Hanna R B, Keeter J S, Pappas G D
J Cell Biol. 1978 Dec;79(3):764-73. doi: 10.1083/jcb.79.3.764.
The synapses between the lateral giant axon and the giant motor axon found in the abdominal ganglia of the ventral nerve cord of the crayfish Procambarus clarkii are electronic. The junctional membrane rectifies, favoring impulse transmission from lateral giant fiber to giant motor fiber. This rectifying electronic junction consists of closely apposed membranes indistinguishable from ordinary arthropod gap junctions. The apposed membranes contain intramembrane particles that are approximately 12.5 nm in width. These particles have a central depression and are arranged in a loosely ordered array with a center-to-center spacing of about 20 nm. The only obvious morphological evidence of asymmetry is the presence of vesicles (about 80 nm in diameter) in the cytoplasm adjacent to the junctional region of the presynaptic lateral giant fiber. Vesicles are not present in the adjacent cytoplasm of the postsynaptic giant motor fiber; however, mitochondria and smooth tubular endoplasmic reticulum are more frequent in the cytoplasm of the giant motor fiber.
在克氏原螯虾腹神经索腹神经节中发现的外侧巨轴突与巨运动轴突之间的突触是电突触。连接膜具有整流作用,有利于冲动从外侧巨纤维向巨运动纤维传递。这种整流电突触由紧密并列的膜组成,与普通节肢动物间隙连接难以区分。并列的膜含有宽度约为12.5nm的膜内颗粒。这些颗粒有一个中央凹陷,以松散有序的阵列排列,中心间距约为20nm。不对称的唯一明显形态学证据是在突触前外侧巨纤维连接区域相邻的细胞质中存在小泡(直径约80nm)。突触后巨运动纤维相邻的细胞质中不存在小泡;然而,线粒体和光滑管状内质网在巨运动纤维的细胞质中更常见。