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PMID: 11696000 Published · ppublish English Journal Article

BFIT, a unique acyl-CoA thioesterase induced in thermogenic brown adipose tissue: cloning, organization of the human gene and assessment of a potential link to obesity.

The Biochemical journal ·Vol. 360 ·No. Pt 1 ·2001-00-15 ·Pages 135-42

Adams SH, Chui C, Schilbach SL, Yu XX, Goddard AD, Grimaldi JC, Lee J, Dowd P, Colman S, Lewin DA

Abstract

We hypothesized that certain proteins encoded by temperature-responsive genes in brown adipose tissue (BAT) contribute to the remarkable metabolic shifts observed in this tissue, thus prompting a differential mRNA expression analysis to identify candidates involved in this process in mouse BAT. An mRNA species corresponding to a novel partial-length gene was found to be induced 2-3-fold above the control following cold exposure (4 degrees C), and repressed approximately 70% by warm acclimation (33 degrees C, 3 weeks) compared with controls (22 degrees C). The gene displayed robust BAT expression (i.e. approximately 7-100-fold higher than other tissues in controls). The full-length murine gene encodes a 594 amino acid ( approximately 67 kDa) open reading frame with significant homology to the human hypothetical acyl-CoA thioesterase KIAA0707. Based on cold-inducibility of the gene and the presence of two acyl-CoA thioesterase domains, we termed the protein brown-fat-inducible thioesterase (BFIT). Subsequent analyses and cloning efforts revealed the presence of a novel splice variant in humans (termed hBFIT2), encoding the orthologue to the murine BAT gene. BFIT was mapped to syntenic regions of chromosomes 1 (human) and 4 (mouse) associated with body fatness and diet-induced obesity, potentially linking a deficit of BFIT activity with exacerbation of these traits. Consistent with this notion, BFIT mRNA was significantly higher ( approximately 1.6-2-fold) in the BAT of obesity-resistant compared with obesity-prone mice fed a high-fat diet, and was 2.5-fold higher in controls compared with ob/ob mice. Its strong, cold-inducible BAT expression in mice suggests that BFIT supports the transition of this tissue towards increased metabolic activity, probably through alteration of intracellular fatty acyl-CoA concentration.

MeSH Terms
Adipose Tissue/enzymology Alternative Splicing Amino Acid Sequence Amino Acids/chemistry Animals Cloning, Molecular Cold Temperature DNA, Complementary/metabolism Humans Mice Models, Genetic Molecular Sequence Data Obesity/genetics Open Reading Frames Palmitoyl-CoA Hydrolase/biosynthesis,chemistry,genetics Protein Structure, Tertiary RNA, Messenger/metabolism Radiation Hybrid Mapping Reverse Transcriptase Polymerase Chain Reaction Sequence Homology, Amino Acid Temperature Tissue Distribution
Chemicals
Amino Acids DNA, Complementary RNA, Messenger ACOT11 protein, human Thea protein, mouse Palmitoyl-CoA Hydrolase
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Adams S H
Department of Endocrinology, Genentech, Inc., South San Francisco, CA 94080, USA. sean.adams@pharma.novartis.com
Chui C
Schilbach S L
Yu X X
Goddard A D
Grimaldi J C
Lee J
Dowd P
Colman S
Lewin D A
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Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
2001-00-15
Pages
135-42
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1222210
Subset
IM
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