[HTML][HTML] Structure of caveolae

RV Stan - Biochimica et Biophysica Acta (BBA)-Molecular Cell …, 2005 - Elsevier
Biochimica et Biophysica Acta (BBA)-Molecular Cell Research, 2005Elsevier
The introduction of the electron microscope to the study of the biological materials in the
second half of the last century has dramatically expanded our view and understanding of the
inner workings of cells by enabling the discovery and study of subcellular organelles. A
population of flask-shaped or spherical invaginations of the plasma membrane were
described and named plasmalemmal vesicles or caveolae. Until the discovery of caveolin-1
as their first molecular marker in early 1990s, the study of caveolae was the exclusive …
The introduction of the electron microscope to the study of the biological materials in the second half of the last century has dramatically expanded our view and understanding of the inner workings of cells by enabling the discovery and study of subcellular organelles. A population of flask-shaped or spherical invaginations of the plasma membrane were described and named plasmalemmal vesicles or caveolae. Until the discovery of caveolin-1 as their first molecular marker in early 1990s, the study of caveolae was the exclusive domain of electron microscopists that demonstrated caveolae at different surface densities in most mammalian cells with few exceptions. Electron microscopy techniques in combination with other approaches have also revealed the structural features of caveolae as well as some of their protein and lipid residents. This review summarizes the data on the structure and components of caveolae and their stomatal diaphragms.
Elsevier