Phytohemagglutinin-L (PHA-L) lectin surface binding of N-linked β1-6 carbohydrate and its relationship to activated mutant ras in human pancreatic cancer cell lines Journal Article


Authors: Schwarz, R. E.; Wojciechowicz, D. C.; Park, P. Y.; Paty, P. B.
Article Title: Phytohemagglutinin-L (PHA-L) lectin surface binding of N-linked β1-6 carbohydrate and its relationship to activated mutant ras in human pancreatic cancer cell lines
Abstract: Alterations of the N-linked carbohydrate core structure of cell surface glycoproteins (β1-6 branching) can be detected by phytohemagglutinin (PHA-L) lectin binding and has been linked to tumor progression and K-ras activation in colon cancer. The purpose of this study was to determine the prevalence of this carbohydrate alteration and its relationship to K-ras activation in pancreatic cancer. Nine human pancreatic cancer cell lines and 4 colon lines as controls were grown under standard tissue culture conditions. K-ras genome analysis was performed by polymerase chain reaction amplification and sequencing. The proportion of cellular p21-ras bound to GTP (ras-GTP level) was determined using immunoprecipitation of 32P-labeled cell lysates followed by thin layer chromatography and phosphoimaging analysis. Lectin blot analysis was performed on crude membrane preparations. Sensitivity to lectins was assessed with cell culture thymidine incorporation. Of 9 pancreatic cancer lines tested, 3 had wild type K-ras, 2 had heterozygous and 4 had homozygous mutations in codon 12 of K-ras. These genotypes correlated strongly with the level of ras-GTP measured. K-ras mutants had increased levels of ras-GTP compared to wild-type cell lines. PHA-L binding to cell membranes correlated positively with ras-GTP levels in 7 out of 9 cell lines. PHA-L toxicity was greatest in cells with positive PHA-L reactivity on Western blotting. A positive correlation between the presence of K-ras mutation, increased ras-GTP level, and increased cell surface β1-6 N-linked carbohydrate exists in pancreatic cancer cell lines.
Keywords: controlled study; gene mutation; human cell; mutation; pancreas cancer; pancreatic neoplasms; polymerase chain reaction; cancer cell culture; tumor cells, cultured; gene activation; membrane glycoproteins; immunoprecipitation; immunoblotting; oncogene protein p21(ras); dna sequence; ras protein; pancreatic cancer; oncogene k ras; genes, ras; guanosine triphosphate; guanine nucleotide binding protein; colon; thin layer chromatography; carbohydrate analysis; carbohydrate; membrane binding; cell surface protein; lectin; phytohemagglutinin; phosphorus 32; concanavalin a; lectin binding; humans; human; priority journal; article; phytohemagglutinins; β1-6 n-linked carbohydrate; k-ras oncogen
Journal Title: Cancer Letters
Volume: 107
Issue: 2
ISSN: 0304-3835
Publisher: Elsevier Ireland Ltd.  
Date Published: 1996-10-22
Start Page: 285
End Page: 291
Language: English
DOI: 10.1016/0304-3835(96)04386-8
PUBMED: 8947526
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 22 November 2017 -- Source: Scopus
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  1. Philip B Paty
    499 Paty