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Expression of genes coding for proteoglycans and Wilms' tumour susceptibility gene 1 (WT1) by variously
1Department of IMPI, Division of Pathology, Karolinska Institute, F46, Huddinge University Hospital, S-14186 Huddinge, Sweden.
Abstract:
Mesothelial cells are of mesenchymal origin, although they also have epithelial characteristics. Such cells obtained from benign effusions are not terminally differentiated and can be kept in short-term cultures. These cultures grow with an either epithelial or fibroblast-like phenotype, a pattern which is stable through the early passages. Several factors have been associated with mesothelial differentiation. The Wilms' tumour susceptibility gene 1 (WT1) is expressed during transitions of mesenchyme to epithelial tissues, as in the embryonic kidney, and it has been suggested as a marker for the mesothelial lineage. The proteoglycans (PGs) and hyaluronan are also differentially synthesised by epithelial and fibroblastic malignant mesothelioma cells and the cell surface PGs seem to indicate phenotypic differentiation even in epithelial tumours. To investigate how the epithelial and fibroblast-like differentiation of benign mesothelial cells was correlated to WT1, PGs and hyaluronan synthase, we studied their expression by semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR) analyses. The expressions of these genes were all associated with a variation in phenotypic differentiation. Cell lines with epithelial morphology expressed more mRNA coding for WT1 and cell surface PGs than did the fibroblastic ones, the difference being greatest for syndecan-4 and glypican. The increase in WT1-associated mRNA was about as great as that of syndecans. Fibroblast-like cells, on the other hand, expressed substantially more of the matrix PGs versican and biglycan, while decorin expression was detected in only trace amounts in both morphological phenotypes. Hyaluronan synthase varied individually between the cell lines, although epithelial cells often expressed higher levels. The results indicate that the regulation of mesothelial differentiation is multifactorial and also involves WT1 and several PGs.
Insights
Mesothelial cell differentiation involves Wilms
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Mesothelial cells possess both mesenchymal and epithelial characteristics.
- These cells, when cultured from benign effusions, exhibit stable epithelial or fibroblast-like phenotypes.
- The Wilms' tumour susceptibility gene 1 (WT1) and proteoglycans (PGs) are implicated in mesothelial lineage and differentiation.
Purpose of the Study:
- To investigate the correlation between epithelial and fibroblast-like differentiation in benign mesothelial cells.
- To analyze the expression of WT1, PGs, and hyaluronan synthase in relation to mesothelial cell phenotype.
- To understand the molecular factors regulating mesothelial cell differentiation.
Main Methods:
- Utilized semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR) analyses.
- Studied gene expression patterns in cultured benign mesothelial cells with distinct morphologies.
- Quantified mRNA levels for WT1, various PGs (syndecan-4, glypican, versican, biglycan, decorin), and hyaluronan synthase.
Main Results:
- Epithelial-like mesothelial cells showed higher mRNA expression for WT1 and cell surface PGs (syndecan-4, glypican) compared to fibroblast-like cells.
- Fibroblast-like cells predominantly expressed matrix PGs, specifically versican and biglycan.
- Hyaluronan synthase expression varied, with epithelial cells generally showing higher levels.
Conclusions:
- Gene expression of WT1 and specific proteoglycans is significantly associated with mesothelial cell phenotypic differentiation.
- The regulation of mesothelial differentiation is a multifactorial process involving WT1 and multiple proteoglycans.
- WT1 and cell surface PGs may serve as markers for epithelial differentiation in mesothelial cells.