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AKR1D1 knockout mice develop a sex-dependent metabolic phenotype

Odermatt Ales; Dempster Niall; Ohlsson Claes; Pink Ryan C; Gathercole Laura L; Poolman Toryn M; Harris Shelley E; Cummins Carolyn L; Bentley Liz; Nikolaou Nikolaos; Hazlehurst Jonathan M; Saikali Michael F; Moolla Ahmad; Poutanen Matti; Arvaniti Anastasia; Todorčević Marijana; Tomlinson Jeremy W; Cox Roger D; Kratschmar Denise V; Penning Trevor M

AKR1D1 knockout mice develop a sex-dependent metabolic phenotype

Odermatt Ales
Dempster Niall
Ohlsson Claes
Pink Ryan C
Gathercole Laura L
Poolman Toryn M
Harris Shelley E
Cummins Carolyn L
Bentley Liz
Nikolaou Nikolaos
Hazlehurst Jonathan M
Saikali Michael F
Moolla Ahmad
Poutanen Matti
Arvaniti Anastasia
Todorčević Marijana
Tomlinson Jeremy W
Cox Roger D
Kratschmar Denise V
Penning Trevor M
Katso/Avaa
Poutanen EtAl2022AKR1D1KnockoutMiceDevelop.pdf (3.230Mb)
Lataukset: 

NLM (Medline)
doi:10.1530/JOE-21-0280
URI
https://doi.org/10.1530/JOE-21-0280
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022081154823
Tiivistelmä

Steroid 5β-reductase (AKR1D1) plays important role in hepatic bile acid synthesis and glucocorticoid clearance. Bile acids and glucocorticoids are potent metabolic regulators, but whether AKR1D1 controls metabolic phenotype in vivo is unknown. Akr1d1–/– mice were generated on a C57BL/6 background. Liquid chromatography/mass spectrometry, metabolomic and transcriptomic approaches were used to determine effects on glucocorticoid and bile acid homeostasis. Metabolic phenotypes including body weight and composition, lipid homeostasis, glucose tolerance and insulin tolerance were evaluated. Molecular changes were assessed by RNA-Seq and Western blotting. Male Akr1d1–/– mice were challenged with a high fat diet (60% kcal from fat) for 20 weeks. Akr1d1–/– mice had a sex-specific metabolic phenotype. At 30 weeks of age, male, but not female, Akr1d1–/– mice were more insulin tolerant and had reduced lipid accumulation in the liver and adipose tissue yet had hypertriglyceridemia and increased intramuscular triacylglycerol. This phenotype was associated with sexually dimorphic changes in bile acid metabolism and composition but without overt effects on circulating glucocorticoid levels or glucocorticoid-regulated gene expression in the liver. Male Akr1d1–/– mice were not protected against diet-induced obesity and insulin resistance. In conclusion, this study shows that AKR1D1 controls bile acid homeostasis in vivo and that altering its activity can affect insulin tolerance and lipid homeostasis in a sex-dependent manner.

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