Interaction of Human Breast Fibroblasts with Collagen I Increases Secretion of Procathepsin B
Interactions of stromal and tumor cells with the extracellular matrix may regulate expression of proteases including the lysosomal proteases cathepsins B and D. In the present study, we determined whether the expression of these two proteases in human breast fibroblasts was modulated by interactions...
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Veröffentlicht in: | The Journal of biological chemistry 2002-08, Vol.277 (35), p.32220-32227 |
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Zusammenfassung: | Interactions of stromal and tumor cells with the extracellular matrix may regulate expression of proteases including the lysosomal
proteases cathepsins B and D. In the present study, we determined whether the expression of these two proteases in human breast
fibroblasts was modulated by interactions with the extracellular matrix component, collagen I. Breast fibroblasts were isolated
from non-malignant breast tissue as well as from tissue surrounding malignant human breast tumors. Growth of these fibroblasts
on collagen I gels affected cell morphology, but not the intracellular localization of vesicles staining for cathepsin B or
D. Cathepsins B and D levels (mRNA or intracellular protein) were not affected in fibroblasts growing on collagen I gels or
plastic, nor was cathepsin D secreted from these cells. In contrast, protein expression and secretion of cathepsin B, primarily
procathepsin B, was induced by growth on collagen I gels. The induced secretion appeared to be mediated by integrins binding
to collagen I, as inhibitory antibodies against α 1 , α 2 , and β 1 integrin subunits prevented procathepsin B secretion from fibroblasts grown on collagen. In addition, procathepsin B secretion
was induced when cells were plated on β 1 integrin antibodies. To our knowledge, this is the first examination of cathepsin B and D expression and localization in
human breast fibroblasts and their regulation by a matrix protein. Secretion of the cysteine protease procathepsin B from
breast fibroblasts may have physiological and pathological consequences, as proteases are required for normal development
and for lactation of the mammary gland, yet can also initiate and accelerate the progression of breast cancer. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M204708200 |