Carbon monoxide poisoning is prevented by the energy costs of conformational changes in gas-binding haemproteins
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Nigel S Scrutton | S. Antonyuk | S. Hasnain | N. Scrutton | Raman Sharma | N. Berry | C. Petersen | Svetlana V Antonyuk | Robert R Eady | S Samar Hasnain | Jamie L. Arnst | Neil G Berry | D. Heyes | C. Andrew | Raman Sharma | R. Eady | Neil Rustage | Christine A Petersen | Jamie L Arnst | Derren J Heyes | Colin R Andrew | N. Rustage
[1] K. R. Marshall,et al. Biophysical characterization of the sterol demethylase P450 from Mycobacterium tuberculosis, its cognate ferredoxin, and their interactions. , 2006, Biochemistry.
[2] James M. Stafford,et al. Accessibility of the distal heme face, rather than Fe-His bond strength, determines the heme-nitrosyl coordination number of cytochromes c': evidence from spectroscopic studies. , 2005, Biochemistry.
[3] C. Petersen,et al. Activation parameters for heme-NO binding in alcaligenes xylosoxidans cytochrome c': the putative dinitrosyl intermediate forms via a dissociative mechanism. , 2009, Journal of the American Chemical Society.
[4] Is the CO adduct of myoglobin bent, and does it matter? , 2001, Accounts of chemical research.
[5] C. Stevenson,et al. Unprecedented proximal binding of nitric oxide to heme: implications for guanylate cyclase , 2000, The EMBO journal.
[6] T. Yamato,et al. Visualizing breathing motion of internal cavities in concert with ligand migration in myoglobin , 2009, Proceedings of the National Academy of Sciences.
[7] J. Olson,et al. Measurement of rate constants for reactions of O2, CO, and NO with hemoglobin. , 2003, Methods in molecular medicine.
[8] S. Hasnain,et al. Modulation of NO binding to cytochrome c′ by distal and proximal haem pocket residues , 2008, JBIC Journal of Biological Inorganic Chemistry.
[9] J. S. Olson,et al. Myoglobin discriminates between O2, NO, and CO by electrostatic interactions with the bound ligand , 1997, JBIC Journal of Biological Inorganic Chemistry.
[10] Elizabeth M. Boon,et al. Probing the function of heme distortion in the H-NOX family. , 2008, ACS chemical biology.
[11] A. Seidell. Solubilities of inorganic and metal organic compounds : a compilation of quantitative solubility data from the periodical literature , 2015 .
[12] Jeffry D Madura,et al. Experimentally restrained molecular dynamics simulations for characterizing the open states of cytochrome P450cam. , 2011, Biochemistry.
[13] Sam-Yong Park,et al. X-ray structure of nitric oxide reductase (cytochrome P450nor) at atomic resolution. , 2002, Acta crystallographica. Section D, Biological crystallography.
[14] Lingyun Wu,et al. Carbon Monoxide: Endogenous Production, Physiological Functions, and Pharmacological Applications , 2005, Pharmacological Reviews.
[15] K. Schulten,et al. Ligand migration and cavities within Scapharca Dimeric HbI: studies by time-resolved crystallo-graphy, Xe binding, and computational analysis. , 2009, Structure.
[16] F. Moreno de Vega,et al. [Cytochrome C]. , 1955, Revista clinica espanola.
[17] D. Lawson,et al. Resonance Raman studies of cytochrome c' support the binding of NO and CO to opposite sides of the heme: implications for ligand discrimination in heme-based sensors. , 2001, Biochemistry.
[18] G. Nienhaus,et al. Ligand migration and binding in the dimeric hemoglobin of Scapharca inaequivalvis. , 2007, Biochemistry.
[19] W. Montfort,et al. Ultrahigh resolution structures of nitrophorin 4: heme distortion in ferrous CO and NO complexes. , 2005, Biochemistry.
[20] G. Kachalova,et al. A steric mechanism for inhibition of CO binding to heme proteins. , 1999, Science.