Insights into Bone Metabolism from Calcium Kinetic Studies in Children

Author(s):  
Steven A. Abrams
2008 ◽  
Vol 49 (5) ◽  
pp. 700-707 ◽  
Author(s):  
M. L. Frost ◽  
G. M. Blake ◽  
S.-J. Park-Holohan ◽  
G. J.R. Cook ◽  
K. M. Curran ◽  
...  

2012 ◽  
Vol 23 (10) ◽  
pp. 2535-2541 ◽  
Author(s):  
Y. Al-beyatti ◽  
M. Siddique ◽  
M. L. Frost ◽  
I. Fogelman ◽  
G. M. Blake

2004 ◽  
Vol 71 ◽  
pp. 1-14
Author(s):  
David Leys ◽  
Jaswir Basran ◽  
François Talfournier ◽  
Kamaldeep K. Chohan ◽  
Andrew W. Munro ◽  
...  

TMADH (trimethylamine dehydrogenase) is a complex iron-sulphur flavoprotein that forms a soluble electron-transfer complex with ETF (electron-transferring flavoprotein). The mechanism of electron transfer between TMADH and ETF has been studied using stopped-flow kinetic and mutagenesis methods, and more recently by X-ray crystallography. Potentiometric methods have also been used to identify key residues involved in the stabilization of the flavin radical semiquinone species in ETF. These studies have demonstrated a key role for 'conformational sampling' in the electron-transfer complex, facilitated by two-site contact of ETF with TMADH. Exploration of three-dimensional space in the complex allows the FAD of ETF to find conformations compatible with enhanced electronic coupling with the 4Fe-4S centre of TMADH. This mechanism of electron transfer provides for a more robust and accessible design principle for interprotein electron transfer compared with simpler models that invoke the collision of redox partners followed by electron transfer. The structure of the TMADH-ETF complex confirms the role of key residues in electron transfer and molecular assembly, originally suggested from detailed kinetic studies in wild-type and mutant complexes, and from molecular modelling.


2014 ◽  
Vol 122 (03) ◽  
Author(s):  
V Seifert-Klauss ◽  
AC Ritzinger ◽  
B Lesoine ◽  
M Kiechle ◽  
M Schmidmayr ◽  
...  

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