他Connexins。我们创建了杆状和锥形的CX36敲除小鼠,以解析光感受器网络。在野生型中,杆/锥形触点的CX36斑块占95%的光感受器标记和配对录制显示杆和锥之间的横向电导〜300 ps。当CX36在间隙结的一侧消除时,在条件敲除,几乎废除了CX36标记和杆/锥耦合。我们无法检测到直接杆/杆耦合,锥形/锥形耦合是次要的。杆/锥形耦合如此普遍的是,通过网络的间接杆/锥形/杆耦合可能考虑到先前的杆耦合的报告。

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