Raviola E, Gilula N B
Proc Natl Acad Sci U S A. 1973 Jun;70(6):1677-81. doi: 10.1073/pnas.70.6.1677.
In the outer plexiform layer of the retina the synaptic endings of cone cells make specialized junctions with each other and with the endings of rod cells. The ultrastructure of these interreceptor junctions is described in retinas of monkeys, rabbits, and turtles, in thin sections of embedded specimens and by the freeze-fracturing technique. Cone-to-rod junctions are ribbon-like areas of close membrane approximation. On either side of the narrowing of the intercellular space, the junctional membranes contain a row of particles located on the fracture face A (cytoplasmic leaflet), while the complementary element, a row of single depressions, is located on fracture face B. The particle rows are surrounded by a membrane region that is devoid of particulate inclusions and bears an adherent layer of dense cytoplasmic material. Cone-to-cone junctions in some places are identical to cone-to-rod junctions, while in other places they closely resemble typical gap junctions (nexus). Interreceptor junctions, therefore, represent a morphological variant of the gap junction, and probably mediate electrotonic coupling between neighboring photoreceptor cells.
在视网膜的外丛状层,视锥细胞的突触末端彼此之间以及与视杆细胞的末端形成特化连接。利用包埋标本的超薄切片和冷冻断裂技术,对猴子、兔子和乌龟视网膜中这些感受器间连接的超微结构进行了描述。视锥细胞与视杆细胞的连接是膜紧密贴近的带状区域。在细胞间隙变窄的两侧,连接膜在A面(细胞质片层)上含有一排颗粒,而互补结构,即一排单个凹陷,位于B面。颗粒排被一个没有颗粒内含物且带有一层致密细胞质物质附着层的膜区域所包围。视锥细胞与视锥细胞的连接在某些地方与视锥细胞与视杆细胞的连接相同,而在其他地方则与典型的缝隙连接(连接子)非常相似。因此,感受器间连接代表了缝隙连接的一种形态变体,可能介导相邻光感受器细胞之间的电紧张偶联。