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Differential gene expression in tumorigenic and nontumorigenic HeLa × normal human fibroblast hybrid cells

✍ Scribed by Hiroyuki Tsujimoto; Satoshi Nishizuka; J. Leslie Redpath; Eric J. Stanbridge


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
176 KB
Volume
26
Category
Article
ISSN
0899-1987

No coin nor oath required. For personal study only.

✦ Synopsis


Fusion of tumorigenic HeLa cells with human skin fibroblasts results in chromosomally stable hybrids that are nontumorigenic and no longer express the HeLa tumor-associated marker intestinal alkaline phosphatase (IAP). Previous studies of spontaneous tumorigenic segregants from the nontumorigenic hybrids implicated the loss of one copy of human fibroblast chromosome 11 in the concomitant reexpression of tumorigenicity. In an attempt to identify genes involved in the control of tumorigenic expression, we performed differential display screening of nontumorigenic hybrid cells and tumorigenic segregants. Subsequent northern blot analyses reproducibly showed 17 differentially expressed genes, eight of which were expressed differentially in the nontumorigenic hybrids and nine of which were expressed differentially in the tumorigenic hybrids. The former were genes for 80K-L protein (a substrate of protein kinase C), AXL/UFO (a receptor tyrosine kinase), insulin-like growth factor binding protein 3, apolipoprotein AI regulatory protein, collagen type I a-2 chain, transforming growth factor-b±induced gene product 3 (BIGH3), pregnancy-specific b-1-glycoprotein, and fibroblast activation protein a. The latter nine genes were genes for serum/glucocorticoid-regulated kinase (SGK; a serine/threonine protein kinase), PTPCAAX1 (a tyrosine phosphatase), CXCR-4 (a G-protein±coupled membrane receptor), L-kynurenine hydrolase, b-1,4-galactosyltransferase, keratin 8, keratin 17, and H19 and a novel gene. The differential expression of these genes provided several interesting candidates for regulation of tumorigenic expression, including those involved in signal transduction and the extracellular matrix, cytoskeletal proteins, cell-surface enzyme, and the H19 gene.


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