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- 2014
-
Mark
Magnesium chelatase: The molecular motor of chlorophyll biosynthesis.
(
- Chapter in Book/Report/Conference proceeding › Book chapter
- 2011
-
Mark
The activity of barley NADPH-dependent thioredoxin reductase C is independent of the oligomeric state of the protein: tetrameric structure determined by cryo-electron microscopy
(
- Contribution to journal › Article
- 2010
-
Mark
ATP-induced conformational dynamics in the AAA+ motor unit of magnesium chelatase.
(
- Contribution to journal › Article
- 2009
-
Mark
The AAA(+) motor complex of subunits CobS and CobT of cobaltochelatase visualized by single particle electron microscopy.
(
- Contribution to journal › Article
- 2008
-
Mark
NADPH-dependent thioredoxin reductase and 2-Cys peroxiredoxins are needed for the protection of Mg–protoporphyrin monomethyl ester cyclase
(
- Contribution to journal › Article
-
Mark
Substrate-binding model of the chlorophyll biosynthetic magnesium chelatase BchH subunit.
(
- Contribution to journal › Article
-
Mark
PCR-mediated deletion of plasmid DNA
(
- Contribution to journal › Letter
-
Mark
Porphyrin Binding and Distortion and Substrate Specificity in the Ferrochelatase Reaction: The Role of Active Site Residues.
(
- Contribution to journal › Article
-
Mark
A new cryo-EM single-particle Ab initio reconstruction method visualizes secondary structure elements in an ATP-Fueled AAA+ motor
(
- Contribution to journal › Article
- 2007
-
Mark
Amino acid residues His183 and Glu264 in Bacillus subtilis ferrochelatase direct and facilitate the insertion of metal ion into protoporphyrin IX
(
- Contribution to journal › Article