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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Opsin localization and rhodopsin photochemistry in a transgenic mouse model of retinitis pigmentosa.
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Opsin localization and rhodopsin photochemistry in a transgenic mouse model of retinitis pigmentosa.

机译:色素性视网膜炎转基因小鼠模型中的视蛋白定位和视紫红质光化学。

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摘要

The VPP mouse is a transgenic strain carrying three mutations (P23H, V20G, P27L) near the N-terminus of opsin, the apoprotein of rhodopsin, the rod photopigment. These animals exhibit a slowly progressive degeneration of the rod photoreceptors, and concomitant changes in retinal function that mimic those seen in humans with autosomal dominant retinitis pigmentosa resulting from a point mutation (P23H) in opsin. In the present study we attempted to determine whether the disease process prevents the translocation of mutant opsin to the rod outer segments of transgenic mice, and whether it affects the photochemical properties of the rhodopsin present within their rod outer segments. Immunocytochemistry with a monoclonal antibody against a region of the C-terminus that recognizes epitopes common to both normal and mutant opsin (monoclonal antibody-1D4), and a polyclonal antibody that reacts preferentially with the mutant opsin (anti-VPP), were used to identify the opsin present in the rods of three-week-old VPP mice and normal littermates. Absorbance spectra, photosensitivity, and regeneration kinetics of rhodopsin in rod outer segment disc membranes were analysed by spectrophotometry. Western blot analysis with anti-VPP antibody indicated the specific binding of this antibody to the mutant opsin. Immunolocalization with monoclonal antibody-1D4 and anti-VPP antibodies suggested a normal translocation of the mutant protein to the outer segments. Aside from a small disparity in the absorbance spectra of rhodopsin obtained from normal and VPP retinas, there were no significant differences in either the ability of opsin to bind 11-cis retinal chromophore, or in the photic sensitivity of rhodopsin. The results indicate that mutant opsin is translated and incorporated into the rod outer segment disc membranes of VPP mice, and that the photochemical properties of rhodopsin in the rods of VPP retinas are similar to those of rhodopsin in normal retinas.
机译:VPP小鼠是一种转基因品系,在视蛋白的N端,视紫红质的脱辅基蛋白,杆状色素上带有三个突变(P23H,V20G,P27L)。这些动物表现出杆感光细胞的缓慢进行性退化,并伴随着视网膜功能的变化,从而模仿视蛋白中的点突变(P23H)导致常染色体显性遗传性视网膜色素变性的人类所见。在本研究中,我们试图确定疾病过程是否阻止突变视蛋白向转基因小鼠的杆外部片段的移位,以及是否影响视紫红质在其杆外部片段中存在的视紫红质的光化学特性。使用针对抗C末端区域的单克隆抗体进行免疫细胞化学分析,该抗体识别正常和突变视蛋白的共同抗原决定簇(单克隆抗体-1D4),以及优先与突变视蛋白(抗VPP)反应的多克隆抗体,用于鉴定三周龄VPP小鼠和正常同窝仔的视杆中存在的视蛋白。通过分光光度法分析视紫红质在杆外节段圆盘膜中的吸收光谱,光敏性和再生动力学。用抗VPP抗体进行的蛋白质印迹分析表明该抗体与突变视蛋白的特异性结合。单克隆抗体-1D4和抗VPP抗体的免疫定位表明突变蛋白可以正常转移到外部片段。除了从正常和VPP视网膜获得的视紫红质的吸收光谱上的微小差异外,视蛋白结合11-顺式视网膜生色团的能力或视紫红质的光敏性均无显着差异。结果表明突变视蛋白被翻译并整合到VPP小鼠的杆外段盘膜中,视紫红质在VPP视网膜的视杆中的光化学特性与视紫红质在正常视网膜中相似。

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