首页> 外文OA文献 >Structure and function in rhodopsin: correct folding and misfolding in point mutants at and in proximity to the site of the retinitis pigmentosa mutation Leu-125-->Arg in the transmembrane helix C.
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Structure and function in rhodopsin: correct folding and misfolding in point mutants at and in proximity to the site of the retinitis pigmentosa mutation Leu-125-->Arg in the transmembrane helix C.

机译:视紫红质的结构和功能:跨膜螺旋C中色素性视网膜色素变性Leu-125-> Arg突变位点及其附近的点突变体的正确折叠和错折叠。

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摘要

L125R is a mutation in the transmembrane helix C of rhodopsin that is associated with autosomal dominant retinitis pigmentosa. To probe the orientation of the helix and its packing in the transmembrane domain, we have prepared and studied the mutations E122R, I123R, A124R, S127R, L125F, and L125A at, and in proximity to, the above mutation site. Like L125R, the opsin expressed in COS-1 cells from E122R did not bind 11-cis-retinal, whereas those from I123R and S127R formed the rhodopsin chromophore partially. A124R opsin formed the rhodopsin chromophore (lambda max 495 nm) in the dark, but the metarhodopsin II formed on illumination decayed about 6.5 times faster than that of the wild type and was defective in transducin activation. The mutant opsins from L125F and L125A bound 11-cis-retinal only partially, and in both cases, the mixtures of the proteins produced were separated into retinal-binding and non-retinal-binding (misfolded) fractions. The purified mutant rhodopsin from L125F showed lambda max at 500 nm, whereas that from L125A showed lambda max at 503 nm. The mutant rhodopsin L125F showed abnormal bleaching behavior and both mutants on illumination showed destabilized metarhodopsin II species and reduced transducin activation. Because previous results have indicated that misfolding in rhodopsin is due to the formation of a disulfide bond other than the normal disulfide bond between Cys-110 and Cys-187 in the intradiscal domain, we conclude from the misfolding in mutants L125F and L125A that the folding in vivo in the transmembrane domain is coupled to that in the intradiscal domain.
机译:L125R是视紫红质的跨膜螺旋C突变,与常染色体显性遗传性视网膜色素变性有关。为了探查螺旋的方向及其在跨膜结构域中的堆积,我们准备并研究了上述突变位点及其附近的突变E122R,I123R,A124R,S127R,L125F和L125A。像L125R一样,E122R的COS-1细胞中表达的视蛋白不结合11-顺-视网膜,而I123R和S127R的视蛋白则部分形成视紫红质发色团。 A124R视蛋白在黑暗中形成了视紫红质发色团(λ最大495 nm),但在光照下形成的视紫红质II衰变速度比野生型快约6.5倍,并且在转导蛋白活化方面存在缺陷。来自L125F和L125A的突变视蛋白仅部分结合11-顺-视网膜,在两种情况下,产生的蛋白质混合物均被分离为视网膜结合和非视网膜结合(错折叠)部分。来自L125F的纯化突变体视紫红质在500 nm处显示最大λ,而来自L125A的突变体视紫红质在503 nm处显示最大λ。突变视紫红质L125F表现出异常的漂白行为,并且两个突变体在光照下均表现出不稳定的偏视紫红质II种类和降低的转导素激活。因为以前的结果表明视紫红质的错误折叠是由于在盘内域中Cys-110和Cys-187之间的正常二硫键以外的二硫键形成,所以我们从突变体L125F和L125A的错误折叠得出结论:跨膜结构域中的体内结合与盘内结构域中的结合。

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