Ostroy S E
J Gen Physiol. 1978 Nov;72(5):717-32. doi: 10.1085/jgp.72.5.717.
The properties of the major visual pigment of Drosophila melanogaster were evaluated. The visual pigment was isolated from other protein components using acrylamide gel electrophoresis and spectral identification. Sodium dodecyl sulfate (SDS) acrylamide gels of the isolated visual pigment gave a single protein subunit with a mol wt of 37,000 daltons. The rhodopsin480 molar extinction coefficient was 35,000 liter/mol-cm (+/- 2,700 SE). The metarhodopsin580 molar extinction coefficient was approximately 56,000 liter/mol-cm. Microspectrophotometry was used to compare the rhodopsin concentrations in wild-type flies and norpA vision transduction mutants. At 2 days of age (12 h dark-12 h light cycle, 19 degrees C) all of the norpA flies exhibited a similar rhodopsin concentration (75% of the wild-type strain). By 21 days of age some of the norpA alleles showed substantially reduced rhodopsin concentrations (16-43% of normal), whereas others showed no major age-dependent decreases (68-77%). Temperature and light-dark cycle affected the reduction. Alleles with no receptor potential exhibited the largest decreases in rhodopsin concentration. The data indicate that the norpA phototransduction mutant has a defect in the system responsible for maintaining the rhodopsin480 concentration. This defect in the rhodopsin maintenance system does not appear to be the cause of the reduced electroretinogram (ERG) amplitude observed in some of these mutants, but instead is a consequence of the decrease in ERG amplitude, or the flaw(s) responsible for the decrease in ERG amplitude.
对黑腹果蝇主要视觉色素的特性进行了评估。利用丙烯酰胺凝胶电泳和光谱鉴定从其他蛋白质成分中分离出视觉色素。分离出的视觉色素的十二烷基硫酸钠(SDS)丙烯酰胺凝胶显示出一个分子量为37,000道尔顿的单一蛋白质亚基。视紫红质480的摩尔消光系数为35,000升/摩尔-厘米(±2,700标准误)。变视紫红质580的摩尔消光系数约为56,000升/摩尔-厘米。使用显微分光光度法比较野生型果蝇和norpA视觉转导突变体中的视紫红质浓度。在2日龄时(12小时黑暗-12小时光照循环,19摄氏度),所有norpA果蝇表现出相似的视紫红质浓度(野生型品系的75%)。到21日龄时,一些norpA等位基因显示视紫红质浓度大幅降低(正常水平的16%-43%),而其他等位基因则没有明显的年龄依赖性降低(68%-77%)。温度和明暗循环影响这种降低。没有感受器电位的等位基因视紫红质浓度下降幅度最大。数据表明,norpA光转导突变体在负责维持视紫红质480浓度的系统中存在缺陷。视紫红质维持系统中的这种缺陷似乎不是这些突变体中一些观察到的视网膜电图(ERG)振幅降低的原因,而是ERG振幅降低的结果,或者是导致ERG振幅降低的缺陷。