4.8 Article

Iron Toxicity in the Retina Requires Alu RNA and the NLRP3 Inflammasome

期刊

CELL REPORTS
卷 11, 期 11, 页码 1686-1693

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2015.05.023

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资金

  1. Fight for Sight postdoctoral award
  2. NIH [DP1GM114862, R01EY018350, R01EY018836, R01EY020672, R01EY022238, R01EY024068, T32HL091812, UL1RR033173, K99EY024336]
  3. Doris Duke Distinguished Clinical Scientist Award
  4. Burroughs WellcomeFund Clinical Scientist Award in Translational Research
  5. Ellison Medical Foundation Senior Scholar in Aging Award
  6. Foundation Fighting Blindness Individual Investigator Research Award
  7. Harrington Discovery Institute Scholar-Innovator Award
  8. Dr. E. Vernon Smith and Eloise C. Smith Macular Degeneration Endowed Chair
  9. Research to Prevent Blindness departmental unrestricted grant
  10. Programme for Advanced Medical Education
  11. Fundacao Calouste Gulbenkian
  12. Fundacao Champalimaud
  13. Ministerio da Saude
  14. Fundacao para a Ciencia e Tecnologia, Portugal
  15. Bayer Global Ophthalmology Research Award
  16. Alcon Japan Research award
  17. Beckman Initiative for Macular Research
  18. Loris and David Rich Postdoctoral Scholar Award (IRRF)

向作者/读者索取更多资源

Excess iron induces tissue damage and is implicated in age-related macular degeneration (AMD). Iron toxicity is widely attributed to hydroxyl radical formation through Fenton's reaction. We report that excess iron, but not other Fenton catalytic metals, induces activation of the NLRP3 inflammasome, a pathway also implicated in AMD. Additionally, iron-induced degeneration of the retinal pigmented epithelium (RPE) is suppressed in mice lacking inflammasome components caspase-1/11 or Nlrp3 or by inhibition of caspase-1. Iron overload increases abundance of RNAs transcribed from short interspersed nuclear elements (SINEs): Alu RNAs and the rodent equivalent B1 and B2 RNAs, which are inflammasome agonists. Targeting Alu or B2 RNA prevents iron-induced inflammasome activation and RPE degeneration. Iron-induced SINE RNA accumulation is due to suppression of DICER1 via sequestration of the co-factor poly(C)-binding protein 2 (PCBP2). These findings reveal an unexpected mechanism of iron toxicity, with implications for AMD and neurodegenerative diseases associated with excess iron.

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