PubMed Health⌕ Search

Biomedical subjects

M Calza

Publications and source records attributed to M Calza.

3 recordsLinked to original sources

Different vimentin expression in two clones derived from a human colocarcinoma cell line (LoVo) showing different sensitivity to doxorubicin.

We selected two clones, isolated from the human colocarcinoma cell line LoVo, showing a sensitivity to doxorubicin similar to (LoVo clone 5) or three times lower than (LoVo clone 7) the parental cell line. Since vimentin was atypically expressed in a human breast carcinoma cell line made resistant to doxorubicin, we looked at vimentin expression in these two clones with spontaneously different sensitivity to the drug. For comparison we used the parental cell line LoVo WT and LoVo/DX made resistant pharmacologically. mRNA for vimentin was undetectable by Northern blot analysis in LoVo WT and in LoVo clone 5, while expression of this gene was high in LoVo clone 7 and in LoVo/DX. This increase in mRNA levels was not related to an amplification of DNA, as suggested by Southern blot analysis. Immunofluorescence and immunocytochemistry findings confirmed, at protein level, the mRNA data. In LoVo clones 5 and 7, there were respectively 8.6% and 71% vimentin-positive cells, although the two clones showed similar expression of multidrug resistance gene 1 (mdr-1) and accumulated intracellular doxorubicin at similar levels. Similarly, drug efflux was the same for both clones. Our results show for the first time that cells resistant to doxorubicin express vimentin independently of the mdr glycoprotein. However when cells from clone 5 were transfected with human vimentin cDNA, they did not become resistant, indicating that vimentin can be considered as a marker of resistance in these cells but does not give rise to a resistant phenotype by itself.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Alpha v beta 5 integrin is localized at focal contacts by HT-1080 fibrosarcoma cells and human skin fibroblasts attached to vitronectin.

In this study we characterized alpha v beta 5 integrin on HT-1080 fibrosarcoma cells. First, alpha v beta 5 integrin was immunoprecipitated by 125I-surface labeled HT-1080 cells using a polyclonal antibody specific for beta 5 subunit (cytoplasmic domain). A heterodimer consisting of a beta 5-chain running at 100 kD (reduced) and 90 kD (non-reduced) associated with an alpha-chain 145 kD (non-reduced) and 125 kD (reduced) was obtained by SDS-PAGE and autoradiography. By double-immunofluorescence labeling, we then investigated alpha v beta 5 distribution on HT-1080 cells. Upon staining with anti-beta 5 subunit antibody, alpha v beta 5 was detected in focal contacts on cells attached to vitronectin (vn), co-localizing with vinculin at the end of actin filaments. Comparative analysis of alpha v beta 5 and alpha v beta 3 showed that both receptors can occupy the same focal contact, although on the same cell mostly they are clustered in independent focal contacts. Focal distribution of alpha v beta 5 was also found on normal human fibroblasts attached to vn, suggesting that this is not a specific feature of HT-1080 cells. Finally, we investigated the role of alpha v beta 5 and alpha v beta 3 integrins in mediating HT-1080 cell adhesion to vn. Inhibition studies using antibodies with function-blocking activity to alpha v beta 5 and alpha v beta 3 suggest a primary role of alpha v beta 5 to support cell adhesion, with a weak contribute of alpha v beta 3. Their activity can be modulated by divalent cations. Our results provide the first evidence of focal distribution of alpha v beta 5 integrin on cells attached to vn.

Binding Sites↗