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author Kaneko, Hiroki
Dridi, Sami
Tarallo, Valeria
Gelfand, Bradley D.
Fowler, Benjamin J.
Cho, Won Gil
Kleinman, Mark E.
Ponicsan, Steven L.
Hauswirth, William W.
Chiodo, Vince A.
Karikó, Katalin
Yoo, Jae Wook
Lee, Dong-ki
Hadziahmetovic, Majda
Song, Ying
Misra, Smita
Chaudhuri, Gautam
Buaas, Frank W.
Braun, Robert E.
Hinton, David R.
Zhang, Qing
Grossniklaus, Hans E.
Provis, Jan M.
Madigan, Michele C.
Milam, Ann H.
Justice, Nikki L.
Albuquerque, Romulo J.C.
Blandford, Alexander D.
Bogdanovich, Sasha
Hirano, Yoshio
Witta, Jassir
Fuchs, Elaine
Littman, Dan R.
Ambati, Balamurali K.
Rudin, Charles M.
Chong, Mark M.W.
Provost, Patrick
Kugel, Jennifer F.
Goodrich, James A.
Dunaief, Joshua L.
Baffi, Judit Z.
Ambati, Jayakrishna
author_facet Kaneko, Hiroki
Dridi, Sami
Tarallo, Valeria
Gelfand, Bradley D.
Fowler, Benjamin J.
Cho, Won Gil
Kleinman, Mark E.
Ponicsan, Steven L.
Hauswirth, William W.
Chiodo, Vince A.
Karikó, Katalin
Yoo, Jae Wook
Lee, Dong-ki
Hadziahmetovic, Majda
Song, Ying
Misra, Smita
Chaudhuri, Gautam
Buaas, Frank W.
Braun, Robert E.
Hinton, David R.
Zhang, Qing
Grossniklaus, Hans E.
Provis, Jan M.
Madigan, Michele C.
Milam, Ann H.
Justice, Nikki L.
Albuquerque, Romulo J.C.
Blandford, Alexander D.
Bogdanovich, Sasha
Hirano, Yoshio
Witta, Jassir
Fuchs, Elaine
Littman, Dan R.
Ambati, Balamurali K.
Rudin, Charles M.
Chong, Mark M.W.
Provost, Patrick
Kugel, Jennifer F.
Goodrich, James A.
Dunaief, Joshua L.
Baffi, Judit Z.
Ambati, Jayakrishna
author_sort Kaneko, Hiroki
collection PubMed
description Geographic atrophy (GA), an untreatable advanced form of age-related macular degeneration, results from retinal pigmented epithelium (RPE) cell death. Here we show that the microRNA (miRNA)-processing enzyme DICER1 is reduced in the RPE of humans with GA, and that conditional ablation of Dicer1, but not seven other miRNA-processing enzymes, induces RPE degeneration in mice. DICER1 knockdown induces accumulation of Alu RNA in human RPE cells and Alu-like B1 and B2 RNAs in mouse RPE. Alu RNA is increased in the RPE of humans with GA, and this pathogenic RNA induces human RPE cytotoxicity and RPE degeneration in mice. Antisense oligonucleotides targeting Alu/B1/B2 RNAs prevent DICER1 depletion-induced RPE degeneration despite global miRNA downregulation. DICER1 degrades Alu RNA, and this digested Alu RNA cannot induce RPE degeneration in mice. These findings reveal a miRNA-independent cell survival function for DICER1 involving retrotransposon transcript degradation, show that Alu RNA can directly cause human pathology, and identify new targets for a major cause of blindness.
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spelling pubmed-30770552011-09-17 DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration Kaneko, Hiroki Dridi, Sami Tarallo, Valeria Gelfand, Bradley D. Fowler, Benjamin J. Cho, Won Gil Kleinman, Mark E. Ponicsan, Steven L. Hauswirth, William W. Chiodo, Vince A. Karikó, Katalin Yoo, Jae Wook Lee, Dong-ki Hadziahmetovic, Majda Song, Ying Misra, Smita Chaudhuri, Gautam Buaas, Frank W. Braun, Robert E. Hinton, David R. Zhang, Qing Grossniklaus, Hans E. Provis, Jan M. Madigan, Michele C. Milam, Ann H. Justice, Nikki L. Albuquerque, Romulo J.C. Blandford, Alexander D. Bogdanovich, Sasha Hirano, Yoshio Witta, Jassir Fuchs, Elaine Littman, Dan R. Ambati, Balamurali K. Rudin, Charles M. Chong, Mark M.W. Provost, Patrick Kugel, Jennifer F. Goodrich, James A. Dunaief, Joshua L. Baffi, Judit Z. Ambati, Jayakrishna Nature Article Geographic atrophy (GA), an untreatable advanced form of age-related macular degeneration, results from retinal pigmented epithelium (RPE) cell death. Here we show that the microRNA (miRNA)-processing enzyme DICER1 is reduced in the RPE of humans with GA, and that conditional ablation of Dicer1, but not seven other miRNA-processing enzymes, induces RPE degeneration in mice. DICER1 knockdown induces accumulation of Alu RNA in human RPE cells and Alu-like B1 and B2 RNAs in mouse RPE. Alu RNA is increased in the RPE of humans with GA, and this pathogenic RNA induces human RPE cytotoxicity and RPE degeneration in mice. Antisense oligonucleotides targeting Alu/B1/B2 RNAs prevent DICER1 depletion-induced RPE degeneration despite global miRNA downregulation. DICER1 degrades Alu RNA, and this digested Alu RNA cannot induce RPE degeneration in mice. These findings reveal a miRNA-independent cell survival function for DICER1 involving retrotransposon transcript degradation, show that Alu RNA can directly cause human pathology, and identify new targets for a major cause of blindness. 2011-02-06 2011-03-17 /pmc/articles/PMC3077055/ /pubmed/21297615 http://dx.doi.org/10.1038/nature09830 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kaneko, Hiroki
Dridi, Sami
Tarallo, Valeria
Gelfand, Bradley D.
Fowler, Benjamin J.
Cho, Won Gil
Kleinman, Mark E.
Ponicsan, Steven L.
Hauswirth, William W.
Chiodo, Vince A.
Karikó, Katalin
Yoo, Jae Wook
Lee, Dong-ki
Hadziahmetovic, Majda
Song, Ying
Misra, Smita
Chaudhuri, Gautam
Buaas, Frank W.
Braun, Robert E.
Hinton, David R.
Zhang, Qing
Grossniklaus, Hans E.
Provis, Jan M.
Madigan, Michele C.
Milam, Ann H.
Justice, Nikki L.
Albuquerque, Romulo J.C.
Blandford, Alexander D.
Bogdanovich, Sasha
Hirano, Yoshio
Witta, Jassir
Fuchs, Elaine
Littman, Dan R.
Ambati, Balamurali K.
Rudin, Charles M.
Chong, Mark M.W.
Provost, Patrick
Kugel, Jennifer F.
Goodrich, James A.
Dunaief, Joshua L.
Baffi, Judit Z.
Ambati, Jayakrishna
DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title_full DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title_fullStr DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title_full_unstemmed DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title_short DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration
title_sort dicer1 deficit induces alu rna toxicity in age-related macular degeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3077055/
https://www.ncbi.nlm.nih.gov/pubmed/21297615
http://dx.doi.org/10.1038/nature09830
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