7n38 Citations

Deamidation of the human eye lens protein γS-crystallin accelerates oxidative aging.

Abstract

Cataract, a clouding of the eye lens from protein precipitation, affects millions of people every year. The lens proteins, the crystallins, show extensive post-translational modifications (PTMs) in cataractous lenses. The most common PTMs, deamidation and oxidation, promote crystallin aggregation; however, it is not clear precisely how these PTMs contribute to crystallin insolubilization. Here, we report six crystal structures of the lens protein γS-crystallin (γS): one of the wild-type and five of deamidated γS variants, from three to nine deamidation sites, after sample aging. The deamidation mutations do not change the overall fold of γS; however, increasing deamidation leads to accelerated disulfide-bond formation. Addition of deamidated sites progressively destabilized protein structure, and the deamidated variants display an increased propensity for aggregation. These results suggest that the deamidated variants are useful as models for accelerated aging; the structural changes observed provide support for redox activity of γS-crystallin in the lens.

Articles - 7n38 mentioned but not cited (1)

  1. Deamidation of the human eye lens protein γS-crystallin accelerates oxidative aging. Norton-Baker B, Mehrabi P, Kwok AO, Roskamp KW, Rocha MA, Sprague-Piercy MA, von Stetten D, Miller RJD, Martin RW. Structure 30 763-776.e4 (2022)


Reviews citing this publication (3)

  1. Role of Oxidative Stress in Ocular Diseases: A Balancing Act. Shu DY, Chaudhary S, Cho KS, Lennikov A, Miller WP, Thorn DC, Yang M, McKay TB. Metabolites 13 187 (2023)
  2. Insights into the biochemical and biophysical mechanisms mediating the longevity of the transparent optics of the eye lens. Quinlan RA, Clark JI. J Biol Chem 298 102537 (2022)
  3. Oxidative stress in the eye and its role in the pathophysiology of ocular diseases. Böhm EW, Buonfiglio F, Voigt AM, Bachmann P, Safi T, Pfeiffer N, Gericke A. Redox Biol 68 102967 (2023)

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