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PMID: 16543372 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

knocking down liver ccaat/enhancer-binding protein alpha by adenovirus-transduced silent interfering ribonucleic acid improves hepatic gluconeogenesis and lipid homeostasis in db/db mice.

Endocrinology ·Vol. 147 ·No. 6 ·2006-06-00 ·Pages 3060-9

Qiao L, MacLean PS, You H, Schaack J, Shao J

Abstract

CCAAT/enhancer-binding protein-alpha (C/EBPalpha) is a member of the basic leucine zipper transcription factor family and regulates expression of several enzymes in the liver that control glucose and lipid metabolism. Using adenovirus-transduced silent interfering (si)RNA against C/EBPalpha, endogenous liver C/EBPalpha protein was knocked down by 70-80% in 8-wk-old wild-type (WT) and db/db mice. In WT mice, fasting blood glucose concentrations were reduced approximately 24% without changes in plasma free fatty acid and triglycerides, when compared with LacZ adenovirus-treated control mice. Ad-C/EBPalpha siRNA treatment nearly normalized fasting glucose and significantly reduced plasma insulin and free fatty acid content, even though there was no elevation of C/EBPalpha protein in the livers of db/db mice. In parallel with the changes in glucose levels, hepatic glucose production was significantly reduced in C/EBPalpha siRNA-treated WT and db/db mice. mRNA levels of phyosphoenolpyruvate carboxykinase, glucose-6-phosphatase, and liver glycogen synthase were decreased in the C/EBPalpha siRNA-treated WT and db/db mice. Interestingly, the magnitude of reduction in these enzymes was more profound in db/db mice. C/EBPalpha siRNA also decreased mRNA levels of proliferator activator protein-gamma coactivator-1alpha in both the WT and db/db mice but reduced cAMP response element-binding protein only in WT and did not alter hepatic nuclear factor-4alpha and CBP/p300 expression. Expression of genes involved in lipogenesis, such as fatty acid synthase, acetyl-CoA carboxylase, and sterol regulatory element-binding protein-1c was robustly suppressed in the C/EBPalpha siRNA-treated db/db mice. Taken together, these results indicate that C/EBPalpha plays an important role in maintaining glucose and lipid homeostasis in the liver.

MeSH Terms
Adenoviridae/genetics Animals CCAAT-Enhancer-Binding Protein-alpha/antagonists & inhibitors,genetics CCAAT-Enhancer-Binding Protein-beta/physiology DNA-Binding Proteins/genetics Diabetes Mellitus/metabolism Gluconeogenesis Glucose/metabolism Glucose-6-Phosphatase/genetics Homeostasis Lipid Metabolism Liver/metabolism Liver X Receptors Male Mice Mice, Inbred C57BL Orphan Nuclear Receptors PPAR alpha/genetics Phosphoenolpyruvate Carboxykinase (GTP)/genetics RNA, Messenger/analysis RNA, Small Interfering/pharmacology Receptors, Cytoplasmic and Nuclear/genetics Sterol Regulatory Element Binding Protein 1/genetics Transcription Factors/genetics
Chemicals
CCAAT-Enhancer-Binding Protein-alpha CCAAT-Enhancer-Binding Protein-beta DNA-Binding Proteins Liver X Receptors Orphan Nuclear Receptors PPAR alpha RNA, Messenger RNA, Small Interfering Receptors, Cytoplasmic and Nuclear Srebf1 protein, mouse Sterol Regulatory Element Binding Protein 1 Transcription Factors peroxisome-proliferator-activated receptor-gamma coactivator-1 Glucose-6-Phosphatase Phosphoenolpyruvate Carboxykinase (GTP) Glucose
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Qiao Liping
Graduate Center for Nutritional Sciences, University of Kentucky, Lexington, Kentucky 40536-0200, USA.
MacLean Paul S
You Hanning
Schaack Jerome
Shao Jianhua
Article Info
Journal
Endocrinology
Abbr.
Endocrinology
ISSN
0013-7227
Published
2006-06-00
Epub
2006-00-16
Pages
3060-9
Language
English
Region
United States
NLM ID
0375040
Subset
IM
Grants
NIDDK NIH HHS · DK67403 · United States
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