Lee R H, Lieberman B S, Hurwitz R L, Lolley R N
Invest Ophthalmol Vis Sci. 1985 Nov;26(11):1569-79.
The phosphodiesterase from the visual cells of rd mice and affected Irish setter dogs has been analyzed, using biochemical, biophysical, and immunological techniques. The authors' findings demonstrate that the mechanisms that cause a deficiency in phosphodiesterase activity in rd mice and Irish setter dogs are distinctly different. Apparently, the phosphodiesterase complex is normal in affected Irish setter dogs but is abnormal in rd mice. The criteria used for determining the normalcy of the phosphodiesterase complex were sedimentation characteristics, immuno-cross-reactivity, and histone-activation, which is shown to be a unique characteristic of the visual cell enzyme. According to these criteria, the phosphodiesterase complex in the visual cells of rd mice is either absent or abnormal from the onset of visual cell differentiation until degeneration, because it exhibits no cross-reactivity with antibody to phosphodiesterase; it is not activated by histone; and if present, it exhibits abnormal sedimentation characteristics and perhaps subunit structure. On the other hand, phosphodiesterase from the visual cells of affected Irish setter dogs is normal by the same criteria, because it cross-reacts with antibody against phosphodiesterase; it is activated by histone; and it exhibits normal sedimentation and electrophoretic patterns. It is proposed that depressed levels of phosphodiesterase activity in affected setter photoreceptors are due, perhaps, to a defect in the light-initiated cascade which activates the enzyme normally, in situ.
利用生化、生物物理和免疫学技术,对rd小鼠和患爱尔兰蹲猎犬视觉细胞中的磷酸二酯酶进行了分析。作者的研究结果表明,导致rd小鼠和爱尔兰蹲猎犬磷酸二酯酶活性缺乏的机制明显不同。显然,在患爱尔兰蹲猎犬中,磷酸二酯酶复合体是正常的,但在rd小鼠中是异常的。用于确定磷酸二酯酶复合体正常与否的标准是沉降特性、免疫交叉反应性和组蛋白激活,组蛋白激活被证明是视觉细胞酶的一个独特特征。根据这些标准,rd小鼠视觉细胞中的磷酸二酯酶复合体从视觉细胞分化开始到退化一直不存在或异常,因为它与磷酸二酯酶抗体没有交叉反应;它不被组蛋白激活;如果存在,它表现出异常的沉降特性,可能还有亚基结构。另一方面,患爱尔兰蹲猎犬视觉细胞中的磷酸二酯酶根据相同标准是正常的,因为它与抗磷酸二酯酶抗体发生交叉反应;它被组蛋白激活;并且它表现出正常的沉降和电泳模式。有人提出,患爱尔兰蹲猎犬光感受器中磷酸二酯酶活性水平降低可能是由于光引发的级联反应存在缺陷,而这种级联反应通常在原位激活该酶。