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Chronic Dicer1 deficiency promotes atrophic and neovascular outer retinal pathologies in mice

  • Charles B. Wright
  • , Hironori Uehara
  • , Younghee Kim
  • , Tetsuhiro Yasuma
  • , Reo Yasuma
  • , Shuichiro Hirahara
  • , Ryan D. Makin
  • , Ivana Apicella
  • , Felipe Pereira
  • , Yosuke Nagasaka
  • , Siddharth Narendran
  • , Shinichi Fukuda
  • , Romulo Albuquerque
  • , Benjamin J. Fowler
  • , Ana Bastos-Carvalho
  • , Philippe Georgel
  • , Izuho Hatada
  • , Bo Chang
  • , Nagaraj Kerur
  • , Balamurali K. Ambati
  • Jayakrishna Ambati, Bradley D. Gelfand

Producción científica: Articlerevisión exhaustiva

32 Citas (Scopus)

Resumen

Degeneration of the retinal pigmented epithelium (RPE) and aberrant blood vessel growth in the eye are advanced-stage processes in blinding diseases such as age-related macular degeneration (AMD), which affect hundreds of millions of people worldwide. Loss of the RNase DICER1, an essential factor in micro-RNA biogenesis, is implicated in RPE atrophy. However, the functional implications of DICER1 loss in choroidal and retinal neovascularization are unknown. Here, we report that two independent hypomorphic mouse strains, as well as a separate model of postnatal RPE-specific DICER1 ablation, all presented with spontaneous RPE degeneration and choroidal and retinal neovascularization. DICER1 hypomorphic mice lacking critical inflammasome components or the innate immune adaptor MyD88 developed less severe RPE atrophy and pathological neovascularization. DICER1 abundance was also reduced in retinas of the JR5558 mouse model of spontaneous choroidal neovascularization. Finally, adenoassociated vector-mediated gene delivery of a truncated DICER1 variant (OptiDicer) reduced spontaneous choroidal neovascularization in JR5558 mice. Collectively, these findings significantly expand the repertoire of DICER1 in preserving retinal homeostasis by preventing both RPE degeneration and pathological neovascularization.

Idioma originalEnglish
Páginas (desde-hasta)2579-2587
Número de páginas9
PublicaciónProceedings of the National Academy of Sciences of the United States of America
Volumen117
N.º5
DOI
EstadoPublished - feb 4 2020

Nota bibliográfica

Publisher Copyright:
© 2020 National Academy of Sciences. All rights reserved.

Financiación

ACKNOWLEDGMENTS. We thank G. Pattison, K. Langberg, D. Robertson, X. Zhou, K. Atwood, and H. Hall for their technical assistance. These studies were supported by NIH Grant R01EY028027 and American Heart Association Grant 13SDG16770008 (B.D.G.); J.A. was supported by NIH Grants DP1GM114862, R01EY022238, R01EY024068, R01EY028027, and R01EY029799; John Templeton Foundation Grant 60763; and the DuPont Guerry, III, Professorship; N.K. by NIH Grants K99EY024336 and R00EY024336; R.D.M. by NIH Grant T32 HL007284; B.K.A. and H.U. by NIH Grants R01EY017950 and R01EY017182; and B.C. by NIH Grant R01EY019943. The content is solely the responsibility of the authors and does not necessarily represent the official views of the NIH.

FinanciadoresNúmero del financiador
National Institutes of Health (NIH)
National Eye Institute/National Institutes of HealthR01EY028027
National Eye Institute/National Institutes of Health
John Templeton Foundation60763
John Templeton Foundation
American the American Heart AssociationR01EY022238, R01EY029799, R01EY024068, 13SDG16770008, DP1GM114862
American the American Heart Association
DuPontR00EY024336, R01EY017950, R01EY019943, K99EY024336, R01EY017182, T32 HL007284
DuPont

    ASJC Scopus subject areas

    • General

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