Affiliation:
1. Laboratory of Molecular Pathology, Institute of Molecular Biology, Academia Sinica, Taipei 115, Taiwan, 1 and
2. Eukaryotic Transcriptional Regulation Section, Regulation of Cell Growth Laboratory, National Cancer Institute-Frederick Cancer Research and Development Center, Frederick, Maryland 217022
Abstract
ABSTRACT
Knockout of C/EBPα causes a severe loss of liver function and, subsequently, neonatal lethality in mice. By using a gene replacement approach, we generated a new C/EBPα-null mouse strain in which C/EBPβ, in addition to its own expression, substituted for C/EBPα expression in tissues. The homozygous mutant mice
C/ebp
α
β/β
are viable and fertile and show none of the overt liver abnormalities found in the previous C/EBPα-null mouse line. Levels of hepatic PEPCK mRNA are not different between
C/ebp
α
β/β
and wild-type mice. However, despite their normal growth rate,
C/ebp
α
β/β
mice have markedly reduced fat storage in their white adipose tissue (WAT). Expression of two adipocyte-specific factors, adipsin and leptin, is significantly reduced in the WAT of
C/ebp
α
β/β
mice. In addition, expression of the non-adipocyte-specific genes for transferrin and cysteine dioxygenase is reduced in WAT but not in liver. Our study demonstrates that when expressed from the
C/ebp
α gene locus, C/EBPβ can act for C/EBPα to maintain liver functions during development. Moreover, our studies with the
C/ebp
α
β/β
mice provide new insights into the nonredundant functions of C/EBPα and C/EBPβ on gene regulation in WAT.
Publisher
American Society for Microbiology
Subject
Cell Biology,Molecular Biology
Cited by
87 articles.
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