Mutation in a short-chain collagen gene, CTRP5, results in extracellular deposit formation in late-onset retinal degeneration:: a genetic model for age-related macular degeneration

被引:150
作者
Hayward, C
Shu, XH
Lennon, A
Barran, P
Zareparsi, S
Sawyer, L
Hendry, G
Dhillon, B
Milam, AH
Luthert, PJ
Swaroop, A
Hastie, ND
Jacobson, SG
Wright, AF
机构
[1] Western Gen Hosp, MRC, Human Genet Unit, Edinburgh EH4 2XU, Midlothian, Scotland
[2] Univ Penn, Sch Med, Scheie Eye Inst, Dept Ophthalmol, Philadelphia, PA 19104 USA
[3] Univ Edinburgh, Sch Chem, Edinburgh, Midlothian, Scotland
[4] Univ Michigan, Dept Ophthalmol & Visual Sci, Ann Arbor, MI 48109 USA
[5] Univ Michigan, Dept Human Genet, Ann Arbor, MI 48109 USA
[6] Univ Edinburgh, Inst Cell & Mol Biol, Edinburgh, Midlothian, Scotland
[7] Univ Edinburgh, Royal Infirm Edinburgh, Dept Ophthalmol, Edinburgh EH3 9YW, Midlothian, Scotland
[8] UCL, Inst Ophthalmol, Dept Pathol, London, England
关键词
D O I
10.1093/hmg/ddg289
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A primary feature of age-related macular degeneration (AMD) is the presence of extracellular deposits between the retinal pigment epithelium (RPE) and underlying Bruch's membrane, leading to RPE dysfunction, photoreceptor death and severe visual loss. AMD accounts for about 50% of blind registrations in Western countries and is a common, genetically complex disorder. Very little is known regarding its molecular basis. Late-onset retinal degeneration (L-ORD) is an autosomal dominant disorder with striking clinical and pathological similarity to AMD. Here we show that L-ORD is genetically heterogeneous and that a proposed founder mutation in the CTRP5 (C1QTNF5) gene, which encodes a novel short-chain collagen, changes a highly conserved serine to arginine (Ser163Arg) in 7/14 L-ORD families and 0/1000 control individuals. The mutation occurs in the gC1q domain of CTRP5 and results in abnormal high molecular weight aggregate formation which may alter its higher-order structure and interactions. These results indicate a novel disease mechanism involving abnormal adhesion between RPE and Bruch's membrane.
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收藏
页码:2657 / 2667
页数:11
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