Uncoupling protein 1 (UCP1) is an integral membrane protein found in the mitochondrial inner membrane of brown adipose tissue, and facilitates the process of non-shivering thermogenesis in mammals. Its activation by fatty acids, which overcomes its inhibition by purine nucleotides, leads to an increase in the proton conductance of the inner mitochondrial membrane, short-circuiting the mitochondrion to produce heat rather than ATP. Despite 40 years of intense research, the underlying molecular mechanism of UCP1 is still under debate. The protein belongs to the mitochondrial carrier family of transporters, which have recently been shown to utilise a domain-based alternating-access mechanism, cycling between a cytoplasmic and matrix state to t...
AbstractNoradrenaline signals the initiation of brown fat thermogenesis and the fatty acids liberate...
Evidence for the physiological functions of UCP2 and UCP3 is critically reviewed. They do not mediat...
Instead of a comprehensive review, we describe the basic undisputed facts and a modest contribution ...
Uncoupling protein 1 (UCP1) catalyzes fatty acid-activated, purine nucleotide-sensitive proton leak ...
AbstractMechanistic studies on uncoupling proteins (UCPs) not only are important to identify their c...
Uncoupling proteins (UCPs) are mitochondrial trans-porters present in the inner membrane of mitochon...
Brown adipose tissue of mammals possesses the specialised ability to oxidise nutrients to generate h...
Uncoupling proteins (UCPs) are regulated proton transporters of the mitochondrial inner membrane. UC...
AbstractThere has been a resurgence of interest in mitochondrial uncoupling protein 1 due to a desir...
Running title:UCP1 as a gated pore The uncoupling protein UCP1 is a member of a superfamily of homol...
Proton leak pathways uncouple substrate oxidation from ATP synthesis in mitochondria. These pathways...
AbstractThe mitochondrial uncoupling proteins UCP2 and UCP3 may be important in attenuating mitochon...
AbstractUncoupling proteins (UCPs) are specialized members of the mitochondrial transporter family. ...
AbstractFatty acids activate the uncoupling protein UCP1 by a still controversial mechanism. Two mod...
Membrane uncoupling protein 3 (UCP3), a member of the mitochondrial uncoupling protein family, was d...
AbstractNoradrenaline signals the initiation of brown fat thermogenesis and the fatty acids liberate...
Evidence for the physiological functions of UCP2 and UCP3 is critically reviewed. They do not mediat...
Instead of a comprehensive review, we describe the basic undisputed facts and a modest contribution ...
Uncoupling protein 1 (UCP1) catalyzes fatty acid-activated, purine nucleotide-sensitive proton leak ...
AbstractMechanistic studies on uncoupling proteins (UCPs) not only are important to identify their c...
Uncoupling proteins (UCPs) are mitochondrial trans-porters present in the inner membrane of mitochon...
Brown adipose tissue of mammals possesses the specialised ability to oxidise nutrients to generate h...
Uncoupling proteins (UCPs) are regulated proton transporters of the mitochondrial inner membrane. UC...
AbstractThere has been a resurgence of interest in mitochondrial uncoupling protein 1 due to a desir...
Running title:UCP1 as a gated pore The uncoupling protein UCP1 is a member of a superfamily of homol...
Proton leak pathways uncouple substrate oxidation from ATP synthesis in mitochondria. These pathways...
AbstractThe mitochondrial uncoupling proteins UCP2 and UCP3 may be important in attenuating mitochon...
AbstractUncoupling proteins (UCPs) are specialized members of the mitochondrial transporter family. ...
AbstractFatty acids activate the uncoupling protein UCP1 by a still controversial mechanism. Two mod...
Membrane uncoupling protein 3 (UCP3), a member of the mitochondrial uncoupling protein family, was d...
AbstractNoradrenaline signals the initiation of brown fat thermogenesis and the fatty acids liberate...
Evidence for the physiological functions of UCP2 and UCP3 is critically reviewed. They do not mediat...
Instead of a comprehensive review, we describe the basic undisputed facts and a modest contribution ...