TY - JOUR
T1 - Isoforms of caveolin-1 and caveolar structure
AU - Fujimoto, T.
AU - Kogo, H.
AU - Nomura, R.
AU - Une, T.
PY - 2000
Y1 - 2000
N2 - The relationship between caveolin-1 isoforms (α and β) and caveolar ultrastructure was studied. By immunofluorescence microscopy of human fibroblasts, caveolae were observed as dots positive for caveolin-1, but many dots labeled by an antibody recognizing both isoforms (anti-αβ) were not labeled by another antibody specific for the α isoform (anti-α). Immunogold electron microscopy of freeze-fracture replicas revealed caveolae of different depths, and indicated that anti-α labeled deep caveolae preferentially over shallow ones, whereas anti-αβ labeled both forms with an equivalent frequency and intensity. The presence of the β isoform in deep caveolae was confirmed by labeling epitope-tagged β-caveolin. When made to be expressed in HepG2 cells lacking endogenous caveolins, the α isoform formed caveolar depressions efficiently, but the β isoform hardly did so. Caveolae were also formed in cells expressing the two isoforms, but their frequency was variable among cells of the same clone. Coexpression of caveolin-1 and caveolin-2 caused more efficient formation of deep caveolae than caveolin-1 alone. The result indicates that the two isoforms of caveolin-1 have a different potential for forming caveolae structure, and more importantly, that deep and shallow caveolae may be diversified in their molecular composition.
AB - The relationship between caveolin-1 isoforms (α and β) and caveolar ultrastructure was studied. By immunofluorescence microscopy of human fibroblasts, caveolae were observed as dots positive for caveolin-1, but many dots labeled by an antibody recognizing both isoforms (anti-αβ) were not labeled by another antibody specific for the α isoform (anti-α). Immunogold electron microscopy of freeze-fracture replicas revealed caveolae of different depths, and indicated that anti-α labeled deep caveolae preferentially over shallow ones, whereas anti-αβ labeled both forms with an equivalent frequency and intensity. The presence of the β isoform in deep caveolae was confirmed by labeling epitope-tagged β-caveolin. When made to be expressed in HepG2 cells lacking endogenous caveolins, the α isoform formed caveolar depressions efficiently, but the β isoform hardly did so. Caveolae were also formed in cells expressing the two isoforms, but their frequency was variable among cells of the same clone. Coexpression of caveolin-1 and caveolin-2 caused more efficient formation of deep caveolae than caveolin-1 alone. The result indicates that the two isoforms of caveolin-1 have a different potential for forming caveolae structure, and more importantly, that deep and shallow caveolae may be diversified in their molecular composition.
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M3 - Article
C2 - 10984441
AN - SCOPUS:0033756726
SN - 0021-9533
VL - 113
SP - 3509
EP - 3517
JO - Journal of cell science
JF - Journal of cell science
IS - 19
ER -