Liu X, Garriga P, Khorana H G
Department of Biology, Massachusetts Institute of Technology, Cambridge, 02139, USA.
Proc Natl Acad Sci U S A. 1996 May 14;93(10):4554-9. doi: 10.1073/pnas.93.10.4554.
The rhodopsin mutants P23H and G188R, identified in autosomal dominant retinitis pigmentosa (ADRP), and the site-specific mutants D190A and DeltaY191-Y192 were expressed in COS cells from synthetic mutant opsin genes containing these mutations. The proteins expressed from P23H and D190A partially regenerated the rhodopsin chromophore with 11-cis-retinal and were mixtures of the correctly folded (retinal-binding) and misfolded (non-retinal-binding) opsins. The mixtures were separated into pure, correctly folded mutant rhodopsins and misfolded opsins. The proteins expressed from the ADRP mutant G188R and the mutant DeltaY191-Y192 were composed of totally misfolded non-retinal-binding opsins. Far-UV CD spectra showed that the correctly folded mutant rhodopsins had helical content similar to that of the wild-type rhodopsin, whereas the misfolded opsins had helical content 50-70% of the wild type. The near-UV CD spectra of the misfolded mutant proteins lack the characteristic band pattern seen in the wild-type opsin, indicative of a different tertiary structure. Further, whereas the folded mutant rhodopsins were essentially resistant to trypsin digestion, the misfolded opsins were degraded to small fragments under the same conditions. Therefore, the misfolded opsins appear to be less compact in their structures than the correctly folded forms. We suggest that most, if not all, of the point mutations in the intradiscal domain identified in ADRP cause partial or complete misfolding of rhodopsin.
在常染色体显性视网膜色素变性(ADRP)中鉴定出的视紫红质突变体P23H和G188R,以及位点特异性突变体D190A和DeltaY191 - Y192,通过含有这些突变的合成突变视蛋白基因在COS细胞中表达。从P23H和D190A表达的蛋白质用11 - 顺式视黄醛部分再生视紫红质发色团,并且是正确折叠(视黄醛结合)和错误折叠(非视黄醛结合)视蛋白的混合物。这些混合物被分离成纯的、正确折叠的突变视紫红质和错误折叠的视蛋白。从ADRP突变体G188R和突变体DeltaY191 - Y192表达的蛋白质由完全错误折叠的非视黄醛结合视蛋白组成。远紫外圆二色光谱表明,正确折叠的突变视紫红质的螺旋含量与野生型视紫红质相似,而错误折叠的视蛋白的螺旋含量为野生型的50 - 70%。错误折叠的突变蛋白的近紫外圆二色光谱缺乏野生型视蛋白中所见的特征带模式,表明其三级结构不同。此外,虽然折叠的突变视紫红质基本上对胰蛋白酶消化有抗性,但在相同条件下错误折叠的视蛋白被降解成小片段。因此,错误折叠的视蛋白在结构上似乎不如正确折叠的形式紧密。我们认为,在ADRP中鉴定出的盘内结构域中的大多数(如果不是全部)点突变会导致视紫红质部分或完全错误折叠。