Photothermal Studies of Carboxymyoglobin

Small ligand diffusion in heme proteins is not fully understood. To help better understand CO diffusion, three systems were investigated: L29H/F43H site-directed sperm whale myoglobin, horse heart myoglobin in a heavy water buffer, and calix[4]resorcinarene. Binding of copper to calix[4]resorcinaren...

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Main Author: Small, Meagan
Format: Others
Published: Scholar Commons 2010
Subjects:
Online Access:https://scholarcommons.usf.edu/etd/1775
https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2774&context=etd
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spelling ndltd-USF-oai-scholarcommons.usf.edu-etd-27742019-12-11T15:44:59Z Photothermal Studies of Carboxymyoglobin Small, Meagan Small ligand diffusion in heme proteins is not fully understood. To help better understand CO diffusion, three systems were investigated: L29H/F43H site-directed sperm whale myoglobin, horse heart myoglobin in a heavy water buffer, and calix[4]resorcinarene. Binding of copper to calix[4]resorcinarene was photophysically characterized to unravel transient binding of small molecules in heme-copper proteins. Copper binding was found to have a low dissociation constant of approximately 8.6 micrometers.. Reaction profiles using photoacoustic calorimetry were constructed for the myoglobin systems. In deuterium oxide, ligand escape is not rate limited by water entry. Large enthalpy differences arise from the thermodynamic properties of deuterium oxide and the extensive hydrogen bonding network in myoglobin. In the mutant, CO rebinds primarily to the heme and is exothermic with a large volume contraction because of altered electrostatics within the binding pocket and higher water occupancy. 2010-07-15T07:00:00Z text application/pdf https://scholarcommons.usf.edu/etd/1775 https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2774&context=etd default Graduate Theses and Dissertations Scholar Commons myoglobin thermodynamics heme proteins calixarenes photoacoustic calorimetry American Studies Arts and Humanities
collection NDLTD
format Others
sources NDLTD
topic myoglobin
thermodynamics
heme proteins
calixarenes
photoacoustic calorimetry
American Studies
Arts and Humanities
spellingShingle myoglobin
thermodynamics
heme proteins
calixarenes
photoacoustic calorimetry
American Studies
Arts and Humanities
Small, Meagan
Photothermal Studies of Carboxymyoglobin
description Small ligand diffusion in heme proteins is not fully understood. To help better understand CO diffusion, three systems were investigated: L29H/F43H site-directed sperm whale myoglobin, horse heart myoglobin in a heavy water buffer, and calix[4]resorcinarene. Binding of copper to calix[4]resorcinarene was photophysically characterized to unravel transient binding of small molecules in heme-copper proteins. Copper binding was found to have a low dissociation constant of approximately 8.6 micrometers.. Reaction profiles using photoacoustic calorimetry were constructed for the myoglobin systems. In deuterium oxide, ligand escape is not rate limited by water entry. Large enthalpy differences arise from the thermodynamic properties of deuterium oxide and the extensive hydrogen bonding network in myoglobin. In the mutant, CO rebinds primarily to the heme and is exothermic with a large volume contraction because of altered electrostatics within the binding pocket and higher water occupancy.
author Small, Meagan
author_facet Small, Meagan
author_sort Small, Meagan
title Photothermal Studies of Carboxymyoglobin
title_short Photothermal Studies of Carboxymyoglobin
title_full Photothermal Studies of Carboxymyoglobin
title_fullStr Photothermal Studies of Carboxymyoglobin
title_full_unstemmed Photothermal Studies of Carboxymyoglobin
title_sort photothermal studies of carboxymyoglobin
publisher Scholar Commons
publishDate 2010
url https://scholarcommons.usf.edu/etd/1775
https://scholarcommons.usf.edu/cgi/viewcontent.cgi?article=2774&context=etd
work_keys_str_mv AT smallmeagan photothermalstudiesofcarboxymyoglobin
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