Chemistry Reference
In-Depth Information
207. Shenkarev ZO, Lyukmanova EN, Solozhenkin OI, Gagnidze IE, Nekrasova OV, Chupin VV,
Tagaev AA, Yakimenko ZA, Ovchinnikova TV, Kirpichnikov MP, Arseniev AS (2009)
Lipid-protein nanodiscs: possible application in high-resolution NMR investigations of
membrane proteins and membrane-active peptides. Biochemistry (Moscow) 74:756-765
208. Ritchie TK, Grinkova YV, Bayburt TH, Denisov IG, Zolnerciks JK, Atkins WM, Sligar SG
(2009) Reconstitution of membrane proteins in phospholipid bilayer nanodiscs. Methods
Enzymol 464:211-231
209. Shenkarev ZO, Lyukmanova EN, Paramonov AS, Shingarova LN, Chupin VV, Kirpichnikov
MP, Blommers MJ, Arseniev AS (2010) Lipid-protein nanodiscs as reference medium in
detergent screening for high-resolution NMR studies of integral membrane proteins. J Am
Chem Soc 132:5628-5629
210. Yoshiura C, KofukuY, Ueda T, Mase Y, YokogawaM, OsawaM, Terashima Y, Matsushima K,
Shimada I (2010) NMR analyses of the interaction between CCR5 and its ligand using functional
reconstitution of CCR5 in lipid bilayers. J Am Chem Soc 132:6768-6777
211. Tribet C, Audebert R, Popot JL (1996) Amphipols: polymers that keep membrane proteins
soluble in aqueous solutions. Proc Natl Acad Sci USA 93:15047-15050
212. Sanders CR, Hoffmann A, Grayn DN, Keyes MH, Ellis CD (2004) French swimwear for
membrane proteins. Chembiochem 5:423-426
213. Popot JL, Berry EA, Charvolin D, Creuzenet C, Ebel C, Engelman DM, Flotenmeyer M,
Giusti F, Gohon Y, Herve P, Hong Q, Lakey JH, Leonard K, Shuman HA, Timmins P,
Warschawski DE, Zito F, Zoonens M, Pucci B, Tribet C (2003) Amphipols: polymeric
surfactants for membrane biology research. Cell Mol Life Sci 60:1559-1574
214. Popot JL (2010) Amphipols, nanodiscs, and fluorinated surfactants: three nonconventional
approaches to studying membrane proteins in aqueous solutions. Annu Rev Biochem
79:737-775
215. Tribet C, Diab C, Dahmane T, Zoonens M, Popot JL, Winnik FM (2009) Thermodynamic
characterization of the exchange of detergents and amphipols at the surfaces of integral
membrane proteins. Langmuir 25:12623-12634
216. Pocanschi CL, Dahmane T, Gohon Y, Rappaport F, Apell HJ, Kleinschmidt JH, Popot JL
(2006) Amphipathic polymers: tools to fold integral membrane proteins to their active form.
Biochemistry 45:13954-13961
217. Gorzelle BM, Hoffman AK, Keyes MH, Gray DN, Ray DG, Sanders CR (2002) Amphipols
can support the activity of a membrane enzyme. J Am Chem Soc 124:11594-11595
218. Martinez KL, Gohon Y, Corringer PJ, Tribet C, M´rola F, Changeux JP, Popot JL (2002)
Allosteric transitions of Torpedo acetylcholine receptor in lipids, detergent and amphipols:
molecular interactions vs. physical constraints. FEBS Lett 528:251-256
219. Dahmane T, Damian M, Mary S, Popot JL, Ban ´ res JL (2009) Amphipol-assisted in vitro
folding of G protein-coupled receptors. Biochemistry 48:6516-6521
220. Catoire LJ, Damian M, Giusti F, Martin A, van Heijenoort C, Popot JL, Guittet E, Ban ´ res JL
(2010) Structure of a GPCR ligand in its receptor-bound state: leukotriene B4 adopts a highly
constrained conformation when associated to human BLT2. J Am Chem Soc 132:9049-9057
221. Zoonens M, Catoire LJ, Giusti F, Popot JL (2005) NMR study of a membrane protein in
detergent-free aqueous solution. Proc Natl Acad Sci USA 102:8893-8898
222. Wand AJ, Ehrhardt M, Flynn P (1998) High-resolution NMR of encapsulated proteins
dissolved in low-viscosity fluids. Proc Natl Acad Sci USA 95:15299-15302
223. Babu CR, Flynn PF, Wand AJ (2003) Preparation, characterization, and NMR spectroscopy
of encapsulated proteins dissolved in low viscosity fluids. J Biomol NMR 25:313-323
224. Babu CR, Flynn PF, Wand AJ (2001) Validation of protein structure from preparations of
encapsulated proteins dissolved in low viscosity fluids. J Am Chem Soc 123:2691-2692
225. Kielec JM, Valentine KG, Wand AJ (2010) A method for solution NMR structural studies of
large integral membrane proteins: reverse micelle encapsulation. Biochim Biophys Acta
1798:150-160
Search WWH ::




Custom Search