AI Article Synopsis

  • Irs-proteins, specifically Irs2, are crucial for the survival and maturation of photoreceptors in the retina, integrating insulin signaling for cellular growth.
  • Mice lacking Irs2 showed significant photoreceptor loss soon after birth, with a 10% reduction at one week and up to 50% by two weeks due to increased cell death (apoptosis).
  • Strategies to enhance Irs2 expression or function could provide therapeutic options for retinal diseases like retinitis pigmentosa, aiming to combat photoreceptor degeneration.

Article Abstract

Insulin receptor substrates (Irs-proteins) integrate signals from the insulin and insulin-like growth factor-1 (IGF1) receptors with other processes to control cellular growth, function, and survival. Here, we show that Irs2 promoted the maturation and survival of photoreceptors in the murine retina immediately after birth. Irs2 was mainly localized to the outer plexiform layer as well as to photoreceptor inner segments. It was also seen in ganglion cells and inner plexiform layer but in smaller amounts. Compared with control littermates, Irs2 knock-out mice lose 10% of their photoreceptors 1 week after birth and up to 50% by 2 weeks of age as a result of increased apoptosis. The surviving photoreceptor cells developed short organized segments, which displayed proportionally diminished but otherwise normal electrical function. However, IGF1-stimulated Akt phosphorylation was barely detected, and cleaved/activated caspase-3 was significantly elevated in isolated retinas of Irs2-/- mice. When diabetes was prevented, which allowed the Irs2-/- mice to survive for 2 years, most photoreceptor cells were lost by 16 months of age. Because apoptosis is the final common pathway in photoreceptor degeneration, pharmacological strategies that increase Irs2 expression or function in photoreceptor cells could be a general treatment for blinding diseases such as retinitis pigmentosa.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6725974PMC
http://dx.doi.org/10.1523/JNEUROSCI.3664-04.2005DOI Listing

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