Insulin resistance in adipose tissue:: direct and indirect effects of tumor necrosis factor-α

被引:372
作者
Ruan, H
Lodish, HF
机构
[1] Whitehead Inst Biomed Res, Cambridge, MA 02142 USA
[2] MIT, Dept Biol, Cambridge, MA 02142 USA
关键词
insulin resistance; obesity; free fatty acid; adipocyte-secreted factors; adipose tissue; tumor necrosis factor-alpha; NF-kappa B;
D O I
10.1016/S1359-6101(03)00052-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Insulin resistance is a fundamental defect that precedes the development of the full insulin resistance syndrome as well as P cell failure and type 2 diabetes. Tumor necrosis factor-alpha (TNF-alpha), a paracrine/autocrine factor highly expressed in adipose tissues of obese animals and human subjects, is implicated in the induction of insulin resistance seen in obesity and type 2 diabetes. Here, we review several molecular aspects of adipose tissue physiology, and highlight the direct effects of TNF-alpha on the functions of adipose tissue including induction of lipolysis, inhibition of insulin signaling, and alterations in expression of adipocyte important genes through activation of NF-kappaB, as well as their pertinence to insulin sensitivity of adipocytes. We also review the ability of TNF-alpha to inhibit synthesis of several adipocyte-specific proteins including Acrp30 (adiponectin) and enhance release of free fatty acids (FFAs) from adipose tissue, and discuss how these factors may act as systemic mediators of TNF-alpha and affect whole body energy homeostasis and overall insulin sensitivity. On the basis of these mechanisms, we examine the therapeutic potential of blocking specific autocrine/paracrine signaling pathways in adipocytes, particularly those involving NF-kappaB, in the treatment of type 2 diabetes. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:447 / 455
页数:9
相关论文
共 112 条
[1]   Paradoxical decrease of an adipose-specific protein, adiponectin, in obesity [J].
Arita, Y ;
Kihara, S ;
Ouchi, N ;
Takahashi, M ;
Maeda, K ;
Miyagawa, J ;
Hotta, K ;
Shimomura, I ;
Nakamura, T ;
Miyaoka, K ;
Kuriyama, H ;
Nishida, M ;
Yamashita, S ;
Okubo, K ;
Matsubara, K ;
Muraguchi, M ;
Ohmoto, Y ;
Funahashi, T ;
Matsuzawa, Y .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 257 (01) :79-83
[2]   Insulin resistance in type 2 diabetes: role of fatty acids [J].
Arner, P .
DIABETES-METABOLISM RESEARCH AND REVIEWS, 2002, 18 :S5-S9
[3]   INFLUENCE OF NICOTINIC-ACID ON RATES OF TURNOVER AND OXIDATION OF PLASMA GLUCOSE IN MAN [J].
BALASSE, EO ;
NEEF, MA .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1973, 22 (09) :1193-1204
[4]  
BELFRAGE P, 1981, INT J OBESITY, V5, P635
[5]  
BELFRAGE P, 1985, INT J OBESITY, V9, P129
[6]   ACRP30/adiponectin: an adipokine regulating glucose and lipid metabolism [J].
Berg, AH ;
Combs, TP ;
Scherer, PE .
TRENDS IN ENDOCRINOLOGY AND METABOLISM, 2002, 13 (02) :84-89
[7]   The adipocyte-secreted protein Acrp30 enhances hepatic insulin action [J].
Berg, AH ;
Combs, TP ;
Du, XL ;
Brownlee, M ;
Scherer, PE .
NATURE MEDICINE, 2001, 7 (08) :947-953
[8]   IDENTITY OF TUMOR NECROSIS FACTOR AND THE MACROPHAGE-SECRETED FACTOR CACHECTIN [J].
BEUTLER, B ;
GREENWALD, D ;
HULMES, JD ;
CHANG, M ;
PAN, YCE ;
MATHISON, J ;
ULEVITCH, R ;
CERAMI, A .
NATURE, 1985, 316 (6028) :552-554
[9]   A metalloproteinase disintegrin that releases tumour-necrosis factor-alpha from cells [J].
Black, RA ;
Rauch, CT ;
Kozlosky, CJ ;
Peschon, JJ ;
Slack, JL ;
Wolfson, MF ;
Castner, BJ ;
Stocking, KL ;
Reddy, P ;
Srinivasan, S ;
Nelson, N ;
Boiani, N ;
Schooley, KA ;
Gerhart, M ;
Davis, R ;
Fitzner, JN ;
Johnson, RS ;
Paxton, RJ ;
March, CJ ;
Cerretti, DP .
NATURE, 1997, 385 (6618) :729-733
[10]   Adipose tissue selective insulin receptor knockout protects against obesity and obesity-related glucose intolerance [J].
Blüher, M ;
Michael, MD ;
Peroni, OD ;
Ueki, K ;
Carter, N ;
Kahn, BB ;
Kahn, CR .
DEVELOPMENTAL CELL, 2002, 3 (01) :25-38