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Lanosterol reverses protein aggregation in cataracts

羊毛甾醇 白内障 晶体蛋白 化学 突变体 蛋白质聚集 体外 生物化学 蛋白质生物合成 细胞生物学 生物 胆固醇 遗传学 甾醇 基因
作者
Ling Zhao,Xiangjun Chen,Jie Zhu,Yibo Xi,Yang Xu,Lidan Hu,Hong Ouyang,Sherrina Patel,Xin Jin,Danni Lin,Frances Wu,Ken Flagg,Huimin Cai,Gen Li,Guiqun Cao,Ying Lin,Daniel Chen,Cindy Wen,Christopher Chung,Yan‐Dong Wang,Austin Qiu,Emily Yeh,Wenqiu Wang,Xun Hu,Seanna Grob,Ruben Abagyan,Zhiguang Su,Harry C. Tjondro,Xijuan Zhao,Hongrong Luo,Rui Hou,J. Jefferson,J. Jefferson P. Perry,Weiwei Gao,Igor Kozak,David B. Granet,Yingrui Li,Xiaodong Sun,Jun Wang,Liangfang Zhang,Yizhi Liu,Yong‐Bin Yan,Kang Zhang
出处
期刊:Nature [Springer Nature]
卷期号:523 (7562): 607-611 被引量:395
标识
DOI:10.1038/nature14650
摘要

The human lens is comprised largely of crystallin proteins assembled into a highly ordered, interactive macro-structure essential for lens transparency and refractive index. Any disruption of intra- or inter-protein interactions will alter this delicate structure, exposing hydrophobic surfaces, with consequent protein aggregation and cataract formation. Cataracts are the most common cause of blindness worldwide, affecting tens of millions of people1, and currently the only treatment is surgical removal of cataractous lenses. The precise mechanisms by which lens proteins both prevent aggregation and maintain lens transparency are largely unknown. Lanosterol is an amphipathic molecule enriched in the lens. It is synthesized by lanosterol synthase (LSS) in a key cyclization reaction of a cholesterol synthesis pathway. Here we identify two distinct homozygous LSS missense mutations (W581R and G588S) in two families with extensive congenital cataracts. Both of these mutations affect highly conserved amino acid residues and impair key catalytic functions of LSS. Engineered expression of wild-type, but not mutant, LSS prevents intracellular protein aggregation of various cataract-causing mutant crystallins. Treatment by lanosterol, but not cholesterol, significantly decreased preformed protein aggregates both in vitro and in cell-transfection experiments. We further show that lanosterol treatment could reduce cataract severity and increase transparency in dissected rabbit cataractous lenses in vitro and cataract severity in vivo in dogs. Our study identifies lanosterol as a key molecule in the prevention of lens protein aggregation and points to a novel strategy for cataract prevention and treatment.
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