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Search Results to Rooban Babyantony Nahomi

This is a "connection" page, showing the details of why an item matched the keywords from your search.


One or more keywords matched the following items that are connected to Nahomi, Rooban

Item TypeName
Concept alpha-Crystallin A Chain
Concept alpha-Crystallins
Concept Crystallins
Concept alpha-Crystallin B Chain
Concept gamma-Crystallins
Academic Article Chaperone peptides of a-crystallin inhibit epithelial cell apoptosis, protein insolubilization, and opacification in experimental cataracts.
Academic Article The combined effect of acetylation and glycation on the chaperone and anti-apoptotic functions of human a-crystallin.
Academic Article Acetylation of aA-crystallin in the human lens: effects on structure and chaperone function.
Academic Article Acetylation of lysine 92 improves the chaperone and anti-apoptotic activities of human aB-crystallin.
Academic Article Rutin ameliorates free radical mediated cataract by enhancing the chaperone activity of a-crystallin.
Academic Article Analysis on the alterations of lens proteins by Vitex negundo in selenite cataract models.
Academic Article Drevogenin D prevents selenite-induced oxidative stress and calpain activation in cultured rat lens.
Academic Article Broccoli regulates protein alterations and cataractogenesis in selenite models.
Academic Article Identification of peptides in human Hsp20 and Hsp27 that possess molecular chaperone and anti-apoptotic activities.
Academic Article Therapeutic potential of a-crystallin.
Academic Article aB-crystallin is essential for the TGF-ß2-mediated epithelial to mesenchymal transition of lens epithelial cells.
Academic Article A monoclonal antibody targeted to the functional peptide of aB-crystallin inhibits the chaperone and anti-apoptotic activities.
Academic Article Succinylation Is a Gain-of-Function Modification in Human Lens aB-Crystallin.
Academic Article The absence of SIRT3 and SIRT5 promotes the acetylation of lens proteins and improves the chaperone activity of a-crystallin in mouse lenses.
Academic Article Lysine malonylation and propionylation are prevalent in human lens proteins.
Academic Article Glycation-mediated inter-protein cross-linking is promoted by chaperone-client complexes of a-crystallin: Implications for lens aging and presbyopia.

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  • Crystallins

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