Barthélémy, P., Améduri, B., Chabaud, E., Popot, J.-L., Pucci, B. (1999) Synthesis and preliminary assessment of ethylterminated perfluoroalkyl slowdown surfactants derived from tris(hydroxymethyl)acrylamidomethane. Org. Lett.
1:1689–1692.
Barthélémy, P., Tomao, V., Selb, J., Chaudier, Y., Pucci, B. (2002) Fluorocarbon-hydrocarbon non-ionic surfactant
mixtures: a study of their miscibility. Langmuir 18:2557–2563.
Bavec, A., Juréus, A., Cigić, B., Langel, U., Zorko, M. (1999) Peptitergent PD 1 affects the GTPase activity of rat brain
cortical membranes. Peptides 20:177–184.
Bayburt, T.H., Carlson, J.W., Sligar, S.G. (1998) Reconstitution and imaging of a membrane protein in a nanometer-size
phospholipid bilayer. J. Struct. Biol. 123:37–44.
Bayburt, T.H., Grinkova, Y.V., Sligar, S.G. (2002) Self-assembly of discoidal phospholipid bilayer nanoparticles with
membrane scaffold proteins. Nano Lett. 2:853–856.
Bayburt, T.H., Grinkova, Y.V., Sligar, S.G. (2006) Assembly of single bacteriorhodopsin trimers in bilayer nanodiscs.
Arch. Biochem. Biophys. 450:215–222.
Bayburt, T.H., Leitz, A.J., Xie, G., Oprian, D.D., Sligar, S.G. (2007) Transducin activation by nanoscale lipid bilayers
containing one and two rhodopsins. J. Biol. Chem. 282:14875–14881.
Bayburt, T.H., Sligar, S.G. (2002) Single-molecule height measurements on microsomal cytochrome P450 in nanometerscale phospholipid bilayer disks. Proc. Natl. Acad. Sci. USA 99:6725–6730.
Bayburt, T.H., Sligar, S.G. (2010) Membrane protein assembly into nanodiscs. FEBS Lett. 584:1721–1727.
Bayburt, T.H., Vishnivetskiy, S.A., McLean, M.A., Morizumi, T., Huang, C.-C., Tesmer, J.J.G., Ernst, O.P., Sligar, S.G.,
Gurevich, V.V. (2011) Monomeric rhodopsin is sufficient for normal rhodopsin kinase (GRK1) phosphorylation and
arrestin-1 binding. J. Biol. Chem. 286:1420–1428.
Beaugrand, M., Arnold, A.A., Juneau, A., Balieiro Gambaro, A., Warschawski, D.E., Williamson, P.T.F., Marcotte,
I. (2016) Magnetically oriented bicelles with monoalkylphosphocholines: versatile membrane mimetics for nuclear
magnetic resonance applications. Langmuir 32:13244–13251.
Bibow, S., Polyhach, Y., Eichmann, C., Chi, C.N., Kowal, J., Albiez, S., McLeod, R.A., Stahlberg, H., Jeschke, G.,
Güntert, P., Riek, R. (2017) Solution structure of discoidal high-density lipoprotein particles with a shortened
apolipoprotein A-I. Nat. Struct. Mol. Biol. 24:187–193.
Blesneac, I., Ravaud, S., Juillan-Binard, C., Barret, L.A., Zoonens, M., Polidori, A., Miroux, B., Pucci, B., PebayPeyroula, E. (2012) Production of UCP1, a membrane protein from the inner mitochondrial membrane, using the cellfree expression system in the presence of a fluorinated surfactant. Biochim. Biophys. Acta 1818:798–805.
Bocharov, E.V., Pustovalova, Y.E., Pavlov, K.V., Volynsky, P.E., Goncharuk, M.V., Ermolyuk, Y.S., Karpunin, D.V.,
Schulga, A.A., Kirpichnikov, M.P., Efremov, R.G., Maslennikov, I.V., Arseniev, A.S. (2007) Unique dimeric
structure of BNip3 transmembrane domain suggests membrane permeabilization as a cell death trigger. J. Biol.
Chem. 282:16256–16265.
Bocharov, E.V., Volynsky, P.E., Pavlov, K.V., Efremov, R.G., Arseniev, A.S. (2010) Structure elucidation of dimeric
transmembrane domains of bitopic proteins. Cell Adh. Migr. 4:284–298.
Boldog, T., Grimme, S., Li, M., Sligar, S.G., Hazelbauer, G.L. (2006) Nanodiscs separate chemoreceptor oligomeric
states and reveal their signaling properties. Proc. Natl. Acad. Sci. USA 103:11509–11514.
Borch, J., Hamann, T. (2009) The nanodisc: a novel tool for membrane protein studies. Biol. Chem. 390:805–814.
Breyton, C., Chabaud, E., Chaudier, Y., Pucci, B., Popot, J.-L. (2004) Hemifluorinated surfactants: a non-dissociating
environment for handling membrane proteins in aqueous solutions? FEBS Lett. 564:312–318.
Breyton, C., Flayhan, A., Gabel, F., Lethier, M., Durand, G., Boulanger, P., Chamig, M., Ebel, C. (2013a) Assessing the
conformation changes of pb5, the receptor binding protein of phage T5, upon binding to its E. coli receptor FhuA.
J. Biol. Chem. 288:30763–30772.
Breyton, C., Gabel, F., Abla, M., Pierre, Y., Lebaupain, F., Durand, G., Popot, J.-L., Ebel, C., Pucci, B. (2009) Micellar
and biochemical properties of (hemi)fluorinated surfactants are controlled by the size of the polar head. Biophys. J.
97:1077–1086.
Breyton, C., Gabel, F., Lethier, M., Flayhan, A., Durand, G., Jault, J.-M., Juillan-Binard, C., Imbert, Moulin, M., Ravaud
S., Härtlein M., Ebel C. (2013b) Small angle neutron scattering for the study of solubilised membrane proteins. Eur.
Phys. J. E 36:71–86.
Breyton, C., Pucci, B., Popot, J.-L. (2010) Amphipols and fluorinated surfactants: two alternatives to detergents for
studying membrane proteins in vitro in: Mus-Veteau, I., ed., Heterologous expression of membrane proteins:
Methods and protocols. The Humana Press, Totowa, New Jersey, USA, pp. 219–245.
Broecker, J., Eger, B.T., Ernst, O.P. (2017) Crystallogenesis of membrane proteins mediated by polymer-bounded lipid
nanodiscs. Structure 25:384–392.
Brouillette, C.G., Anantharamaiah, G.M., Engler, J.A., Borhani, D.W. (2001) Structural models of human apolipoprotein
A-I: a critical analysis and review. Biochim. Biophys. Acta 1531:4–46.
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3 Alternatives to Detergents for Handling Membrane Proteins in Aqueous Solutions
1:1689–1692.
Barthélémy, P., Tomao, V., Selb, J., Chaudier, Y., Pucci, B. (2002) Fluorocarbon-hydrocarbon non-ionic surfactant
mixtures: a study of their miscibility. Langmuir 18:2557–2563.
Bavec, A., Juréus, A., Cigić, B., Langel, U., Zorko, M. (1999) Peptitergent PD 1 affects the GTPase activity of rat brain
cortical membranes. Peptides 20:177–184.
Bayburt, T.H., Carlson, J.W., Sligar, S.G. (1998) Reconstitution and imaging of a membrane protein in a nanometer-size
phospholipid bilayer. J. Struct. Biol. 123:37–44.
Bayburt, T.H., Grinkova, Y.V., Sligar, S.G. (2002) Self-assembly of discoidal phospholipid bilayer nanoparticles with
membrane scaffold proteins. Nano Lett. 2:853–856.
Bayburt, T.H., Grinkova, Y.V., Sligar, S.G. (2006) Assembly of single bacteriorhodopsin trimers in bilayer nanodiscs.
Arch. Biochem. Biophys. 450:215–222.
Bayburt, T.H., Leitz, A.J., Xie, G., Oprian, D.D., Sligar, S.G. (2007) Transducin activation by nanoscale lipid bilayers
containing one and two rhodopsins. J. Biol. Chem. 282:14875–14881.
Bayburt, T.H., Sligar, S.G. (2002) Single-molecule height measurements on microsomal cytochrome P450 in nanometerscale phospholipid bilayer disks. Proc. Natl. Acad. Sci. USA 99:6725–6730.
Bayburt, T.H., Sligar, S.G. (2010) Membrane protein assembly into nanodiscs. FEBS Lett. 584:1721–1727.
Bayburt, T.H., Vishnivetskiy, S.A., McLean, M.A., Morizumi, T., Huang, C.-C., Tesmer, J.J.G., Ernst, O.P., Sligar, S.G.,
Gurevich, V.V. (2011) Monomeric rhodopsin is sufficient for normal rhodopsin kinase (GRK1) phosphorylation and
arrestin-1 binding. J. Biol. Chem. 286:1420–1428.
Beaugrand, M., Arnold, A.A., Juneau, A., Balieiro Gambaro, A., Warschawski, D.E., Williamson, P.T.F., Marcotte,
I. (2016) Magnetically oriented bicelles with monoalkylphosphocholines: versatile membrane mimetics for nuclear
magnetic resonance applications. Langmuir 32:13244–13251.
Bibow, S., Polyhach, Y., Eichmann, C., Chi, C.N., Kowal, J., Albiez, S., McLeod, R.A., Stahlberg, H., Jeschke, G.,
Güntert, P., Riek, R. (2017) Solution structure of discoidal high-density lipoprotein particles with a shortened
apolipoprotein A-I. Nat. Struct. Mol. Biol. 24:187–193.
Blesneac, I., Ravaud, S., Juillan-Binard, C., Barret, L.A., Zoonens, M., Polidori, A., Miroux, B., Pucci, B., PebayPeyroula, E. (2012) Production of UCP1, a membrane protein from the inner mitochondrial membrane, using the cellfree expression system in the presence of a fluorinated surfactant. Biochim. Biophys. Acta 1818:798–805.
Bocharov, E.V., Pustovalova, Y.E., Pavlov, K.V., Volynsky, P.E., Goncharuk, M.V., Ermolyuk, Y.S., Karpunin, D.V.,
Schulga, A.A., Kirpichnikov, M.P., Efremov, R.G., Maslennikov, I.V., Arseniev, A.S. (2007) Unique dimeric
structure of BNip3 transmembrane domain suggests membrane permeabilization as a cell death trigger. J. Biol.
Chem. 282:16256–16265.
Bocharov, E.V., Volynsky, P.E., Pavlov, K.V., Efremov, R.G., Arseniev, A.S. (2010) Structure elucidation of dimeric
transmembrane domains of bitopic proteins. Cell Adh. Migr. 4:284–298.
Boldog, T., Grimme, S., Li, M., Sligar, S.G., Hazelbauer, G.L. (2006) Nanodiscs separate chemoreceptor oligomeric
states and reveal their signaling properties. Proc. Natl. Acad. Sci. USA 103:11509–11514.
Borch, J., Hamann, T. (2009) The nanodisc: a novel tool for membrane protein studies. Biol. Chem. 390:805–814.
Breyton, C., Chabaud, E., Chaudier, Y., Pucci, B., Popot, J.-L. (2004) Hemifluorinated surfactants: a non-dissociating
environment for handling membrane proteins in aqueous solutions? FEBS Lett. 564:312–318.
Breyton, C., Flayhan, A., Gabel, F., Lethier, M., Durand, G., Boulanger, P., Chamig, M., Ebel, C. (2013a) Assessing the
conformation changes of pb5, the receptor binding protein of phage T5, upon binding to its E. coli receptor FhuA.
J. Biol. Chem. 288:30763–30772.
Breyton, C., Gabel, F., Abla, M., Pierre, Y., Lebaupain, F., Durand, G., Popot, J.-L., Ebel, C., Pucci, B. (2009) Micellar
and biochemical properties of (hemi)fluorinated surfactants are controlled by the size of the polar head. Biophys. J.
97:1077–1086.
Breyton, C., Gabel, F., Lethier, M., Flayhan, A., Durand, G., Jault, J.-M., Juillan-Binard, C., Imbert, Moulin, M., Ravaud
S., Härtlein M., Ebel C. (2013b) Small angle neutron scattering for the study of solubilised membrane proteins. Eur.
Phys. J. E 36:71–86.
Breyton, C., Pucci, B., Popot, J.-L. (2010) Amphipols and fluorinated surfactants: two alternatives to detergents for
studying membrane proteins in vitro in: Mus-Veteau, I., ed., Heterologous expression of membrane proteins:
Methods and protocols. The Humana Press, Totowa, New Jersey, USA, pp. 219–245.
Broecker, J., Eger, B.T., Ernst, O.P. (2017) Crystallogenesis of membrane proteins mediated by polymer-bounded lipid
nanodiscs. Structure 25:384–392.
Brouillette, C.G., Anantharamaiah, G.M., Engler, J.A., Borhani, D.W. (2001) Structural models of human apolipoprotein
A-I: a critical analysis and review. Biochim. Biophys. Acta 1531:4–46.
136
3 Alternatives to Detergents for Handling Membrane Proteins in Aqueous Solutions
