Transcriptomic and proteomic retinal pigment epithelium signatures of age-related macular degeneration.
Transcriptomic and proteomic retinal pigment epithelium signatures of age-related macular degeneration.
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DOI:
10.1038/s41467-022-31707-4
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发表时间:
2022-07-26
影响因子:
16.6
通讯作者:
中科院分区:
文献类型:
--
作者:
There are currently no treatments for geographic atrophy, the advanced form of age-related macular degeneration. Hence, innovative studies are needed to model this condition and prevent or delay its progression. Induced pluripotent stem cells generated from patients with geographic atrophy and healthy individuals were differentiated to retinal pigment epithelium. Integrating transcriptional profiles of 127,659 retinal pigment epithelium cells generated from 43 individuals with geographic atrophy and 36 controls with genotype data, we identify 445 expression quantitative trait loci in cis that are asssociated with disease status and specific to retinal pigment epithelium subpopulations. Transcriptomics and proteomics approaches identify molecular pathways significantly upregulated in geographic atrophy, including in mitochondrial functions, metabolic pathways and extracellular cellular matrix reorganization. Five significant protein quantitative trait loci that regulate protein expression in the retinal pigment epithelium and in geographic atrophy are identified - two of which share variants with cis- expression quantitative trait loci, including proteins involved in mitochondrial biology and neurodegeneration. Investigation of mitochondrial metabolism confirms mitochondrial dysfunction as a core constitutive difference of the retinal pigment epithelium from patients with geographic atrophy. This study uncovers important differences in retinal pigment epithelium homeostasis associated with geographic atrophy. Age-related macular degeneration (AMD) is a leading cause of vision loss, and there is no approved treatment for AMD with geographic atrophy. Here, the authors used transcriptomic and proteomic analyses of patient induced pluripotent stem cell-derived retinal pigment epithelium to better understand disease mechanisms.
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影响因子:
14.9
作者:
Gene Ontology Consortium
通讯作者:
Gene Ontology Consortium
影响因子:
46.9
作者:
Becht, Etienne;McInnes, Leland;Newell, Evan W.
通讯作者:
Newell, Evan W.
DOI:
10.1126/science.1260793
发表时间:
2015-02-06
期刊:
Science (New York, N.Y.)
影响因子:
--
作者:
Battle A;Khan Z;Wang SH;Mitrano A;Ford MJ;Pritchard JK;Gilad Y
通讯作者:
Gilad Y
影响因子:
30.8
作者:
Das, Sayantan;Forer, Lukas;Schoenherr, Sebastian;Sidore, Carlo;Locke, Adam E.;Kwong, Alan;Vrieze, Scott I.;Chew, Emily Y.;Levy, Shawn;McGue, Matt;Schlessinger, David;Stambolian, Dwight;Loh, Po-Ru;Iacono, William G.;Swaroop, Anand;Scott, Laura J.;Cucca, Francesco;Kronenberg, Florian;Boehnke, Michael;Abecasis, Goncalo R.;Fuchsberger, Christian
通讯作者:
Fuchsberger, Christian
影响因子:
64.5
作者:
Cowan CS;Renner M;De Gennaro M;Gross-Scherf B;Goldblum D;Hou Y;Munz M;Rodrigues TM;Krol J;Szikra T;Cuttat R;Waldt A;Papasaikas P;Diggelmann R;Patino-Alvarez CP;Galliker P;Spirig SE;Pavlinic D;Gerber-Hollbach N;Schuierer S;Srdanovic A;Balogh M;Panero R;Kusnyerik A;Szabo A;Stadler MB;Orgül S;Picelli S;Hasler PW;Hierlemann A;Scholl HPN;Roma G;Nigsch F;Roska B
通讯作者:
Roska B