Metastasis suppression by adiponectin: LKB1 rises up to the challenge

NK Saxena, D Sharma - Cell adhesion & migration, 2010 - Taylor & Francis
NK Saxena, D Sharma
Cell adhesion & migration, 2010Taylor & Francis
Adiponectin is an adipocytokine involved in the pathogenesis of various obesity-related
disorders. Also, it has been shown that adiponectin has therapeutic potential for metabolic
syndrome, systemic insulin resistance, cardiovascular disease and more recently
carcinogenesis. Adiponectin can modulate breast cancer cell growth and proliferation. Anti-
metastatic effects of adiponectin have also been elucidated. It has been shown that
adiponectin inhibits important metastatic properties such as adhesion, invasion and …
Adiponectin is an adipocytokine involved in the pathogenesis of various obesity-related disorders. Also, it has been shown that adiponectin has therapeutic potential for metabolic syndrome, systemic insulin resistance, cardiovascular disease and more recently carcinogenesis. Adiponectin can modulate breast cancer cell growth and proliferation. Anti-metastatic effects of adiponectin have also been elucidated. It has been shown that adiponectin inhibits important metastatic properties such as adhesion, invasion and migration of breast cancer cells. Examination of the underlying molecular mechanisms has shown that adiponectin treatment increases AMP-activated protein kinase (AMPK) phosphorylation and activity. Adiponectin also increases phosphorylation of downstream target of AMPK, Acetyl-CoA Carboxylase (ACC) and decreases phosphorylation of p70S6 kinase (S6K). Importantly, adiponectin treatment increases the expression of tumor suppressor gene, LKB1 in breast cancer cells. LKB1 is required for adiponectin-mediated modulation of AMPK-S6K axis and more importantly, its biological functions including inhibition of adhesion, migration and invasion of breast cancer cells. Although further studies are required to analyze the effect of adiponectin on LKB1-AMPK-S6K axis, these data present a novel mechanism involving specific upregulation of tumor suppressor gene LKB1 by which adiponectin inhibits adhesion, invasion and migration of breast cancer cells. These results highlight a new role for LKB1 in adiponectin action and may have significant implication for development of novel therapeutic options.
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