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Human and Mouse Brown Adipose Tissue Mitochondria Have Comparable UCP1 Function.

Authors :
Porter, Craig
Porter, Craig
Herndon, David N
Chondronikola, Maria
Chao, Tony
Annamalai, Palam
Bhattarai, Nisha
Saraf, Manish K
Capek, Karel D
Reidy, Paul T
Daquinag, Alexes C
Kolonin, Mikhail G
Rasmussen, Blake B
Borsheim, Elisabet
Toliver-Kinsky, Tracy
Sidossis, Labros S
Porter, Craig
Porter, Craig
Herndon, David N
Chondronikola, Maria
Chao, Tony
Annamalai, Palam
Bhattarai, Nisha
Saraf, Manish K
Capek, Karel D
Reidy, Paul T
Daquinag, Alexes C
Kolonin, Mikhail G
Rasmussen, Blake B
Borsheim, Elisabet
Toliver-Kinsky, Tracy
Sidossis, Labros S
Source :
Cell metabolism; vol 24, iss 2, 246-255; 1550-4131
Publication Year :
2016

Abstract

Brown adipose tissue (BAT) plays an important role in mammalian thermoregulation. The component of BAT mitochondria that permits this function is the inner membrane carrier protein uncoupling protein 1 (UCP1). To the best of our knowledge, no studies have directly quantified UCP1 function in human BAT. Further, whether human and rodent BAT have comparable thermogenic function remains unknown. We employed high-resolution respirometry to determine the respiratory capacity, coupling control, and, most importantly, UCP1 function of human supraclavicular BAT and rodent interscapular BAT. Human BAT was sensitive to the purine nucleotide GDP, providing the first direct evidence that human BAT mitochondria have thermogenically functional UCP1. Further, our data demonstrate that human and rodent BAT have similar UCP1 function per mitochondrion. These data indicate that human and rodent BAT are qualitatively similar in terms of UCP1 function.

Details

Database :
OAIster
Journal :
Cell metabolism; vol 24, iss 2, 246-255; 1550-4131
Notes :
application/pdf, Cell metabolism vol 24, iss 2, 246-255 1550-4131
Publication Type :
Electronic Resource
Accession number :
edsoai.on1391604180
Document Type :
Electronic Resource