4.8 Article

ERK1/2 activation is a therapeutic target in age-related macular degeneration

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1206494109

关键词

cell death; mobile elements; retinal degeneration

资金

  1. National Eye Institute/National Institutes of Health (NIH) [R01EY018350, R01EY018836, R01EY020672, R01EY022238, R21EY019778, RC1EY020442]
  2. Doris Duke Distinguished Clinical Scientist Award
  3. Burroughs Wellcome Fund Clinical Scientist Award in Translational Research
  4. Dr. E. Vernon Smith and Eloise C. Smith Macular Degeneration Endowed Chair
  5. Senior Scientist Investigator Award (Research to Prevent Blindness)
  6. NIH [K08EY021521, K08EY021757, T32HL091812, UL1RR033173, P30EY021721, R01EY017182, R01EY017950, P30EY003040, R01EY001545, R01GM068414]
  7. International Retinal Research Foundation
  8. American Health Assistance Foundation
  9. Alcon Japan Research Award
  10. Macula Vision Research Foundation
  11. Veterans Administration Merit Award
  12. Department of Defense
  13. Research to Prevent Blindness
  14. University of Kentucky Physician Scientist Awards

向作者/读者索取更多资源

Deficient expression of the RNase III DICER1, which leads to the accumulation of cytotoxic Alu RNA, has been implicated in degeneration of the retinal pigmented epithelium (RPE) in geographic atrophy (GA), a late stage of age-related macular degeneration that causes blindness in millions of people worldwide. Here we show increased extracellular-signal-regulated kinase (ERK) 1/2 phosphorylation in the RPE of human eyes with GA and that RPE degeneration in mouse eyes and in human cell culture induced by DICER1 depletion or Alu RNA exposure is mediated via ERK1/2 signaling. Alu RNA overexpression or DICER1 knockdown increases ERK1/2 phosphorylation in the RPE in mice and in human cell culture. Alu RNA-induced RPE degeneration in mice is rescued by intravitreous administration of PD98059, an inhibitor of the ERK1/2-activating kinase MEK1, but not by inhibitors of other MAP kinases such as p38 or JNK. These findings reveal a previously unrecognized function of ERK1/2 in the pathogenesis of GA and provide a mechanistic basis for evaluation of ERK1/2 inhibition in treatment of this disease.

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