The co-chaperone and reductase ERdj5 facilitates rod opsin biogenesis and quality control

被引:29
作者
Athanasiou, Dimitra [1 ]
Bevilacqua, Dalila [1 ]
Aguila, Monica [1 ]
McCulley, Caroline [1 ]
Kanuga, Naheed [1 ]
Iwawaki, Takao [2 ]
Chapple, J. Paul [3 ]
Cheetham, Michael E. [1 ]
机构
[1] UCL Inst Ophthalmol, London EC1V 9EL, England
[2] Gunma Univ, Adv Sci Res Leaders Dev Unit, Maebashi, Gunma 3718511, Japan
[3] Queen Mary Univ London, Barts & London Sch Med & Dent, William Harvey Res Inst, Ctr Endocrinol, London EC1M 6BQ, England
基金
英国惠康基金;
关键词
DOMINANT RETINITIS-PIGMENTOSA; ENDOPLASMIC-RETICULUM STRESS; DISULFIDE BOND FORMATION; RETINAL DEGENERATION; INTRADISCAL DOMAIN; CYSTEINE RESIDUE-110; MISFOLDED PROTEINS; UNFOLDED PROTEINS; INDUCED APOPTOSIS; MUTANT RHODOPSIN;
D O I
10.1093/hmg/ddu385
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Mutations in rhodopsin, the light-sensitive protein of rod cells, are the most common cause of autosomal dominant retinitis pigmentosa (ADRP). Many rod opsin mutations, such as P23H, lead to misfolding of rod opsin with detrimental effects on photoreceptor function and viability. Misfolded P23H rod opsin and other mutations in the intradiscal domain are characterized by the formation of an incorrect disulphide bond between C185 and C187, as opposed to the correct and highly conserved C110-C187 disulphide bond. Therefore, we tested the hypothesis that incorrect disulphide bond formation might be a factor that affects the biogenesis of rod opsin by studying wild-type (WT) or P23H rod opsin in combination with amino acid substitutions that prevent the formation of incorrect disulphide bonds involving C185. These mutants had altered traffic dynamics, suggesting a requirement for regulation of disulphide bond formation/reduction during rod opsin biogenesis. Here, we show that the BiP co-chaperone and reductase protein ERdj5 (DNAJC10) regulates this process. ERdj5 overexpression promoted the degradation, improved the endoplasmic reticulum mobility and prevented the aggregation of P23H rod opsin. ERdj5 reduction by shRNA delayed rod opsin degradation and promoted aggregation. The reductase and co-chaperone activity of ERdj5 were both required for these effects on P23Hrod opsin. Furthermore, mutations in these functional domains acted as dominant negatives that affected WT rod opsin biogenesis. Collectively, these data identify ERdj5 as a member of the proteostasis network that regulates rod opsin biogenesis and supports a role for disulphide bond formation/reduction in rod opsin biogenesis and disease.
引用
收藏
页码:6594 / 6606
页数:13
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