AbstractTranshydrogenase is a proton pump. It has three components: dI and dIII protrude from the membrane and contain the binding sites for NAD(H) and NADP(H), respectively, and dII spans the membrane. We have expressed dIII from Homo sapiens transhydrogenase (hsdIII) in Escherichia coli. The purified protein was associated with stoichiometric amounts of NADP(H) bound to the catalytic site. The NADP+ and NADPH were released only slowly from the protein, supporting the suggestion that nucleotide-binding by dIII is regulated by the membrane-spanning dII. HsdIII formed a catalytically active complex with recombinant dI from Rhodospirillum rubrum (rrdI), even in the absence of dII. The rates of forward and reverse transhydrogenation catalysed ...
AbstractTranshydrogenase, in animal mitochondria and bacteria, couples hydride transfer between NADH...
AbstractProton-pumping nicotinamide nucleotide transhydrogenases are composed of three main domains,...
AbstractTranshydrogenase couples the stereospecific and reversible transfer of hydride equivalents f...
AbstractTranshydrogenase is a proton pump. It has three components: dI and dIII protrude from the me...
AbstractA unique Trp residue in the recombinant dIII component of transhydrogenase from human heart ...
AbstractBackground: Membrane-bound ion translocators have important functions in biology, but their ...
AbstractIn its forward direction, transhydrogenase couples the reduction of NADP+ by NADH to the out...
AbstractBackground: Transhydrogenase, located in the inner membranes of animal mitochondria and the ...
Transhydrogenase is an enzyme located in the cytoplasmic membrane of bacteria or the inner membrane ...
AbstractTranshydrogenase couples the reduction of NADP+ by NADH to inward proton translocation acros...
AbstractAll transhydrogenases appear to have three components: dI, which binds NAD(H), and dIII, whi...
AbstractThe hydrophilic, extramembranous domains I (α1 subunit) and III of the Rhodospirillum rubrum...
AbstractWe describe the use of the recombinant, nucleotide-binding domains (domains I and III) of tr...
AbstractTranshydrogenase (E.C. 1.6.1.1) couples the redox reaction between NAD(H) and NADP(H) to the...
AbstractTranshydrogenase couples the translocation of protons across a membrane to the transfer of r...
AbstractTranshydrogenase, in animal mitochondria and bacteria, couples hydride transfer between NADH...
AbstractProton-pumping nicotinamide nucleotide transhydrogenases are composed of three main domains,...
AbstractTranshydrogenase couples the stereospecific and reversible transfer of hydride equivalents f...
AbstractTranshydrogenase is a proton pump. It has three components: dI and dIII protrude from the me...
AbstractA unique Trp residue in the recombinant dIII component of transhydrogenase from human heart ...
AbstractBackground: Membrane-bound ion translocators have important functions in biology, but their ...
AbstractIn its forward direction, transhydrogenase couples the reduction of NADP+ by NADH to the out...
AbstractBackground: Transhydrogenase, located in the inner membranes of animal mitochondria and the ...
Transhydrogenase is an enzyme located in the cytoplasmic membrane of bacteria or the inner membrane ...
AbstractTranshydrogenase couples the reduction of NADP+ by NADH to inward proton translocation acros...
AbstractAll transhydrogenases appear to have three components: dI, which binds NAD(H), and dIII, whi...
AbstractThe hydrophilic, extramembranous domains I (α1 subunit) and III of the Rhodospirillum rubrum...
AbstractWe describe the use of the recombinant, nucleotide-binding domains (domains I and III) of tr...
AbstractTranshydrogenase (E.C. 1.6.1.1) couples the redox reaction between NAD(H) and NADP(H) to the...
AbstractTranshydrogenase couples the translocation of protons across a membrane to the transfer of r...
AbstractTranshydrogenase, in animal mitochondria and bacteria, couples hydride transfer between NADH...
AbstractProton-pumping nicotinamide nucleotide transhydrogenases are composed of three main domains,...
AbstractTranshydrogenase couples the stereospecific and reversible transfer of hydride equivalents f...