Integrin alpha v beta 3 rescues melanoma cells from apoptosis in three-dimensional dermal collagen.
Author(s) -
A M Montgomery,
R. Reisfeld,
David A. Cheresh
Publication year - 1994
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.91.19.8856
Subject(s) - integrin , apoptosis , alpha v beta 3 , microbiology and biotechnology , alpha (finance) , melanoma , collagen receptor , transfection , beta (programming language) , integrin alpha m , biology , chemistry , extracellular matrix , cell culture , cancer research , fibronectin , cell , vitronectin , medicine , biochemistry , flow cytometry , patient satisfaction , computer science , programming language , genetics , construct validity , nursing
Human melanoma cells required ligation of the integrin alpha v beta 3 to sustain viability and growth in three-dimensional dermal collagen. Variant melanoma cells, lacking the alpha v subunit, progressed rapidly to apoptosis within this matrix, whereas transfection of these cells with an alpha v cDNA restored alpha v beta 3 expression and prevented apoptosis. Furthermore, inhibition of alpha v beta 3 ligation with a monoclonal antibody promoted cell death. Apoptosis of alpha v(-) cells within this matrix could be overcome by the addition of insulin or serum. However, alpha v(+) melanoma cells had a significant growth advantage in the presence of these growth factors. Initial adhesion of the melanoma cells to type I collagen depended on ligation of alpha 2 beta 1, but these cells can degrade this collagen to expose cryptic alpha v beta 3 binding sites. These findings provide evidence that the survival and growth of transformed cells may be regulated by collagen degradation and integrin-dependent anchorage to this proteolysed matrix.
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