Chronic hyperglycemia, independent of plasma lipid levels, is sufficient for the loss of β-cell differentiation and secretory function in the db/db mouse model of diabetes

被引:123
作者
Kjorholt, C [1 ]
Åkerfeldt, MC [1 ]
Biden, TJ [1 ]
Laybutt, DR [1 ]
机构
[1] St Vincents Hosp, Garvan Inst Med Res, Diabet & Obes Res Program, Sydney, NSW 2010, Australia
关键词
D O I
10.2337/diabetes.54.9.2755
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The beta-cell is a highly specialized cell with a unique differentiation that optimizes glucose-induced insulin secretion (GIIS). Here, we evaluated changes in gene expression that accompany beta-cell dysfunction in the db/db mouse model of type 2 diabetes. In db/db islets, mRNA levels of many genes implicated in beta-cell glucose sensing were progressively reduced with time, as were several transcription factors important for the maintenance of beta-cell differentiation. Conversely, genes normally suppressed in beta-cells, such as a variety of stress response mediators and inhibitor of differentiation/ DNA binding 1, a gene capable of inhibiting differentiation, were markedly increased. We assessed whether this global alteration in the pattern of beta-cell gene expression was related more to chronic hyperglycemia or hyperlipidemia; db/db mice were treated with phlorizin, which selectively lowered plasma glucose, or bezafibrate, which selectively lowered plasma lipids. GIIS as well as the majority of the changes in gene expression were completely normalized by lowering glucose but were unaffected by lowering lipids. However, the restoration of GIIS was not accompanied by normalized uncoupling protein 2 or peroxisome proliferator-activated receptor gamma mRNA levels, which were upregulated in db/db islets. These studies demonstrate that hyperglycemia, independent of plasma lipid levels, is sufficient for the loss of beta-cell differentiation and secretory function in db/db mice.
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页码:2755 / 2763
页数:9
相关论文
共 56 条
[1]   The roles of ATF3 in glucose homeostasis - A transgenic mouse model with liver dysfunction and defects in endocrine pancreas [J].
Allen-Jennings, AE ;
Hartman, MG ;
Kociba, GJ ;
Hai, T .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (31) :29507-29514
[2]   Chronic exposure to free fatty acid reduces pancreatic β cell insulin content by increasing basal insulin secretion that is not compensated for by a corresponding increase in proinsulin biosynthesis translation [J].
Bollheimer, LC ;
Skelly, RH ;
Chester, MW ;
McGarry, JD ;
Rhodes, CJ .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 101 (05) :1094-1101
[3]   The loss of GLUT2 expression in the pancreatic β-cells of diabetic db/db mice is associated with an impaired DNA-binding activity of islet-specific trans-acting factors [J].
Bonny, C ;
Roduit, R ;
Gremlich, S ;
Nicod, P ;
Thorens, B ;
Waeber, G .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 1997, 135 (01) :59-65
[4]   Differential effects of hyperlipidemia on insulin secretion in islets of Langerhans from hyperglycemic versus normoglycemic rats [J].
Briaud, I ;
Kelpe, CL ;
Johnson, LM ;
Tran, POT ;
Poitout, V .
DIABETES, 2002, 51 (03) :662-668
[5]   RELATIONSHIPS BETWEEN FASTING PLASMA GLUCOSE LEVELS AND INSULIN-SECRETION DURING INTRAVENOUS GLUCOSE-TOLERANCE TESTS [J].
BRUNZELL, JD ;
ROBERTSON, RP ;
LERNER, RL ;
HAZZARD, WR ;
ENSINCK, JW ;
BIERMAN, EL ;
PORTE, D .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1976, 42 (02) :222-229
[6]   Expression profiling of palmitate- and oleate-regulated genes provides novel insights into the effects of chronic lipid exposure on pancreatic β-cell function [J].
Busch, AK ;
Cordery, D ;
Denyer, GS ;
Biden, TJ .
DIABETES, 2002, 51 (04) :977-987
[7]   Overexpression of uncoupling protein 2 inhibits glucose-stimulated insulin secretion from rat islets [J].
Chan, CB ;
MacDonald, PE ;
Saleh, MC ;
Johns, DC ;
Marbàn, E ;
Wheeler, MB .
DIABETES, 1999, 48 (07) :1482-1486
[8]   OBESE AND DIABETES - 2 MUTANT-GENES CAUSING DIABETES-OBESITY SYNDROMES IN MICE [J].
COLEMAN, DL .
DIABETOLOGIA, 1978, 14 (03) :141-148
[9]   PANCREATIC BETA-CELL-TYPE-SPECIFIC TRANSCRIPTION OF THE INSULIN GENE IS MEDIATED BY BASIC HELIX-LOOP-HELIX DNA-BINDING PROTEINS [J].
CORDLE, SR ;
HENDERSON, E ;
MASUOKA, H ;
WEIL, PA ;
STEIN, R .
MOLECULAR AND CELLULAR BIOLOGY, 1991, 11 (03) :1734-1738
[10]   Functional and molecular defects of pancreatic islets in human type 2 diabetes [J].
Del Guerra, S ;
Lupi, R ;
Marselli, L ;
Masini, M ;
Bugliani, M ;
Sbrana, S ;
Torri, S ;
Pollera, M ;
Boggi, U ;
Mosca, F ;
Del Prato, S ;
Marchetti, P .
DIABETES, 2005, 54 (03) :727-735