UNLABELLED: Leptin is an adiopokine that plays a pivotal role in the progression of liver fibrogenesis and carcinogenesis. Recently, leptin was shown to be mitogenic in human liver cancer cell lines HepG2 and Huh7. Whether leptin can act as a mitogen in normal hepatocytes is unclear. Methionine adenosyltransferase (MAT) is an essential enzyme that catalyzes the formation of S-adenosylmethionine (SAMe), the principal methyl donor and precursor of polyamines. Two genes (MAT1A and MAT2A) encode for the catalytic subunit of MAT, whereas a third gene (MAT2beta) encodes for a regulatory subunit that modulates the activity of MAT2A-encoded isoenzyme. The aims of this study were to examine whether leptin's mitogenic activity involves MAT2A and MAT2beta and whether this can be modulated. We found that leptin is mitogenic in HepG2 cells but not in primary human or mouse hepatocytes. Leptin induced the expression of MAT2A and MAT2beta in HepG2 cells and normal human and mouse hepatocytes, but although it increased SAMe level in HepG2 cells, it had no effect on SAMe level in normal hepatocytes. Leptin-mediated induction of MAT genes and growth in HepG2 cells required activation of extracellular signal-regulated kinase and phosphatidylinositol-3-kinase signaling pathways. Treatment with SAMe or its metabolite methylthioadenosine (MTA) lowered expression of MAT2A and MAT2beta and blocked leptin-induced signaling, including an increase in MAT gene expression and growth. Increased expression of MAT2A and MAT2beta is required for leptin to be mitogenic, although by entirely different mechanisms. CONCLUSION: Leptin induces MAT2A and MAT2beta expression in HepG2 cells and normal hepatocytes but is mitogenic only in HepG2 cells. Pharmacological doses of SAMe or MTA lower expression of both MAT2A and MAT2beta and interfere with leptin signaling.
UNLABELLED: Leptin is an adiopokine that plays a pivotal role in the progression of liver fibrogenesis and carcinogenesis. Recently, leptin was shown to be mitogenic in humanliver cancer cell lines HepG2 and Huh7. Whether leptin can act as a mitogen in normal hepatocytes is unclear. Methionine adenosyltransferase (MAT) is an essential enzyme that catalyzes the formation of S-adenosylmethionine (SAMe), the principal methyl donor and precursor of polyamines. Two genes (MAT1A and MAT2A) encode for the catalytic subunit of MAT, whereas a third gene (MAT2beta) encodes for a regulatory subunit that modulates the activity of MAT2A-encoded isoenzyme. The aims of this study were to examine whether leptin's mitogenic activity involves MAT2A and MAT2beta and whether this can be modulated. We found that leptin is mitogenic in HepG2 cells but not in primary human or mouse hepatocytes. Leptin induced the expression of MAT2A and MAT2beta in HepG2 cells and normal human and mouse hepatocytes, but although it increased SAMe level in HepG2 cells, it had no effect on SAMe level in normal hepatocytes. Leptin-mediated induction of MAT genes and growth in HepG2 cells required activation of extracellular signal-regulated kinase and phosphatidylinositol-3-kinase signaling pathways. Treatment with SAMe or its metabolite methylthioadenosine (MTA) lowered expression of MAT2A and MAT2beta and blocked leptin-induced signaling, including an increase in MAT gene expression and growth. Increased expression of MAT2A and MAT2beta is required for leptin to be mitogenic, although by entirely different mechanisms. CONCLUSION:Leptin induces MAT2A and MAT2beta expression in HepG2 cells and normal hepatocytes but is mitogenic only in HepG2 cells. Pharmacological doses of SAMe or MTA lower expression of both MAT2A and MAT2beta and interfere with leptin signaling.
Authors: Elena R García-Trevijano; María L Martínez-Chantar; M Ujue Latasa; José M Mato; Matías A Avila Journal: Gastroenterology Date: 2002-05 Impact factor: 22.682
Authors: Maria Lauda Tomasi; Ivan Tomasi; Komal Ramani; Rosa Maria Pascale; Jun Xu; Pasquale Giordano; José M Mato; Shelly C Lu Journal: Hepatology Date: 2012-07-12 Impact factor: 17.425
Authors: Tony W H Li; Qingsong Zhang; Pilsoo Oh; Meng Xia; Hui Chen; Sean Bemanian; Natalie Lastra; Magda Circ; Mary Pat Moyer; José M Mato; Tak Yee Aw; Shelly C Lu Journal: Mol Pharmacol Date: 2009-04-16 Impact factor: 4.436
Authors: Shelly C Lu; Komal Ramani; Xiaopeng Ou; Mark Lin; Victor Yu; Kwangsuk Ko; Ryan Park; Teodoro Bottiglieri; Hidekazu Tsukamoto; Gary Kanel; Samuel W French; José M Mato; Rex Moats; Edward Grant Journal: Hepatology Date: 2009-08 Impact factor: 17.425
Authors: Maria Lauda Tomasi; Ainhoa Iglesias-Ara; Heping Yang; Komal Ramani; Francesco Feo; Maria Rosa Pascale; M Luz Martínez-Chantar; José M Mato; Shelly C Lu Journal: Gastroenterology Date: 2008-09-25 Impact factor: 22.682
Authors: Ashok Sharma; Shoshana M Bartell; Clifton A Baile; Bo Chen; Robert H Podolsky; Richard A McIndoe; Jin-Xiong She Journal: PLoS One Date: 2010-08-16 Impact factor: 3.240