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Structure and function in rhodopsin: high level expression of a synthetic bovine opsin gene and its mutants in stable mammalian cell lines.

机译:在视紫红质中的结构和功能:合成的牛视蛋白基因及其突变体在稳定的哺乳动物细胞系中的高水平表达。

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摘要

Stable mammalian cell lines harboring a synthetic bovine opsin gene have been derived from the suspension-adapted HEK293 cell line. The opsin gene is under the control of the immediate-early cytomegalovirus promoter/enhancer in an expression vector that also contains a selectable marker (Neo) governed by a relatively weak promoter. The cell lines expressing the opsin gene at high levels are selected by growth in the presence of high concentrations of the antibiotic geneticin. Under the conditions used for cell growth in suspension, opsin is produced at saturated culture levels of more than 2 mg/liter. After reconstitution with 11-cis-retinal, rhodopsin is purified to homogeneity in a single step by immunoaffinity column chromatography. Rhodopsin thus prepared (> 90% recovery at concentrations of up to 15 microM) is indistinguishable from rhodopsin purified from bovine rod outer segments by the following criteria: (i) UV/Vis absorption spectra in the dark and after photobleaching and the rate of metarhodopsin II decay, (ii) initial rates of transducin activation, and (iii) the rate of phosphorylation by rhodopsin kinase. Although mammalian cell opsin migrates slower than rod outer segment opsin on SDS/polyacrylamide gels, presumably due to a different N-glycosylation pattern, their mobilities after deglycosylation are identical. This method has enabled the preparation of several site-specific mutants of bovine opsin in comparable amounts.
机译:带有合成牛视蛋白基因的稳定的哺乳动物细胞系已从适应悬浮液的HEK293细胞系中获得。视蛋白基因在表达载体中受早期早期巨细胞病毒启动子/增强子的控制,该表达载体还包含由相对弱的启动子控制的选择标记(Neo)。通过在高浓度的抗生素遗传霉素存在下生长来选择高水平表达视蛋白基因的细胞系。在悬浮液中用于细胞生长的条件下,视蛋白的饱和培养水平超过2 mg / L。用11-顺-视网膜重构后,视紫红质通过免疫亲和柱色谱一步纯化。由此制备的视紫红质(在高达15 microM的浓度下> 90%的回收率)与通过以下标准从牛杆外段纯化的视紫红质没有区别:(i)在黑暗中和光漂白后的UV / Vis吸收光谱和间紫红质的速率II衰减,(ii)转导蛋白活化的初始速率,和(iii)视紫红质激酶的磷酸化速率。尽管哺乳动物细胞视蛋白在SDS /聚丙烯酰胺凝胶上的迁移速度比杆状外段视蛋白慢,这可能是由于N-糖基化方式不同所致,但去糖基化后它们的迁移率是相同的。该方法使得能够以可比较的量制备牛视蛋白的几种位点特异性突变体。

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