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Resorcinarene-Based Facial Glycosides: Implication of Detergent Flexibility on Membrane-Protein Stability.
Hussain, Hazrat; Du, Yang; Tikhonova, Elena; Mortensen, Jonas S; Ribeiro, Orquidea; Santillan, Claudia; Das, Manabendra; Ehsan, Muhammad; Loland, Claus J; Guan, Lan; Kobilka, Brian K; Byrne, Bernadette; Chae, Pil Seok.
Afiliação
  • Hussain H; Department of Bionanotechnology, Hanyang University, Ansan, 155-88, Korea.
  • Du Y; Molecular and Cellular Physiology, Stanford University, Stanford, CA, 94305, USA.
  • Tikhonova E; Department of Cell Physiology and Molecular Biophysics, Center for Membrane Protein Research, School of Medicine, Texas Tech University Health Sciences Center, Lubbock, TX, 79430, USA.
  • Mortensen JS; Center of Neuroscience, University of Copenhagen, Copenhagen, 2200, Denmark.
  • Ribeiro O; Department of Life Sciences, Imperial College London, London, SW7 2AZ, UK.
  • Santillan C; Department of Cell Physiology and Molecular Biophysics, Center for Membrane Protein Research, School of Medicine, Texas Tech University Health Sciences Center, Lubbock, TX, 79430, USA.
  • Das M; Department of Bionanotechnology, Hanyang University, Ansan, 155-88, Korea.
  • Ehsan M; Department of Bionanotechnology, Hanyang University, Ansan, 155-88, Korea.
  • Loland CJ; Center of Neuroscience, University of Copenhagen, Copenhagen, 2200, Denmark.
  • Guan L; Department of Cell Physiology and Molecular Biophysics, Center for Membrane Protein Research, School of Medicine, Texas Tech University Health Sciences Center, Lubbock, TX, 79430, USA.
  • Kobilka BK; Molecular and Cellular Physiology, Stanford University, Stanford, CA, 94305, USA.
  • Byrne B; Department of Life Sciences, Imperial College London, London, SW7 2AZ, UK.
  • Chae PS; Department of Bionanotechnology, Hanyang University, Ansan, 155-88, Korea.
Chemistry ; 23(28): 6724-6729, 2017 May 17.
Article em En | MEDLINE | ID: mdl-28303608
ABSTRACT
As a membrane-mimetic system, detergent micelles are popularly used to extract membrane proteins from lipid environments and to maintain their solubility and stability in an aqueous medium. However, many membrane proteins encapsulated in conventional detergents tend to undergo structural degradation during extraction and purification, thus necessitating the development of new agents with enhanced properties. In the current study, two classes of new amphiphiles are introduced, resorcinarene-based glucoside and maltoside amphiphiles (designated RGAs and RMAs, respectively), for which the alkyl chains are facially segregated from the carbohydrate head groups. Of these facial amphiphiles, two RGAs (RGA-C11 and RGA-C13) conferred markedly enhanced stability to four tested membrane proteins compared to a gold-standard conventional detergent. The relatively high water solubility and micellar stability of the RGAs compared to the RMAs, along with their generally favourable behaviours for membrane protein stabilisation described here, are likely to be, at least in part, a result of the high conformational flexibility of these glucosides. This study suggests that flexibility could be an important factor in determining the suitability of new detergents for membrane protein studies.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fenilalanina / Calixarenos / Detergentes / Glicosídeos / Proteínas de Membrana Idioma: En Revista: Chemistry Assunto da revista: QUIMICA Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fenilalanina / Calixarenos / Detergentes / Glicosídeos / Proteínas de Membrana Idioma: En Revista: Chemistry Assunto da revista: QUIMICA Ano de publicação: 2017 Tipo de documento: Article