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Sialylation and fucosylation of epidermal growth factor receptor suppress its dimerization and activation in lung cancer cells.


ABSTRACT: Protein glycosylation is an important posttranslational process, which regulates protein folding and functional expression. Studies have shown that abnormal glycosylation in tumor cells affects cancer progression and malignancy. In the current study, we have identified sialylated proteins using an alkynyl sugar probe in two different lung cancer cell lines, CL1-0 and CL1-5 with distinct invasiveness derived from the same parental cell line. Among the identified sialylated proteins, epidermal growth factor receptor (EGFR) was chosen to understand the effect of sialylation on its function. We have determined the differences in glycan sequences of EGFR in both cells and observed higher sialylation and fucosylation of EGFR in CL1-5 than in CL1-0. Further study suggested that overexpression of sialyltransferases in CL1-5 and ?1,3-fucosyltransferases (FUT4 or FUT6) in CL1-5 and A549 cells would suppress EGFR dimerization and phosphorylation upon EGF treatment, as compared to the control and CL1-0 cells. Such modulating effects on EGFR dimerization were further confirmed by sialidase or fucosidase treatment. Thus, increasing sialylation and fucosylation could attenuate EGFR-mediated invasion of lung cancer cells. However, incorporation of the core fucose by ?1,6-fucosylatransferase (FUT8) would promote EGFR dimerization and phosphorylation.

SUBMITTER: Liu YC 

PROVIDER: S-EPMC3136320 | biostudies-literature | 2011 Jul

REPOSITORIES: biostudies-literature

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Sialylation and fucosylation of epidermal growth factor receptor suppress its dimerization and activation in lung cancer cells.

Liu Ying-Chih YC   Yen Hsin-Yung HY   Chen Chien-Yu CY   Chen Chein-Hung CH   Cheng Ping-Fu PF   Juan Yi-Hsiu YH   Chen Chung-Hsuan CH   Khoo Kay-Hooi KH   Yu Chong-Jen CJ   Yang Pan-Chyr PC   Hsu Tsui-Ling TL   Wong Chi-Huey CH  

Proceedings of the National Academy of Sciences of the United States of America 20110627 28


Protein glycosylation is an important posttranslational process, which regulates protein folding and functional expression. Studies have shown that abnormal glycosylation in tumor cells affects cancer progression and malignancy. In the current study, we have identified sialylated proteins using an alkynyl sugar probe in two different lung cancer cell lines, CL1-0 and CL1-5 with distinct invasiveness derived from the same parental cell line. Among the identified sialylated proteins, epidermal gro  ...[more]

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