IGF-I Attenuates FFA-Induced Activation of JNK1 Phosphorylation and TNF[alpha] Expression in Human Subcutaneous Preadipocytes

Free fatty acids (FFAs) are increased in visceral fat and contribute to insulin resistance through multiple mechanisms, including c-Jun N-terminal kinase (JNK) activation and expression of TNFα. Given that insulin-like growth factor-1 (IGF-1)-mediated proliferation is impaired in omental compared to...

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Veröffentlicht in:Obesity (Silver Spring, Md.) Md.), 2013-09, Vol.21 (9), p.1843
Hauptverfasser: Neacsu, Otilia, Cleveland, Kelly, Xu, Haiyan, Tchkonia, Tamara T, Kirkland, James L, Boney, Charlotte M
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container_end_page
container_issue 9
container_start_page 1843
container_title Obesity (Silver Spring, Md.)
container_volume 21
creator Neacsu, Otilia
Cleveland, Kelly
Xu, Haiyan
Tchkonia, Tamara T
Kirkland, James L
Boney, Charlotte M
description Free fatty acids (FFAs) are increased in visceral fat and contribute to insulin resistance through multiple mechanisms, including c-Jun N-terminal kinase (JNK) activation and expression of TNFα. Given that insulin-like growth factor-1 (IGF-1)-mediated proliferation is impaired in omental compared to subcutaneous (SC) preadipocytes, we investigated IGF-I anti-inflammatory action in preadipocytes from SC and omental adipose tissue. Preadipocytes isolated from abdominal SC and omental fat of obese subjects were studied in primary culture. Cells were exposed to FFAs with or without IGF-I pretreatment followed by analysis of cytokine expression and JNK phosphorylation. Lentivirus infection was used to express a constitutively active AKT (myr-AKT) in omental preadipocytes. FFAs increased the expression of tumor necrosis factor (TNF)α, interleukin (IL)-6, and monocyte chemotactic protein (MCP)-1 in SC and omental preadipocytes. IGF-I pretreatment reduced FFA-induced JNK1 phosphorylation and TNFα expression in SC but not omental preadipocytes. Treatment with the JNK1/2 inhibitor SP600125 reduced FFA-induced expression of TNFα. FFAs and MALP-2, a specific TLR2/6 ligand, but not specific ligands for TLR4 and TLR1/2, increased JNK1 phosphorylation. IGF-I completely inhibited MALP-2-stimulated phosphorylation of JNK1. Expression of myr-AKT in omental preadipocytes inhibited FFA-stimulated JNK1 phosphorylation. IGF-I attenuated FFA-induced JNK1 phosphorylation and TNFα expression through activation of AKT in human subcutaneous but not omental preadipocytes.
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Given that insulin-like growth factor-1 (IGF-1)-mediated proliferation is impaired in omental compared to subcutaneous (SC) preadipocytes, we investigated IGF-I anti-inflammatory action in preadipocytes from SC and omental adipose tissue. Preadipocytes isolated from abdominal SC and omental fat of obese subjects were studied in primary culture. Cells were exposed to FFAs with or without IGF-I pretreatment followed by analysis of cytokine expression and JNK phosphorylation. Lentivirus infection was used to express a constitutively active AKT (myr-AKT) in omental preadipocytes. FFAs increased the expression of tumor necrosis factor (TNF)α, interleukin (IL)-6, and monocyte chemotactic protein (MCP)-1 in SC and omental preadipocytes. IGF-I pretreatment reduced FFA-induced JNK1 phosphorylation and TNFα expression in SC but not omental preadipocytes. Treatment with the JNK1/2 inhibitor SP600125 reduced FFA-induced expression of TNFα. FFAs and MALP-2, a specific TLR2/6 ligand, but not specific ligands for TLR4 and TLR1/2, increased JNK1 phosphorylation. IGF-I completely inhibited MALP-2-stimulated phosphorylation of JNK1. Expression of myr-AKT in omental preadipocytes inhibited FFA-stimulated JNK1 phosphorylation. IGF-I attenuated FFA-induced JNK1 phosphorylation and TNFα expression through activation of AKT in human subcutaneous but not omental preadipocytes.</description><identifier>ISSN: 1930-7381</identifier><identifier>EISSN: 1930-739X</identifier><language>eng</language><publisher>Silver Spring: Blackwell Publishing Ltd</publisher><subject>Abdomen ; Adipocytes ; Experiments ; Fatty acids ; Gene expression ; Insulin ; Insulin resistance ; Kinases ; Phosphorylation ; Proteins ; Rodents</subject><ispartof>Obesity (Silver Spring, Md.), 2013-09, Vol.21 (9), p.1843</ispartof><rights>Copyright Blackwell Publishing Ltd. 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subjects Abdomen
Adipocytes
Experiments
Fatty acids
Gene expression
Insulin
Insulin resistance
Kinases
Phosphorylation
Proteins
Rodents
title IGF-I Attenuates FFA-Induced Activation of JNK1 Phosphorylation and TNF[alpha] Expression in Human Subcutaneous Preadipocytes
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