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Conformation-driven and semiquinone-gated proton-pump mechanism in the NADH-ubiquinone oxidoreductase (complex I)
Authors:Ohnishi Tomoko  Salerno John C
Institution:Johnson Research Foundation, Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104, USA. ohnishi@mail.med.upenn.edu
Abstract:A novel mechanism for proton/electron transfer is proposed for NADH-quinone oxidoreductase (complex I) based on the following findings: (1) EPR signals of the protein-bound fast-relaxing semiquinone anion radicals (abbreviated as Q(Nf)-) are observable only in the presence of proton-transmembrane electrochemical potential; (2) Iron-sulfur cluster N2 and Q(Nf)- are directly spin-coupled; and (3) The projection of the interspin vector extends only 5A along the membrane normal Yano, T., Dunham, W.R. and Ohnishi, T. (2005) Biochemistry, 44, 1744-1754]. We propose that the proton pump is operated by redox-driven conformational changes of the quinone binding protein. In the input state, semiquinone is reduced to quinol, acquiring two protons from the N (matrix) side of the mitochondrial inner membrane and an electron from the low potential (NADH) side of the respiratory chain. A conformational change brings the protons into position for release at the P (inter-membrane space) side of the membrane via a proton-well. Concomitantly, an electron is donated to the quinone pool at the high potential side of the coupling site. The system then returns to the original state to repeat the cycle. This hypothesis provides a useful frame work for further investigation of the mechanism of proton translocation in complex I.
Keywords:Complex I  NADH-ubiquinone oxidoreductase  Δψ  membrane potential  _method=retrieve&  _eid=1-s2  0-S0014579305008641&  _mathId=si8  gif&  _pii=S0014579305008641&  _issn=00145793&  _acct=C000054348&  _version=1&  _userid=3837164&  md5=e7fe653c35ef804fe41340c3f9866e49')" style="cursor:pointer  View the MathML source" alt="Click to view the MathML source" title="Click to view the MathML source">View the MathML sourceels-cdn  com/content/image/1-s2  0-S0014579305008641-si8  " target="_blank">gif">  proton-electrochemical gradient  Em  redox-midpoint potential  EPR  electron paramagnetic resonance  N2  iron-sulfur cluster N2  N-side  matrix side of the mitochondrial inner membrane  P-side  inner space side of the mitochondrial inner membrane  Q  ubiquinone  QH2  ubiquinol  _method=retrieve&  _eid=1-s2  0-S0014579305008641&  _mathId=si9  gif&  _pii=S0014579305008641&  _issn=00145793&  _acct=C000054348&  _version=1&  _userid=3837164&  md5=f711f4a66b3c9445f9cec7ea3c5782e5')" style="cursor:pointer  View the MathML source" alt="Click to view the MathML source" title="Click to view the MathML source">View the MathML sourceels-cdn  com/content/image/1-s2  0-S0014579305008641-si9  " target="_blank">gif">  protein-bound fast-relaxing ubisemiquinone (anion form)  _method=retrieve&  _eid=1-s2  0-S0014579305008641&  _mathId=si10  gif&  _pii=S0014579305008641&  _issn=00145793&  _acct=C000054348&  _version=1&  _userid=3837164&  md5=ea49d2e560620e2cdfb034a6481d13b3')" style="cursor:pointer  View the MathML source" alt="Click to view the MathML source" title="Click to view the MathML source">View the MathML sourceels-cdn  com/content/image/1-s2  0-S0014579305008641-si10  " target="_blank">gif">  protein-bound slow-relaxing ubisemiquinone anion  Q-pool  ubiquinone pool in the mitochondrial inner membrane  SMP  submitochondrial particles  SQ  semiquinone  SQNf  protein-bound fast-relaxing semiquinone (including both anion and neutral forms)
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