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UCP1 inhibition in Cidea-overexpressing mice is physiologically counteracted by brown adipose tissue hyperrecruitment

Fischer, Alexander W. (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut,University Medical Center Hamburg-Eppendorf, Germany
Shabalina, Irina G. (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut
Mattsson, Charlotte L. (författare)
Karolinska Institutet
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Abreu-Vieira, Gustavo (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut
Cannon, Barbara (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut
Nedergaard, Jan (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut
Petrovic, Natasa (författare)
Stockholms universitet,Institutionen för molekylär biovetenskap, Wenner-Grens institut
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 (creator_code:org_t)
American Physiological Society, 2017
2017
Engelska.
Ingår i: American Journal of Physiology. Endocrinology and Metabolism. - : American Physiological Society. - 0193-1849 .- 1522-1555. ; 312:1, s. e72-E87
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • Cidea is a gene highly expressed in thermogenesis- competent (UCP1-containing) adipose cells, both brown and brite/beige. Here, we initially demonstrate a remarkable adipose-depot specific regulation of Cidea expression. In classical brown fat, Cidea mRNA is expressed continuously and invariably, irrespective of tissue recruitment. However, Cidea protein levels are regulated posttranscriptionally, being conspicuously induced in the thermogenically recruited state. In contrast, in brite fat, Cidea protein levels are regulated at the transcriptional level, and Cidea mRNA and protein levels are proportional to tissue briteness. Although routinely followed as a thermogenic molecular marker, Cidea function is not clarified. Here, we employed a gain-of-function approach to examine a possible role of Cidea in the regulation of thermogenesis. We utilized transgenic aP2-hCidea mice that overexpress human Cidea in all adipose tissues. We demonstrate that UCP1 activity is markedly suppressed in brown-fat mitochondria isolated from aP2-hCidea mice. However, mitochondrial UCP1 protein levels were identical in wildtype and transgenic mice. This implies a regulatory effect of Cidea on UCP1 activity, but as we demonstrate that Cidea itself is not localized to mitochondria, we propose an indirect inhibitory effect. The Cidea-induced inhibition of UCP1 activity (observed in isolated mitochondria) is physiologically relevant since the mice, through an appropriate homeostatic compensatory mechanism, increased the total amount of UCP1 in the tissue to exactly match the diminished thermogenic capacity of the UCP1 protein and retain unaltered nonshivering thermogenic capacity. Thus, we verified Cidea as being a marker of thermogenesis-competent adipose tissues, but we conclude that Cidea, unexpectedly, functions molecularly as an indirect inhibitor of thermogenesis.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Cell- och molekylärbiologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Cell and Molecular Biology (hsv//eng)
NATURVETENSKAP  -- Biologi -- Biokemi och molekylärbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Biochemistry and Molecular Biology (hsv//eng)

Nyckelord

cell death-inducing DNA fragmentation factor alpha-like effector A
uncoupling protein 1
nonshivering thermogenesis
brown adipose tissue
brite adipose tissue
beige adipose tissue

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