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斑马鱼视网膜外网状层中谷氨酸能系统的超微结构分析。

Ultrastructural analysis of the glutamatergic system in the outer plexiform layer of zebrafish retina.

作者信息

Klooster Jan, Yazulla Stephen, Kamermans Maarten

机构信息

Department of Retinal Signal Processing, Netherlands Institute for Neuroscience-KNAW, Meibergdreef 47, 1105 BA Amsterdam, The Netherlands.

出版信息

J Chem Neuroanat. 2009 Jul;37(4):254-65. doi: 10.1016/j.jchemneu.2009.02.004. Epub 2009 Mar 5.

Abstract

L-Glutamate, the photoreceptor neurotransmitter, depolarizes horizontal cells and OFF-bipolar cells by ionotropic receptors and hyperpolarizes ON-bipolar cells by metabotropic receptors. Despite extensive light microscopy on the distribution of glutamate receptors in zebrafish retina, there are little ultrastructural data. Given the importance of zebrafish in studies on the genetic manipulation of retinal development and function, precise data on the synaptic neurochemical organization of the zebrafish retina is needed. Immunohistochemical techniques were used to determine the ultrastructural localization of glutamate receptor subunits GluR2, GluR4, NMDA2B (NR2B) and mGluR1alpha in zebrafish outer plexiform layer (OPL). These antibodies were chosen because of an apparent conservation of localization of GluR2, GluR4 and mGluR1alpha in the vertebrate OPL, while there is some support for NMDA receptors in the OPL. GluR2-immunoreactivity (IR) was in all horizontal cell dendrites that invaginated cone pedicles and rod spherules. Three arrangements of dendrites contained GluR-IR in rod spherules: classical-type with GluR2-IR on lateral horizontal cell dendrites, a butterfly-shaped horizontal cell dendrite, and a goblet-shaped dendrite, likely of bipolar cell origin. GluR4-IR was restricted to dendrites of OFF-bipolar cells that innervated rod and cone terminals. NR2B-IR was restricted to a subtype of cone ON-bipolar cell. mGluR1alpha-IR was restricted to ON mixed rod/cone (Mb) bipolar cells whose dendrites innervated rod and cone synaptic terminals. The presence of mGluR1alpha on Mb bipolar cell dendrites is consistent with a role in retrograde endocannabinoid suppression. The subunit composition of glutamate receptors should affect the kinetics and pharmacology of these cells to glutamate receptor activation.

摘要

光感受器神经递质L-谷氨酸通过离子型受体使水平细胞和OFF-双极细胞去极化,并通过代谢型受体使ON-双极细胞超极化。尽管对斑马鱼视网膜中谷氨酸受体的分布进行了广泛的光学显微镜观察,但超微结构数据却很少。鉴于斑马鱼在视网膜发育和功能的基因操作研究中的重要性,需要有关斑马鱼视网膜突触神经化学组织的精确数据。采用免疫组织化学技术确定斑马鱼外网状层(OPL)中谷氨酸受体亚基GluR2、GluR4、NMDA2B(NR2B)和mGluR1α的超微结构定位。选择这些抗体是因为GluR2、GluR4和mGluR1α在脊椎动物OPL中的定位明显保守,同时OPL中也有一些关于NMDA受体的证据。GluR2免疫反应性(IR)存在于所有内陷视锥小足和视杆小球的水平细胞树突中。视杆小球中有三种树突排列含有GluR-IR:外侧水平细胞树突上带有GluR2-IR的经典型、蝴蝶形水平细胞树突和可能起源于双极细胞的杯状树突。GluR4-IR仅限于支配视杆和视锥终末的OFF-双极细胞的树突。NR2B-IR仅限于视锥ON-双极细胞的一个亚型。mGluR1α-IR仅限于其树突支配视杆和视锥突触终末的ON混合视杆/视锥(Mb)双极细胞。Mb双极细胞树突上存在mGluR1α与逆行性内源性大麻素抑制作用一致。谷氨酸受体的亚基组成应会影响这些细胞对谷氨酸受体激活的动力学和药理学特性。

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