Note to users. If you're seeing this message, it means that your browser cannot find this page's style/presentation instructions -- or possibly that you are using a browser that does not support current Web standards. Find out more about why this message is appearing, and what you can do to make your experience of our site the best it can be.
Many mammalian cells have indentations in the plasma membrane called caveolae, but exactly what these flask-shaped pits do remains unclear. In a Perspective, Parton discusses the characteristics of caveolin-1-deficient mice that lack caveolae (Drab et al.). The mice are fertile and seem healthy but show cardiovascular defects, suggesting that caveolae may be important in nitric oxide signaling and cellular proliferation.
The author is at the Institute for Molecular Bioscience, Centre for Microscopy and Microanalysis, and School of Biomedical Sciences, University of Queensland, Queensland 4072, Australia. E-mail: r.parton{at}imb.uq.edu.au
The editors suggest the following Related Resources on Science sites:
In Science Magazine
REPORTS
Marek Drab, Paul Verkade, Marlies Elger, Michael Kasper, Matthias Lohn, Birgit Lauterbach, Jan Menne, Carsten Lindschau, Fanny Mende, Friedrich C. Luft, Andreas Schedl, Hermann Haller, and Teymuras V. Kurzchalia (28 September 2001) Science293 (5539), 2449.
[DOI: 10.1126/science.1062688] |Abstract »|Full Text »|PDF »
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
Effect of caveolin-1 scaffolding peptide and 17 -estradiol on intracellular Ca2+ kinetics evoked by angiotensin II in human vascular smooth muscle cells.
E. Mendez-Bolaina, J. Sanchez-Gonzalez, I. Ramirez-Sanchez, E. Ocharan-Hernandez, M. Nunez-Sanchez, E. Meaney-Mendiolea, A. Meaney, J. Asbun-Bojalil, A. Miliar-Garcia, I. Olivares-Corichi, et al. (2007)
Am J Physiol Cell Physiol
293, C1953-C1961
|Abstract »|Full Text »|PDF »
Caveolin-1 is required for lateral line neuromast and notochord development.
S. J. Nixon, A. Carter, J. Wegner, C. Ferguson, M. Floetenmeyer, J. Riches, B. Key, M. Westerfield, and R. G. Parton (2007)
J. Cell Sci.
120, 2151-2161
|Abstract »|Full Text »|PDF »
Ultrastructural comparison of Aplysia and Dolabrifera ink glands suggests cellular sites of anti-predator protein production and algal pigment processing.
Caveolin-1 (CAV1) Is a Target of EWS/FLI-1 and a Key Determinant of the Oncogenic Phenotype and Tumorigenicity of Ewing's Sarcoma Cells..
O. M. Tirado, S. Mateo-Lozano, J. Villar, L. E. Dettin, A. Llort, S. Gallego, J. Ban, H. Kovar, and V. Notario (2006)
Cancer Res.
66, 9937-9947
|Abstract »|Full Text »|PDF »
Transcription of the Caveolin-1 Gene Is Differentially Regulated in Lung Type I Epithelial and Endothelial Cell Lines: A ROLE FOR ETS PROTEINS IN EPITHELIAL CELL EXPRESSION.
H. Kathuria, Y. X. Cao, M. I. Ramirez, and M. C. Williams (2004)
J. Biol. Chem.
279, 30028-30036
|Abstract »|Full Text »|PDF »
Cell Surface Orifices of Caveolae and Localization of Caveolin to the Necks of Caveolae in Adipocytes.
H. Thorn, K. G. Stenkula, M. Karlsson, U. Ortegren, F. H. Nystrom, J. Gustavsson, and P. Stralfors (2003)
Mol. Biol. Cell
14, 3967-3976
|Abstract »|Full Text »|PDF »
Caveolin-1 Contributes to Assembly of Store-operated Ca2+ Influx Channels by Regulating Plasma Membrane Localization of TRPC1.
S.-c. W. Brazer, B. B. Singh, X. Liu, W. Swaim, and I. S. Ambudkar (2003)
J. Biol. Chem.
278, 27208-27215
|Abstract »|Full Text »|PDF »
Blockade of Human Immunodeficiency Virus Type 1 Expression by Caveolin-1.
M. Llano, T. Kelly, M. Vanegas, M. Peretz, T. E. Peterson, R. D. Simari, and E. M. Poeschla (2002)
J. Virol.
76, 9152-9164
|Abstract »|Full Text »|PDF »
Loss of Plasma Membrane Phospholipid Asymmetry Requires Raft Integrity. ROLE OF TRANSIENT RECEPTOR POTENTIAL CHANNELS AND ERK PATHWAY.
C. Kunzelmann-Marche, J.-M. Freyssinet, and M. C. Martinez (2002)
J. Biol. Chem.
277, 19876-19881
|Abstract »|Full Text »|PDF »
Functional Interaction of Caveolin-1 with Bruton's Tyrosine Kinase and Bmx.
L. Vargas, B. F. Nore, A. Berglof, J. E. Heinonen, P. T. Mattsson, C. I. E. Smith, and A. J. Mohamed (2002)
J. Biol. Chem.
277, 9351-9357
|Abstract »|Full Text »|PDF »