Herr Steve, Ngo Ivy Tran, Huang Teresa M, Klug Karl, Sterling Peter, Schein Stan
Department of Psychology, Franz Hall, University of California, Los Angeles, Los Angeles, California, USA.
Vis Neurosci. 2011 Jan;28(1):17-28. doi: 10.1017/S0952523810000465.
As described in the companion paper, the synaptic terminal of a cone photoreceptor in macaque monkey makes an average of 35 or 46 basal contacts with the tips of the dendrites of its OFF midget bipolar cell. Each basal contact has one or more symmetrically thickened dense regions. These "Outer Densities," averaging 48 or 67 in number, harbor clusters of ionotropic glutamate receptors and are ~0.8 μm (and ~1-ms diffusion time) from active zones associated with synaptic ribbons. Here, we show similarly appearing "Inner Densities," averaging 53 or 74 in number, located more proximally on the dendrites of these OFF midget bipolar cells, ~0.4 μm inward from the tips of the dendrites and out of contact with the basal surface of the cone terminal. Compared to desmosome-like junctions, Inner Densities are closer to the terminal and are less dense and less thick. Each Inner Density is shared with another cell, the partners including diffuse bipolar cells, ON midget bipolar cells, and horizontal cells. Given the diversity of the partners, the OFF midget bipolar cells are unlikely to be in a synaptic relationship with the partners. Instead, Inner Densities are near enough to the active zones associated with synaptic ribbons to receive pulses of glutamate at concentrations effective for glutamate receptors. The role of Inner Densities is not known, but they might represent additional clusters of glutamate receptors.
如配套论文所述,猕猴视锥光感受器的突触终末与其OFF侏儒双极细胞树突尖端平均形成35个或46个基底接触。每个基底接触有一个或多个对称增厚的致密区。这些“外致密区”数量平均为48个或67个,含有离子型谷氨酸受体簇,距离与突触带相关的活性区约0.8μm(扩散时间约1毫秒)。在这里,我们展示了类似的“内致密区”,数量平均为53个或74个,位于这些OFF侏儒双极细胞树突更近端的位置,从树突尖端向内约0.4μm,与视锥终末的基底表面不接触。与桥粒样连接相比,内致密区更靠近终末,密度更低且更薄。每个内致密区与另一个细胞共享,其伙伴包括弥散双极细胞、ON侏儒双极细胞和水平细胞。鉴于伙伴的多样性,OFF侏儒双极细胞不太可能与这些伙伴处于突触关系。相反,内致密区距离与突触带相关的活性区足够近,能够接收对谷氨酸受体有效的浓度的谷氨酸脉冲。内致密区的作用尚不清楚,但它们可能代表额外的谷氨酸受体簇。