Page 307 - 73_04
P. 307

VOL. 73 (4), 1093-1125, 2007  PAPEL DE LA CAVEOLINA-1 EN LA...

(14)  RAZANI, B., WANG, X. B., ENGELMAN, J. A., BATTISTA, M., LAGAUD, G., ZHANG, X.
      L., KNEITZ, B., HOU, H., JR., CHRIST, G. J., EDELMANN, W. AND LISANTI, M. P.
(15)  (2002) Caveolin-2-deficient mice show evidence of severe pulmonary dys-
(16)  function without disruption of caveolae. Mol. Cell. Biol. 22: 2329-2344.
(17)  PARTON, R. G., WAY, M., ZORZI, N. AND STANG, E. (1997) Caveolin-3 associates
(18)  with developing T-tubules during muscle differentiation. J. Cell. Biol. 136:
(19)  137-154.
      SCHERER, P. E., LISANTI, M. P., BALDINI, G., SARGIACOMO, M., MASTICK, C. C. AND
(20)  LODISH, H. F. (1994) Induction of caveolin during adipogenesis and associa-
(21)  tion of GLUT4 with caveolin-rich vesicles. J. Cell. Biol. 127: 1233-1243.
(22)  SIMIONESCU, N., SIMINOESCU, M. AND PALADE, G. E. (1975) Permeability of
      muscle capillaries to small heme-peptides. Evidence for the existence of
(23)  patent transendothelial channels. J. Cell. Biol. 64: 586-607.
(24)  SINGER, S. J. AND NICOLSON, G. L. (1972) The fluid mosaic model of the
      structure of cell membranes. Science. 175: 720-731.
(25)  VEREB, G., SZOLLOSI, J., MATKO, J., NAGY, P., FARKAS, T., VIGH, L., MATYUS, L.,
(26)  WALDMANN, T. A. AND DAMJANOVICH, S. (2003) Dynamic, yet structured: The
(27)  cell membrane three decades after the Singer-Nicolson model. Proc. Natl.
      Acad. Sci. U. S. A. 100: 8053-8058.
(28)  BROWN, D. A. AND LONDON, E. (1998) Functions of lipid rafts in biological
      membranes. Annu. Rev. Cell. Dev. Biol. 14: 111-136.
      SIMONS, K. AND TOOMRE, D. (2000) Lipid rafts and signal transduction. Nat.
      Rev. Mol. Cell. Biol. 1: 31-39.
      LIU, J., OH, P., HORNER, T., ROGERS, R. A. AND SCHNITZER, J. E. (1997) Orga-
      nized endothelial cell surface signal transduction in caveolae distinct from
      glycosylphosphatidylinositol-anchored protein microdomains. J. Biol. Chem.
      272: 7211-7222.
      BROWN, D. A. AND ROSE, J. K. (1992) Sorting of GPI-anchored proteins to
      glycolipid-enriched membrane subdomains during transport to the apical
      cell surface. Cell. 68: 533-544.
      LISANTI, M. P., SCHERER, P. E., VIDUGIRIENE, J., TANG, Z., HERMANOWSKI-VO-
      SATKA, A., TU, Y. H., COOK, R. F. AND SARGIACOMO, M. (1994) Characterization
      of caveolin-rich membrane domains isolated from an endothelial-rich sour-
      ce: implications for human disease. J. Cell. Biol. 126: 111-126.
      GLENNEY, J. R. J. AND ZOKAS, L. (1989) Novel tyrosine kinase substrates from
      Rous sarcoma virus-transformed cells are present in the membrane skele-
      ton. J. Cell. Biol. 108: 2401–2408.
      ROTHBERG, K. G., HEUSER, J. E., DONZELL, W. C., YING, Y. S., GLENNEY, J. R.
      AND ANDERSON, R. G. (1992) Caveolin, a protein component of caveolae mem-
      brane coats. Cell. 68: 673–682.
      SCHERER, P. E., TANG, Z., CHUN, M., SARGIACOMO, M., LODISH, H. F. AND LISANTI,
      M. P. (1995) Caveolin isoforms differ in their N-terminal protein sequence
      and subcellular distribution. Identification and epitope mapping of an iso-
      form-specific monoclonal antibody probe. J. Biol. Chem. 270: 16395-16401.
      SCHERER, P. E., OKAMOTO, T., CHUN, M., NISHIMOTO, I., LODISH, H. F. AND LISAN-
      TI, M. P. (1996) Identification, sequence and expression of caveolin-2 defi-
      nes a caveolin gene family. Proc. Natl. Acad. Sci. U.S.A. 93: 131–135.

                              1117
   302   303   304   305   306   307   308   309   310   311   312