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Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System

[Image: see text] Prolyl hydroxylation and subsequent glycosylation of the E3(SCF) ubiquitin ligase subunit Skp1 affects its conformation and its interaction with F-box proteins and, ultimately, O(2)-sensing in the organism. Taking a reductionist approach to understand the molecular basis for these...

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Autores principales: Karunaratne, Chamini V., Weldeghiorghis, Thomas K., West, Christopher M., Taylor, Carol M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4227711/
https://www.ncbi.nlm.nih.gov/pubmed/25250945
http://dx.doi.org/10.1021/ja5033277
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author Karunaratne, Chamini V.
Weldeghiorghis, Thomas K.
West, Christopher M.
Taylor, Carol M.
author_facet Karunaratne, Chamini V.
Weldeghiorghis, Thomas K.
West, Christopher M.
Taylor, Carol M.
author_sort Karunaratne, Chamini V.
collection PubMed
description [Image: see text] Prolyl hydroxylation and subsequent glycosylation of the E3(SCF) ubiquitin ligase subunit Skp1 affects its conformation and its interaction with F-box proteins and, ultimately, O(2)-sensing in the organism. Taking a reductionist approach to understand the molecular basis for these effects, a series of end-capped Thr-Pro dipeptides was synthesized, tracking the sequential post-translational modifications that occur in the protein. The conformation of the pyrrolidine ring in each compound was gauged via coupling constants ((3)J(Hα,Hβ)) and the electronegativity of the Cγ-substituents by chemical shifts ((13)C). The equilibrium between the cis–trans conformations about the central prolyl peptide bond was investigated by integration of signals corresponding to the two species in the (1)H NMR spectra over a range of temperatures. These studies revealed an increasing preference for the trans-conformation in the order Pro < Hyp < [α-(1,4)GlcNAc]Hyp. Rates for the forward and reverse reactions, determined by magnetization transfer experiments, demonstrated a reduced rate for the trans-to-cis conversion and a significant increase in the cis-to-trans conversion upon hydroxylation of the proline residue in the dipeptide. NOE experiments suggest that the Thr side chain pushes the sugar away from the pyrrolidine ring. These effects, which depended on the presence of the N-terminal Thr residue, offer a mechanism to explain altered properties of the corresponding full-length proteins.
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spelling pubmed-42277112015-09-24 Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System Karunaratne, Chamini V. Weldeghiorghis, Thomas K. West, Christopher M. Taylor, Carol M. J Am Chem Soc [Image: see text] Prolyl hydroxylation and subsequent glycosylation of the E3(SCF) ubiquitin ligase subunit Skp1 affects its conformation and its interaction with F-box proteins and, ultimately, O(2)-sensing in the organism. Taking a reductionist approach to understand the molecular basis for these effects, a series of end-capped Thr-Pro dipeptides was synthesized, tracking the sequential post-translational modifications that occur in the protein. The conformation of the pyrrolidine ring in each compound was gauged via coupling constants ((3)J(Hα,Hβ)) and the electronegativity of the Cγ-substituents by chemical shifts ((13)C). The equilibrium between the cis–trans conformations about the central prolyl peptide bond was investigated by integration of signals corresponding to the two species in the (1)H NMR spectra over a range of temperatures. These studies revealed an increasing preference for the trans-conformation in the order Pro < Hyp < [α-(1,4)GlcNAc]Hyp. Rates for the forward and reverse reactions, determined by magnetization transfer experiments, demonstrated a reduced rate for the trans-to-cis conversion and a significant increase in the cis-to-trans conversion upon hydroxylation of the proline residue in the dipeptide. NOE experiments suggest that the Thr side chain pushes the sugar away from the pyrrolidine ring. These effects, which depended on the presence of the N-terminal Thr residue, offer a mechanism to explain altered properties of the corresponding full-length proteins. American Chemical Society 2014-09-24 2014-10-29 /pmc/articles/PMC4227711/ /pubmed/25250945 http://dx.doi.org/10.1021/ja5033277 Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Karunaratne, Chamini V.
Weldeghiorghis, Thomas K.
West, Christopher M.
Taylor, Carol M.
Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title_full Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title_fullStr Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title_full_unstemmed Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title_short Conformational Changes Associated with Post-Translational Modifications of Pro(143) in Skp1 of Dictyostelium—A Dipeptide Model System
title_sort conformational changes associated with post-translational modifications of pro(143) in skp1 of dictyostelium—a dipeptide model system
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4227711/
https://www.ncbi.nlm.nih.gov/pubmed/25250945
http://dx.doi.org/10.1021/ja5033277
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