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O2 sensing-associated glycosylation exposes the F-box-combining site of the Dictyostelium Skp1 subunit in E3 ubiquitin ligases.
Sheikh, M Osman; Thieker, David; Chalmers, Gordon; Schafer, Christopher M; Ishihara, Mayumi; Azadi, Parastoo; Woods, Robert J; Glushka, John N; Bendiak, Brad; Prestegard, James H; West, Christopher M.
Afiliação
  • Sheikh MO; From the Department of Biochemistry and Molecular Biology.
  • Thieker D; the Complex Carbohydrate Research Center, and.
  • Chalmers G; the Department of Biochemistry and Molecular Biology, Oklahoma Center for Medical Glycobiology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, and.
  • Schafer CM; the Complex Carbohydrate Research Center, and.
  • Ishihara M; the Complex Carbohydrate Research Center, and.
  • Azadi P; the Department of Computer Science, University of Georgia, Athens, Georgia 30602.
  • Woods RJ; the Department of Biochemistry and Molecular Biology, Oklahoma Center for Medical Glycobiology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, and.
  • Glushka JN; the Complex Carbohydrate Research Center, and.
  • Bendiak B; the Complex Carbohydrate Research Center, and.
  • Prestegard JH; From the Department of Biochemistry and Molecular Biology.
  • West CM; the Complex Carbohydrate Research Center, and.
J Biol Chem ; 292(46): 18897-18915, 2017 11 17.
Article em En | MEDLINE | ID: mdl-28928219
ABSTRACT
Skp1 is a conserved protein linking cullin-1 to F-box proteins in SCF (Skp1/Cullin-1/F-box protein) E3 ubiquitin ligases, which modify protein substrates with polyubiquitin chains that typically target them for 26S proteasome-mediated degradation. In Dictyostelium (a social amoeba), Toxoplasma gondii (the agent for human toxoplasmosis), and other protists, Skp1 is regulated by a unique pentasaccharide attached to hydroxylated Pro-143 within its C-terminal F-box-binding domain. Prolyl hydroxylation of Skp1 contributes to O2-dependent Dictyostelium development, but full glycosylation at that position is required for optimal O2 sensing. Previous studies have shown that the glycan promotes organization of the F-box-binding region in Skp1 and aids in Skp1's association with F-box proteins. Here, NMR and MS approaches were used to determine the glycan structure, and then a combination of NMR and molecular dynamics simulations were employed to characterize the impact of the glycan on the conformation and motions of the intrinsically flexible F-box-binding domain of Skp1. Molecular dynamics trajectories of glycosylated Skp1 whose calculated monosaccharide relaxation kinetics and rotational correlation times agreed with the NMR data indicated that the glycan interacts with the loop connecting two α-helices of the F-box-combining site. In these trajectories, the helices separated from one another to create a more accessible and dynamic F-box interface. These results offer an unprecedented view of how a glycan modification influences a disordered region of a full-length protein. The increased sampling of an open Skp1 conformation can explain how glycosylation enhances interactions with F-box proteins in cells.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxigênio / Proteínas de Bactérias / Ubiquitina-Proteína Ligases / Proteínas Ligases SKP Culina F-Box / Proteínas F-Box / Proteínas Quinases Associadas a Fase S / Dictyostelium Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oxigênio / Proteínas de Bactérias / Ubiquitina-Proteína Ligases / Proteínas Ligases SKP Culina F-Box / Proteínas F-Box / Proteínas Quinases Associadas a Fase S / Dictyostelium Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2017 Tipo de documento: Article