用户名: 密码: 验证码:
What do diffusion measurements tell us about membrane compartmentalisation? Emergence of the role of interprotein interactions
详细信息    查看全文
  • 作者:Nicolas Destainville (1) (2)
    Fabrice Dumas (1) (3)
    Laurence Salomé (1)
  • 关键词:Membrane domain ; Diffusion ; Protein interaction
  • 刊名:Journal of Chemical Biology
  • 出版年:2008
  • 出版时间:November 2008
  • 年:2008
  • 卷:1
  • 期:1-4
  • 页码:37-48
  • 全文大小:431KB
  • 参考文献:1. Kahya N (2006) Chem Phys Lipids 141:158-68
    2. Simons K, van Meer G (1988) Biochemistry 27:6197-202
    3. Jacobson K, Mouritsen OG, Anderson RG (2007) Nat Cell Biol 9:7-4
    4. London E (2005) Biochim Biophys Acta 1746:203-20
    5. Mishra S, Joshi PG (2007) J Neurochem 103(Suppl 1):135-42
    6. Singer SJ, Nicolson GL (1972) Science 175:720-31
    7. Yechiel E, Edidin M (1987) J Cell Biol 105:755-60
    8. Edidin M, Stroynowski I (1991) J Cell Biol 112:1143-150
    9. van Meer G (2005) EMBO J 24:3159-165
    10. Sharma P, Varma R, Sarasij RC, Ira Gousset K, Krishnamoorthy G, Rao M, Mayor S (2004) Cell 116:577-89
    11. Baumgart T, Hess ST, Webb WW (2003) Nature 425:821-24
    12. Dumas F, Sperotto MM, Lebrun MC, Tocanne JF, Mouritsen OG (1997) Biophys J 73:1940-953
    13. Sprong H, van der Sluijs P, van Meer G (2001) Nat Rev Mol Cell Biol 2:504-13
    14. Abney JR, Scalettar BA (1995) Biophys Chem 57:27-6
    15. Daumas F, Destainville N, Millot C, Lopez A, Dean D, Salome L (2003) Biophys J 84:356-66
    16. Kusumi A, Sako Y, Yamamoto M (1993) Biophys J 65:2021-040
    17. Fujiwara T, Ritchie K, Murakoshi H, Jacobson K, Kusumi A (2002) J Cell Biol 157:1071-081
    18. Sheetz MP (1983) Semin Hematol 20:175-88
    19. Tsuji A, Kawasaki K, Ohnishi S, Merkle H, Kusumi A (1988) Biochemistry 27:7447-452
    20. Mouritsen OG (2005) Life as a matter or fat: the emerging science of lipidomic. Springer, Berlin
    21. Brown DA, London E (1998) Annu Rev Cell Dev Biol 14:111-36
    22. Sun X, Whittaker GR (2003) J Virol 77:12543-2551
    23. Ono A, Freed EO (2001) Proc Natl Acad Sci U S A 98:13925-3930
    24. Jolly C, Sattentau QJ (2005) J Virol 79:12088-2094
    25. Moffett S, Brown DA, Linder ME (2000) J Biol Chem 275:2191-198
    26. Baumgart T, Hammond AT, Sengupta P, Hess ST, Holowka DA, Baird BA, Webb WW (2007) Proc Natl Acad Sci USA 104:3165-170
    27. Schroeder RJ, Ahmed SN, Zhu Y, London E, Brown DA (1998) J Biol Chem 273:1150-157
    28. Wolf AA, Fujinaga Y, Lencer WI (2002) J Biol Chem 277:16249-6256
    29. Schuck S, Honsho M, Ekroos K, Shevchenko A, Simons K (2003) Proc Natl Acad Sci U S A 100:5795-800
    30. Chen Y, Yang B, Jacobson K (2004) Lipids 39:1115-119
    31. Heerklotz H (2002) Biophys J 83:2693-701
    32. Simons K, Toomre D (2000) Nat Rev Mol Cell Biol 1:31-9
    33. Foret L (2005) Europhys Lett 71:508-14
    34. Turner MS, Sens P, Socci ND (2005) Phys Rev Lett 95:168301
    35. Yethiraj A, Weisshaar JC (2007) Biophys J 93:3113-119
    36. Dean DS, Manghi M (2006) Phys Rev E Stat Nonlin Soft Matter Phys 74:021916
    37. Joly E (2004) BMC Cell Biol 5:3
    38. Kenworthy AK, Nichols BJ, Remmert CL, Hendrix GM, Kumar M, Zimmerberg J, Lippincott-Schwartz J (2004) J Cell Biol 165:735-46
    39. Dietrich C, Yang B, Fujiwara T, Kusumi A, Jacobson K (2002) Biophys J 82:274-84
    40. Munro S (2003) Cell 115:377-88
    41. Pike LJ (2006) J Lipid Res 47:1597-598
    42. Jin S, Verkman AS (2007) J Phys Chem B 111:3625-632
    43. Saffarian S, Li Y, Elson EL, Pike LJ (2007) Biophys J 93:1021-031
    44. Pink D (1985) Biochim Biophys Acta 818:200-04
    45. Pink DA, Laidlaw DJ, Chisholm DM (1986) Biochim Biophys Acta 863:9-7
    46. Abney JR, Scalettar BA, Owicki JC (1989) Biophys J 55:817-33
    47. Zwanzig RW (2001) Nonequilibrium statistical mechanics. Oxford University Press, USA
    48. Meilhac N, Le Guyader L, Salome L, Destainville N (2006) Phys Rev E Stat Nonlin Soft Matter Phys 73:011915
    49. Cherry RJ, Godfrey RE, Peters R (1982) Biochem Soc Trans 10:342-43
    50. Murase K, Fujiwara T, Umemura Y, Suzuki K, Iino R, Yamashita H, Saito M, Murakoshi H, Ritchie K, Kusumi A (2004) Biophys J 86:4075-093
    51. Jacquier V, Prummer M, Segura JM, Pick H, Vogel H (2006) Proc Natl Acad Sci U S A 103:14325-4330
    52. Smith SM, Lei Y, Liu J, Cahill ME, Hagen GM, Barisas BG, Roess DA (2006) Endocrinology 147:1789-795
    53. Sauliere A (2007) Université Paul Sabatier, Toulouse, p 150
    54. Frick M, Schmidt K, Nichols BJ (2007) Curr Biol 17:462-67
    55. Destainville N (2008) Phys Rev E Stat Nonlin Soft Matter Phys 77:011913
    56. Stradner A, Sedgwick H, Cardinaux F, Poon WC, Egelhaaf SU, Schurtenberger P (2004) Nature 432:492-95
    57. Segrè PN, Prasad V, Schofield AB, DA Weitz DA (2001) Phys Rev Lett 86:6042-045
    58. Sear RP, Gelbart WM (1999) J Chem Phys 110:4582-588
    59. Groenewold J, Kegel WK (2001) J Phys Chem B 105:11702-1709
    60. Destainville N, Salome L (2006) Biophys J 90:L17–L19
    61. Reynwar BJ, Illya G, Harmandaris VA, Muller MM, Kremer K, Deserno M (2007) Nature 447:461-64
    62. Periole X, Huber T, Marrink SJ, Sakmar TP (2007) J Am Chem Soc 129:10126-0132
    63. Fournier JB, Dommersnes PG, Galatola P (2003) C R Biologies 326:467-76
    64. Alberts B, Johnson A, Lewis J, Raff M, Roberts K, Walter P (2002) Molecular biology of the cell. Garland Science, New York
    65. Romer W, Berland L, Chambon V, Gaus K, Windschiegl B, Tenza D, Aly MR, Fraisier V, Florent JC, Perrais D, Lamaze C, Raposo G, Steinem C, Sens P, Bassereau P, Johannes L (2007) Nature 450:670-75
    66. Borodich A, Rojdestvenski I, Cottam M (2003) Biophys J 85:774-89
    67. Sieber JJ, Willig KI, Kutzner C, Gerding-Reimers C, Harke B, Donnert G, Rammner B, Eggeling C, Hell SW, Grubmuller H, Lang T (2007) Science 317:1072-076
    68. Sieber JJ, Willig KI, Heintzmann R, Hell SW, Lang T (2006) Biophys J 90:2843-851
    69. Donnert G, Keller J, Medda R, Andrei MA, Rizzoli SO, Luhrmann R, Jahn R, Eggeling C, Hell SW (2006) Proc Natl Acad Sci U S A 103:11440-1445
    70. Davare MA, Avdonin V, Hall DD, Peden EM, Burette A, Weinberg RJ, Horne MC, Hoshi T, Hell JW (2001) Science 293:98-01
    71. Park PS, Palczewski K (2005) Nat Chem Biol 1:184-85
    72. Zhang J, Campbell RE, Ting AY, Tsien RY (2002) Nat Rev Mol Cell Biol 3:906-18
    73. Shaner NC, Steinbach PA, Tsien RY (2005) Nat Methods 2:905-09
    74. Fu CC, Lee HY, Chen K, Lim TS, Wu HY, Lin PK, Wei PK, Tsao PH, Chang HC, Fann W (2007) Proc Natl Acad Sci U S A 104:727-32
    75. Silvius JR, Nabi IR (2006) Mol Membr Biol 23:5-6
    76. Boyer D, Tamarat P, Maali A, Lounis B, Orrit M (2002) Science 297:1160-163
    77. Cognet L, Tardin C, Boyer D, Choquet D, Tamarat P, Lounis B (2003) Proc Natl Acad Sci U S A 100:11350-1355
    78. Fotiadis D, Liang Y, Filipek S, Saperstein DA, Engel A, Palczewski K (2003) Nature 421:127-28
    79. Czajkowsky DM, Hotze EM, Shao Z, Tweten RK (2004) EMBO J 23:3206-215
    80. Scheuring S, Sturgis JN (2005) Science 309:484-87
    81. Bodnar A, Bacso Z, Jenei A, Jovin TM, Edidin M, Damjanovich S, Matko J (2003) Int Immunol 15:331-39
    82. Ianoul A, Grant DD, Rouleau Y, Bani-Yaghoub M, Johnston LJ, Pezacki JP (2005) Nat Chem Biol 1:196-02
    83. de Bakker BI, de Lange F, Cambi A, Korterik JP, van Dijk EM, van Hulst NF, Figdor CG, Garcia-Parajo MF (2007) Chemphyschem 8:1473-480
    84. Chen Y, Shao L, Ali Z, Cai J, Chen ZW (2008) Blood (in press)
    85. Chen Y, Lagerholm BC, Yang B, Jacobson K (2006) Methods 39:147-53
    86. Soumpasis DM (1983) Biophys J 41:95-7
    87. Salome L, Cazeils JL, Lopez A, Tocanne JF (1998) Eur Biophys J 27:391-02
    88. Cezanne L, Lecat S, Lagane B, Millot C, Vollmer JY, Matthes H, Galzi JL, Lopez A (2004) J Biol Chem 279:45057-5067
    89. Baker A, Sauliere A, Gaibelet G, Lagane B, Mazeres S, Fourage M, Bachelerie F, Salome L, Lopez A, Dumas F (2008) J Biol Chem (in press)
    90. Rigler R, Elson ES (2001) Fluorescence correlation spectroscopy: theory and applications. Springer, New York
    91. Wawrezinieck L, Rigneault H, Marguet D, Lenne PF (2005) Biophys J 89:4029-042
    92. Wenger J, Conchonaud F, Dintinger J, Wawrezinieck L, Ebbesen TW, Rigneault H, Marguet D, Lenne PF (2007) Biophys J 92:913-19
    93. Haustein E, Schwille P (2007) Annu Rev Biophys Biomol Struct 36:151-69
    94. Bouzigues C, Morel M, Triller A, Dahan M (2007) Proc Natl Acad Sci U S A 104:11251-1256
    95. Groc L, Heine M, Cousins SL, Stephenson FA, Lounis B, Cognet L, Choquet D (2006) Proc Natl Acad Sci U S A 103:18769-8774
    96. Cheezum MK, Walker WF, Guilford WH (2001) Biophys J 81:2378-388
    97. Saxton MJ, Jacobson K (1997) Annu Rev Biophys Biomol Struct 26:373-99
    98. Bouzigues C, Dahan M (2007) Biophys J 92:654-60
    99. Huet S, Karatekin E, Tran VS, Fanget I, Cribier S, Henry JP (2006) Biophys J 91:3542-559
    100. Bates IR, Hebert B, Luo Y, Liao J, Bachir AI, Kolin DL, Wiseman PW, Hanrahan JW (2006) Biophys J 91:1046-058
    101. Killian JA (1998) Biochim Biophys Acta 1376:401-15
    102. Salamon Z, Cowell S, Varga E, Yamamura HI, Hruby VJ, Tollin G (2000) Biophys J 79:2463-474 CrossRef
    103. Fournier JB (1998) Eur Phys J B 11:261-72
    104. Gil T, Ipsen GH, Mouritsen OG, Sabra MC, Sperotto MM, Zuckermann MJ (1998) Biochim Biophys Acta 1376:245-66
    105. Sabra MC, Mouritsen OG (1998) Biophys J 74:745-52
    106. Likos CN (2001) Phys Rep 348:267-39
    107. Goulian M, Bruinsma R, Pincus P (1993) Europhys Lett 22:145-50
    108. Park JM, Lubensky TC (1996) J Phys I 6:1217-235
    109. Fournier JB, Dommersnes PG (1997) Europhys Lett 39:681-82
    110. Chou T, Kim KS, Oster G (2001) Biophys J 80:1075-087
    111. Deisenhofer J, Epp O, Sinning I, Michel H (1995) J Mol Biol 246:429-57
    112. Dommersnes PG, Fournier JB (1999) Europhys Lett 46:256-61
    113. Naji A, Brown FL (2007) J Chem Phys 126:235103
    114. Kim KS, Neu JC, Oster GF (1999) Europhys Lett 48:99-05
    115. Dommersnes PG, Fournier JB (1999) Eur Phys J B 12:9-2
    116. Destainville N (2008) Soft Matter. DOI 10.1039/b718583a 4:1288-301
  • 作者单位:Nicolas Destainville (1) (2)
    Fabrice Dumas (1) (3)
    Laurence Salomé (1)

    1. Institut de Pharmacologie et Biologie Structurale, UMR 5089 CNRS, Université Paul Sabatier, 205 Route de Narbonne, 31062, Toulouse, France
    2. Laboratoire de Physique Théorique, IRSAMC, UMR 5152 CNRS, Université Paul Sabatier, 118 Route de Narbonne, 31062, Toulouse, France
    3. Cell Biophysics Laboratory, London Research Institute Lincoln’s Inn Fields Laboratories, 44 Lincoln’s Inn Fields, London, WC2 3PX, UK
  • ISSN:1864-6166
文摘
The techniques of diffusion analysis based on optical microscopy approaches have revealed a great diversity of the dynamic organisation of cell membranes. For a long period, two frameworks have dominated the way of representing the membrane structure: the membrane skeleton fences and the lipid raft models. Progresses in the methods of data analysis have shed light on the features and consequently the possible origin of membrane domains: Inter-protein interactions play a role in confinement. Innovative developments pushing forward the spatiotemporal resolution limits are currently emerging, which are likely to provide in the future a detailed understanding of the intimate functional dynamic organisation of the cell membrane.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700