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PMID: 11457862 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Genomic structure and insulin-mediated repression of the aquaporin adipose (AQPap), adipose-specific glycerol channel.

The Journal of biological chemistry ·Vol. 276 ·No. 39 ·2001-09-28 ·Pages 36251-60

Kishida K, Shimomura I, Kondo H, Kuriyama H, Makino Y, Nishizawa H, Maeda N, Matsuda M, Ouchi N, Kihara S, Kurachi Y, Funahashi T, Matsuzawa Y

Abstract

Aquaporin adipose (AQPap) is a putative glycerol channel in adipocytes (Kishida, K., Kuriyama, H., Funahashi, T., Shimomura, I., Kihara, S., Ouchi, N., Nishida, M., Nishizawa, H., Matsuda, M., Takahashi, M., Hotta, K., Nakamura, T., Yamashita, S., Tochino, Y., and Matsuzawa, Y. (2000) J. Biol. Chem. 275, 20896-20902). In the current study, we examined the genomic structure of the mouse AQPap gene and its regulation by insulin. The mouse AQPap gene spanned 12 kilobase pairs in chromosome 4 and consisted of 8 exons and 7 introns. The first two exons, designated exon 1 and exon 1', are alternatively spliced to common exon 2, and thus the AQPap gene possessed two potential promoters. The exon 1-derived transcript is dominant in both adipose tissues and adipocytes on the basis of RNase protection assay and promoter analysis. The mRNA increased after fasting and decreased with refeeding. Insulin deficiency generated by streptozotocin enhanced the mRNA in adipose tissue. Insulin down-regulated AQPap mRNA in 3T3-L1 adipocytes. The AQPap promoter contained heptanucleotide sequences, TGTTTTT at -443/-437, similar to the insulin-response element identified previously in the promoters of insulin-repressed genes. Deletion and single base pair substitution analysis of the promoter revealed that these sequences were required for insulin-mediated repression of AQPap gene transcription. The phosphatidylinositol 3-kinase pathway was involved in this inhibition. We conclude that insulin represses the transcription of AQPap gene via insulin response element in its promoter. Sustained up-regulation of AQPap mRNA in adipose tissue in the insulin-resistant condition may disturb glucose homeostasis by increasing plasma glycerol.

MeSH Terms
3T3 Cells Adipocytes/metabolism Amino Acid Sequence Animals Aquaporins/chemistry,genetics Base Sequence Blotting, Northern Blotting, Southern Cattle Chromosome Mapping DNA, Complementary/metabolism Diabetes Mellitus, Experimental Dose-Response Relationship, Drug Down-Regulation Exons Gene Deletion Gene Expression Regulation Glycerol/metabolism Insulin/metabolism,pharmacology Introns Luciferases/metabolism Male Mice Mice, Inbred C57BL Mice, Inbred ICR Models, Genetic Molecular Sequence Data Phosphatidylinositol 3-Kinases/metabolism Point Mutation Promoter Regions, Genetic RNA, Messenger/metabolism Radiation Hybrid Mapping Tissue Distribution Transfection Up-Regulation
Chemicals
Aqp7 protein, mouse Aquaporins DNA, Complementary Insulin RNA, Messenger Luciferases Phosphatidylinositol 3-Kinases Glycerol
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Kishida K
Department of Internal Medicine and Molecular Science, Graduate School of Medicine, Osaka University, 2-2 Yamadaoka, Suita 565-0871, Japan.
Shimomura I
Kondo H
Kuriyama H
Makino Y
Nishizawa H
Maeda N
Matsuda M
Ouchi N
Kihara S
Kurachi Y
Funahashi T
Matsuzawa Y
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2001-09-28
Epub
2001-00-16
Pages
36251-60
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Databases
GENBANK
AB010100, AB056091, AB056092, AB056093, AB056094, AB056095, AB056096, AB056097, AB056098, AB056099
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