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Modes of Accessing Bicarbonate for the Regulation of Membrane Guanylate Cyclase (ROS-GC) in Retinal Rods and Cones

机译:碳酸氢盐调节视网膜棒和视锥细胞膜鸟苷酸环化酶(ROS-GC)的方式。

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摘要

The membrane guanylate cyclase, ROS-GC, that synthesizes cyclic GMP for use as a second messenger for visual transduction in retinal rods and cones, is stimulated by bicarbonate. Bicarbonate acts directly on ROS-GC1, because it enhanced the enzymatic activity of a purified, recombinant fragment of bovine ROS-GC1 consisting solely of the core catalytic domain. Moreover, recombinant ROS-GC1 proved to be a true sensor of bicarbonate, rather than a sensor for CO2. Access to bicarbonate differed in rods and cones of larval salamander, Ambystoma tigrinum, of unknown sex. In rods, bicarbonate entered at the synapse and diffused to the outer segment, where it was removed by Cl--dependent exchange. In contrast, cones generated bicarbonate internally from endogenous CO2 or from exogenous CO2 that was present in extracellular solutions of bicarbonate. Bicarbonate production from both sources of CO2 was blocked by the carbonic anhydrase inhibitor, acetazolamide. Carbonic anhydrase II expression was verified immunohistochemically in cones but not in rods. In addition, cones acquired bicarbonate at their outer segments as well as at their inner segments. The multiple pathways for access in cones may support greater uptake of bicarbonate than in rods and buffer changes in its intracellular concentration.
机译:碳酸氢盐刺激了膜鸟苷酸环化酶ROS-GC,该环鸟苷环化酶合成了环状GMP,用作视网膜视棒和视锥中的视觉转导的第二信使。碳酸氢盐直接作用于ROS-GC1,因为它增强了仅由核心催化结构域组成的牛ROS-GC1纯化重组片段的酶促活性。此外,重组ROS-GC1被证明是真正的碳酸氢盐传感器,而不是二氧化碳传感器。幼虫sal,虎纹小虾(Ambystoma tigrinum)的杆状和锥状,其性别未知,获取碳酸氢盐的方式有所不同。在杆中,碳酸氢盐进入突触并扩散到外部,在此处通过Cl -依赖性交换将其除去。相反,视锥细胞从内源性CO2或存在于碳酸氢根细胞外溶液中的外源性CO2内部产生碳酸氢根。从两种二氧化碳来源产生的碳酸氢盐都被碳酸酐酶抑制剂乙酰唑胺阻止。碳酸酐酶II的表达在锥体中进行了免疫组织化学验证,但未在棒中进行过验证。此外,视锥细胞在其外部和内部均获得了碳酸氢盐。视锥细胞中的多种通路可能比棍棒中的碳酸氢盐吸收更多,并缓冲其细胞内浓度的变化。

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