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Interactome Mapping Guided by Tissue-Specific Phosphorylation in Age-Related Macular Degeneration. | LitMetric

AI Article Synopsis

  • The study investigates the molecular mechanisms of age-related macular degeneration (AMD) by focusing on how protein phosphorylation interacts with oxidative stress.
  • Researchers assessed biomarkers and protein interactions in models that resemble the characteristics of AMD, hypothesizing that specific protein changes are key to the disease's progression.
  • Findings reveal that certain proteins and cellular processes are crucial for understanding and potentially treating AMD, highlighting therapeutic targets and the role of phosphorylation in cellular survival during oxidative stress.

Article Abstract

The current study aims to determine the molecular mechanisms of age-related macular degeneration (AMD) using the phosphorylation network. Specifically, we examined novel biomarkers for oxidative stress by protein interaction mapping using and models that mimic the complex and progressive characteristics of AMD. We hypothesized that the early apoptotic reactions could be initiated by protein phosphorylation in region-dependent (peripheral retina vs. macular) and tissue-dependent (retinal pigment epithelium vs. retina) manner under chronic oxidative stress. The analysis of protein interactome and oxidative biomarkers showed the presence of tissue- and region-specific post-translational mechanisms that contribute to AMD progression and suggested new therapeutic targets that include ubiquitin, erythropoietin, vitronectin, MMP2, crystalline, nitric oxide, and prohibitin. Phosphorylation of specific target proteins in RPE cells is a central regulatory mechanism as a survival tool under chronic oxidative imbalance. The current interactome map demonstrates a positive correlation between oxidative stress-mediated phosphorylation and AMD progression and provides a basis for understanding oxidative stress-induced cytoskeletal changes and the mechanism of aggregate formation induced by protein phosphorylation. This information could provide an effective therapeutic approach to treat age-related neurodegeneration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5450497PMC
http://dx.doi.org/10.14299/ijser.2017.02.010DOI Listing

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