250. Schmidt U, Guigas G, Weiss M (2008) Cluster formation of transmembrane proteins due to
hydrophobic mismatching. Phys Rev Lett 101:128104
251. de Meyer FJM, Venturoli M, Smit B (2008) Molecular simulations of lipid-mediated
protein–protein interactions. Biophys J 95:1851–1865
252. Koltover I, Ra ¨dler JO, Safinya CR (1999) Membrane mediated attraction and ordered
aggregation of colloidal particles bound to giant phospholipid vesicles. Phys Rev Lett
82:1991–1994
253. Goulian M, Bruinsma R, Pincus P (1993) Long-range forces in heterogeneous fluid membranes. Europhys Lett 22:145
254. Goulian M, Bruinsma R, Pincus P (1993) Long-range forces in heterogeneous fluid membranes: erratum. Europhys Lett 23:155
255. Fournier JB, Dommersnes PG (1997) Comment on “long-range forces in heterogeneous fluid
membranes”. Europhys Lett 39(6):681
256. Dommersnes P, Fournier JB (1999) N-body study of anisotropic membrane inclusions:
membrane mediated interactions and ordered aggregation. Eur Phys J E 12:9–12
257. Dommersnes P, Fournier J (2002) The many-body problem for anisotropic membrane
inclusions and the self-assembly of “saddle” defects into an “egg carton”. Biophys J
83:2898–2905
258. Fournier JB, Dommersnes PG, Galatola P (2003) Dynamin recruitment by clathrin coats: a
physical step? C R Biol 326:467–476
259. Wu SHW, McConnell HM (1975) Phase separations in phospholipid membranes. Biochemistry 14(4):847–854
260. Gebhardt C, Gruler H, Sackmann E (1977) Domain-structure and local curvature in lipid
bilayers and biological membranes. Z Naturforsch C 32(7–8):581–596
261. Markin VS (1981) Lateral organization of membranes and cell shapes. Biophys J 36(1):1–19
262. Andelman D, Kawakatsu T, Kawasaki K (1992) Equilibrium shape of two-component
unilamellar membranes and vesicles. Europhys Lett 19(1):57–62
263. Seifert U (1993) Curvature-induced lateral phase segregation in two-component vesicles.
Phys Rev Lett 70:1335–1338
264. Bretscher MS (1972) Asymmetrical lipid bilayer structure for biological membranes. Nature
236(61):11–12
265. Daleke DL (2007) Phospholipid flippases. J Biol Chem 282(2):821–825
266. Deserno M (2004) Elastic deformation of a fluid membrane upon colloid binding. Phys Rev E
69:031903
267. Reynwar BJ, Deserno M (2011) Membrane-mediated interactions between circular particles
in the strongly curved regime. Soft Matter 7:8567–8575
268. Weikl TR, Kozlov MM, Helfrich W (1998) Interaction of conical membrane inclusions:
effect of lateral tension. Phys Rev E 57:6988–6995. doi:10.1103/PhysRevE.57.6988
269. Yolcu C, Deserno M (2012) Membrane-mediated interactions between rigid inclusions: an
effective field theory. Phys Rev E 86:031906
270. Rothstein IZ (2003) TASI lectures on effective field theories. Available from arXiv.org,
ArXiv:hep-ph/0308266
271. Goldberger WD, Rothstein IZ (2006) An effective field theory of gravity for extended
objects. Phys Rev D 73:104029
272. Porto RA, Ross A, Rothstein IZ (2011) Spin induced multipole moments for the gravitational
wave flux from binary inspirals to third post-newtonian order. J Cosmol Astropart Phys 3:009
273. Galley CR, Leibovich AK, Rothstein IZ (2010) Finite size corrections to the radiation
reaction force in classical electrodynamics. Phys Rev Lett 105:094802
274. Yolcu C, Rothstein IZ, Deserno M (2011) Effective field theory approach to Casimir
interactions on soft matter surfaces. Europhys Lett 96:20003
275. Yolcu C, Rothstein IZ, Deserno M (2012) Effective field theory approach to fluctuationinduced forces between colloids at an interface. Phys Rev E 85:011140
Computational Studies of Biomembrane Systems: Theoretical Considerations. . .
281
hydrophobic mismatching. Phys Rev Lett 101:128104
251. de Meyer FJM, Venturoli M, Smit B (2008) Molecular simulations of lipid-mediated
protein–protein interactions. Biophys J 95:1851–1865
252. Koltover I, Ra ¨dler JO, Safinya CR (1999) Membrane mediated attraction and ordered
aggregation of colloidal particles bound to giant phospholipid vesicles. Phys Rev Lett
82:1991–1994
253. Goulian M, Bruinsma R, Pincus P (1993) Long-range forces in heterogeneous fluid membranes. Europhys Lett 22:145
254. Goulian M, Bruinsma R, Pincus P (1993) Long-range forces in heterogeneous fluid membranes: erratum. Europhys Lett 23:155
255. Fournier JB, Dommersnes PG (1997) Comment on “long-range forces in heterogeneous fluid
membranes”. Europhys Lett 39(6):681
256. Dommersnes P, Fournier JB (1999) N-body study of anisotropic membrane inclusions:
membrane mediated interactions and ordered aggregation. Eur Phys J E 12:9–12
257. Dommersnes P, Fournier J (2002) The many-body problem for anisotropic membrane
inclusions and the self-assembly of “saddle” defects into an “egg carton”. Biophys J
83:2898–2905
258. Fournier JB, Dommersnes PG, Galatola P (2003) Dynamin recruitment by clathrin coats: a
physical step? C R Biol 326:467–476
259. Wu SHW, McConnell HM (1975) Phase separations in phospholipid membranes. Biochemistry 14(4):847–854
260. Gebhardt C, Gruler H, Sackmann E (1977) Domain-structure and local curvature in lipid
bilayers and biological membranes. Z Naturforsch C 32(7–8):581–596
261. Markin VS (1981) Lateral organization of membranes and cell shapes. Biophys J 36(1):1–19
262. Andelman D, Kawakatsu T, Kawasaki K (1992) Equilibrium shape of two-component
unilamellar membranes and vesicles. Europhys Lett 19(1):57–62
263. Seifert U (1993) Curvature-induced lateral phase segregation in two-component vesicles.
Phys Rev Lett 70:1335–1338
264. Bretscher MS (1972) Asymmetrical lipid bilayer structure for biological membranes. Nature
236(61):11–12
265. Daleke DL (2007) Phospholipid flippases. J Biol Chem 282(2):821–825
266. Deserno M (2004) Elastic deformation of a fluid membrane upon colloid binding. Phys Rev E
69:031903
267. Reynwar BJ, Deserno M (2011) Membrane-mediated interactions between circular particles
in the strongly curved regime. Soft Matter 7:8567–8575
268. Weikl TR, Kozlov MM, Helfrich W (1998) Interaction of conical membrane inclusions:
effect of lateral tension. Phys Rev E 57:6988–6995. doi:10.1103/PhysRevE.57.6988
269. Yolcu C, Deserno M (2012) Membrane-mediated interactions between rigid inclusions: an
effective field theory. Phys Rev E 86:031906
270. Rothstein IZ (2003) TASI lectures on effective field theories. Available from arXiv.org,
ArXiv:hep-ph/0308266
271. Goldberger WD, Rothstein IZ (2006) An effective field theory of gravity for extended
objects. Phys Rev D 73:104029
272. Porto RA, Ross A, Rothstein IZ (2011) Spin induced multipole moments for the gravitational
wave flux from binary inspirals to third post-newtonian order. J Cosmol Astropart Phys 3:009
273. Galley CR, Leibovich AK, Rothstein IZ (2010) Finite size corrections to the radiation
reaction force in classical electrodynamics. Phys Rev Lett 105:094802
274. Yolcu C, Rothstein IZ, Deserno M (2011) Effective field theory approach to Casimir
interactions on soft matter surfaces. Europhys Lett 96:20003
275. Yolcu C, Rothstein IZ, Deserno M (2012) Effective field theory approach to fluctuationinduced forces between colloids at an interface. Phys Rev E 85:011140
Computational Studies of Biomembrane Systems: Theoretical Considerations. . .
281
