|
Akemi Matsuno-Yagi and Takao Yagi
|
Introduction: Complex I - an L-shaped black box |
155-157 |
|
Alain Dupuis, Isabelle Prieur,
and Joël Lunardi |
Toward a characterisation
of the connecting module of Complex I |
159-168 |
|
Thorsten Friedrich |
Complex I: A chimera of a
redox and conformation driven proton pump? |
169-177 |
|
Julia Steuber |
The Na+-translocating
NADH: quinone oxidoreductase (NDHI) from Klebsiella pneumoniae
and Escherichia coli: implications for the mechanism of redox-driven
cation translocation by complex I |
179-186 |
|
Stefan Kerscher, Noushin Kashani-Poor,
Klaus Zwicker, Volker Zickermann and Ulrich Brandt |
Exploring the Catalytic Core
of Complex I by Yarrowia lipolytica Yeast Genetics |
187-196 |
|
Arnaldo Videira and Margarida
Duarte |
On Complex I and other NADH:ubiquinone
Reductases of Neurospora crassa Mitochondria |
197-203 |
|
Ulrich Schulte |
Biogenesis of respiratory
complex I |
205-212 |
|
Takahiro Yano and Tomoko Ohnishi |
The origin of cluster N2 of
the energy-transducing NADH-quinone oxidoreductase: Comparisons of phylogenetically
related enzymes |
213-222 |
|
Hideto Miyoshi |
Probing the ubiquinone Reduction
Site in Bovine Mitochondrial Complex I using a Series of Synthetic Ubiquinones
and Inhibitors |
223-231 |
|
Takao Yagi, Byoung Boo Seo,
Salvatore Di Bernardo, Eiko Nakamaru-Ogiso, Mou-Chieh Kao and Akemi Matsuno-Yagi |
Research on NADH dehydrogenases:
From basic science to biomedicine |
233-242 |
|
Immo E. Scheffler and Nagendra
Yadava |
Molecular Genetics of the
Mammalian NADH-Ubiquinone Oxidoreductase |
243-250 |
|
Anne Chomyn |
The identification of the
mitochondrial DNA-encoded subunits of mammalian complex I and their role
in the complex |
251-257 |
|
Jan Smeitink, Rob Sengers,
Frans Trijbels and Lambert van den Heuvel |
Human NADH: Ubiquinone Oxidoreductase |
259-266 |