Contribution of common and rare variants to Asian neovascular age-related macular degeneration subtypes

Qiao Fan,Hengtong Li,Xiaomeng Wang,Yih-Chung Tham, Kelvin Yi Chong Teo,Masayuki Yasuda,Weng Khong Lim,Yuet Ping Kwan, Jing Xian Teo, Ching-Jou Chen,Li Jia Chen, Jeeyun Ahn,Sonia Davila, Masahiro Miyake,Patrick Tan, Kyu Hyung Park,Chi Pui Pang, Chiea Chuan Khor, Tien Yin Wong,Yasuo Yanagi, Chui Ming Gemmy Cheung,Ching-Yu Cheng

Nature Communications(2023)

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摘要
Neovascular age-related macular degeneration (nAMD), along with its clinical subtype known as polypoidal choroidal vasculopathy (PCV), are among the leading causes of vision loss in elderly Asians. In a genome-wide association study (GWAS) comprising 3,128 nAMD (1,555 PCV and 1,573 typical nAMD), and 5,493 controls of East Asian ancestry, we identify twelve loci, of which four are novel ( $$P \, < \, 1.19\times {10}^{-8}$$ ). Substantial genetic sharing between PCV and typical nAMD is noted (rg = 0.666), whereas collagen extracellular matrix and fibrosis-related pathways are more pronounced for PCV. Whole-exome sequencing in 259 PCV patients revealed functional rare variants burden in collagen type I alpha 1 chain gene (COL1A1; $$P=1.05\times {10}^{-6}$$ ) and potential enrichment of functional rare mutations at AMD-associated loci. At the GATA binding protein 5 (GATA5) locus, the most significant GWAS novel loci, the expressions of genes including laminin subunit alpha 5 (Lama5), mitochondrial ribosome associated GTPase 2 (Mtg2), and collagen type IX alpha 3 chain (Col9A3), are significantly induced during retinal angiogenesis and subretinal fibrosis in murine models. Furthermore, retinoic acid increased the expression of LAMA5 and MTG2 in vitro. Taken together, our data provide insights into the genetic basis of AMD pathogenesis in the Asian population. A deep understanding of the genetic signatures of neovascular age-related macular degeneration subtypes in Asian patients remains a significant gap. Here the authors pinpoint contributing common and rare variants using GWAS and exome sequencing approaches.
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macular degeneration subtypes,rare variants,asian,age-related
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