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Dendronic trimaltoside amphiphiles (DTMs) for membrane protein study.
Sadaf, Aiman; Du, Yang; Santillan, Claudia; Mortensen, Jonas S; Molist, Iago; Seven, Alpay B; Hariharan, Parameswaran; Skiniotis, Georgios; Loland, Claus J; Kobilka, Brian K; Guan, Lan; Byrne, Bernadette; Chae, Pil Seok.
Affiliation
  • Sadaf A; Department of Bionanotechnology , Hanyang University , Ansan , 155-88 , Korea . Email: pchae@hanyang.ac.kr.
  • Du Y; Molecular and Cellular Physiology , Stanford , CA 94305 , USA . Email: kobilka@stanford.edu.
  • 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 . Email: lan.guan@ttuhsc.edu.
  • Mortensen JS; Center of Neuroscience , University of Copenhagen , DK 2200 Copenhagen , Denmark . Email: cllo@sund.ku.dk.
  • Molist I; Department of Life Sciences , Imperial College London , London , SW7 2AZ , UK . Email: b.byrne@imperial.ac.uk.
  • Seven AB; Structural Biology & Molecular and Cellular Physiology , Stanford , CA 94305 , USA . Email: yiorgo@stanford.edu.
  • Hariharan P; 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 . Email: lan.guan@ttuhsc.edu.
  • Skiniotis G; Structural Biology & Molecular and Cellular Physiology , Stanford , CA 94305 , USA . Email: yiorgo@stanford.edu.
  • Loland CJ; Center of Neuroscience , University of Copenhagen , DK 2200 Copenhagen , Denmark . Email: cllo@sund.ku.dk.
  • Kobilka BK; Molecular and Cellular Physiology , Stanford , CA 94305 , USA . Email: kobilka@stanford.edu.
  • 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 . Email: lan.guan@ttuhsc.edu.
  • Byrne B; Department of Life Sciences , Imperial College London , London , SW7 2AZ , UK . Email: b.byrne@imperial.ac.uk.
  • Chae PS; Department of Bionanotechnology , Hanyang University , Ansan , 155-88 , Korea . Email: pchae@hanyang.ac.kr.
Chem Sci ; 8(12): 8315-8324, 2017 Dec 01.
Article in En | MEDLINE | ID: mdl-29619178
ABSTRACT
The critical contribution of membrane proteins in normal cellular function makes their detailed structure and functional analysis essential. Detergents, amphipathic agents with the ability to maintain membrane proteins in a soluble state in aqueous solution, have key roles in membrane protein manipulation. Structural and functional stability is a prerequisite for biophysical characterization. However, many conventional detergents are limited in their ability to stabilize membrane proteins, making development of novel detergents for membrane protein manipulation an important research area. The architecture of a detergent hydrophobic group, that directly interacts with the hydrophobic segment of membrane proteins, is a key factor in dictating their efficacy for both membrane protein solubilization and stabilization. In the current study, we developed two sets of maltoside-based detergents with four alkyl chains by introducing dendronic hydrophobic groups connected to a trimaltoside head group, designated dendronic trimaltosides (DTMs). Representative DTMs conferred enhanced stabilization to multiple membrane proteins compared to the benchmark conventional detergent, DDM. One DTM (i.e., DTM-A6) clearly outperformed DDM in stabilizing human ß2 adrenergic receptor (ß2AR) and its complex with Gs protein. A further evaluation of this DTM led to a clear visualization of ß2AR-Gs complex via electron microscopic analysis. Thus, the current study not only provides novel detergent tools useful for membrane protein study, but also suggests that the dendronic architecture has a role in governing detergent efficacy for membrane protein stabilization.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2017 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2017 Document type: Article