Proceedings of the National Academy of Sciences of the United States of America

Chaperone-mediated autophagy helps protect light-sensing eye cells by controlling protein balance in glucose metabolism enzymes

Updated

Abstract

CMA blockade in mice leads to impaired visual function and photoreceptor cell death.

  • Defective chaperone-mediated autophagy is associated with altered retinal proteostasis.
  • Overexpression of human CMA is linked to increased resistance against photoreceptor degeneration.
  • Pharmacological activation of CMA shows potential protective effects against retinal degeneration.
  • CMA-deficient retinas display elevated levels of enzymes involved in glucose metabolism, similar to those found in older mice.
  • These findings suggest a cytoprotective role for CMA in the retina.

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Funding

Competing interests

Competing interests statement:E.G. has received compensation for consulting or serving on scientific advisory boards, and has equity ownership from BaxGen Therapeutics, BeanPod Biosciences, Stelexis Biosciences; and has consulted for Boehringer Ingelheim and Guidepoint. All E.G. consulting activities are outside of the submitted work. E.G. and A.M.C. have equity ownership from Life Biosciences. CA compound is under US patent US9512092 (E.G. and A.M.C.).
PubMed

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