Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin

92 p. Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988. The charge transfer band near 760nm (band III) in myoglobin (Mb) is sensitive to local heme conformation. In photodissociated MbCO at 5K, the band is red shifted with respect to the deoxy wavelength; the protein structure differ...

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Main Author: Ansari, Anjum
Other Authors: Frauenfelder, Hans
Format: Text
Language:unknown
Published: 1988
Subjects:
Online Access:http://hdl.handle.net/2142/77422
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spelling ftunivillidea:oai:www.ideals.illinois.edu:2142/77422 2023-05-15T18:26:42+02:00 Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin Ansari, Anjum Frauenfelder, Hans 1988 http://hdl.handle.net/2142/77422 unknown http://hdl.handle.net/2142/77422 (UMI)AAI8908610 Biophysics General text 1988 ftunivillidea 2016-03-19T23:48:19Z 92 p. Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988. The charge transfer band near 760nm (band III) in myoglobin (Mb) is sensitive to local heme conformation. In photodissociated MbCO at 5K, the band is red shifted with respect to the deoxy wavelength; the protein structure differs from the equilibrium deoxy structure. After photodissociation the area of band III decreases with time as the ligands rebind and the peak frequency shifts toward the deoxy value. The peak shift can be due to two different mechanisms: kinetic hole-burning and conformational relaxation. Kinetic hole-burning results from different parts of an inhomogeneously broadened spectrum rebinding with different rates. Conformational relaxation is a change in the protein structure toward the deoxy structure. An experiment by Friedman and co-workers distinguishes between the two mechanisms. Our data taken with a similar technique show that when the protein is photodissociated with a single short flash, the entire peak shift below 80K is a result of kinetic hole-burning. In sperm whale Mb the band width decreases by about 2% and the peak shift is about 7.5% of the total width after 50% of all ligands have rebound. The data are consistent with a small inhomogeneous broadening. The underlying homogeneous width is approximately 90% of the total width. We have measured the rebinding from 5K to 80K and mapped different parts of the spectrum to the distribution of rebinding enthalpies. Relaxation does occur when MbCO is exposed to a bright photolyzing light for a time greater than about 10 s, and is interpreted as local conformational relaxation of the heme and the protein structure around the heme pocket. Relaxation was measured from 10K to 120K for varying illumination times and intensities. The implications of the structural relaxation at low temperatures for the rebinding kinetics at physiological temperatures are discussed. Text Sperm whale University of Illinois at Urbana-Champaign: IDEALS (Illinois Digital Environment for Access to Learning and Scholarship)
institution Open Polar
collection University of Illinois at Urbana-Champaign: IDEALS (Illinois Digital Environment for Access to Learning and Scholarship)
op_collection_id ftunivillidea
language unknown
topic Biophysics
General
spellingShingle Biophysics
General
Ansari, Anjum
Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
topic_facet Biophysics
General
description 92 p. Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988. The charge transfer band near 760nm (band III) in myoglobin (Mb) is sensitive to local heme conformation. In photodissociated MbCO at 5K, the band is red shifted with respect to the deoxy wavelength; the protein structure differs from the equilibrium deoxy structure. After photodissociation the area of band III decreases with time as the ligands rebind and the peak frequency shifts toward the deoxy value. The peak shift can be due to two different mechanisms: kinetic hole-burning and conformational relaxation. Kinetic hole-burning results from different parts of an inhomogeneously broadened spectrum rebinding with different rates. Conformational relaxation is a change in the protein structure toward the deoxy structure. An experiment by Friedman and co-workers distinguishes between the two mechanisms. Our data taken with a similar technique show that when the protein is photodissociated with a single short flash, the entire peak shift below 80K is a result of kinetic hole-burning. In sperm whale Mb the band width decreases by about 2% and the peak shift is about 7.5% of the total width after 50% of all ligands have rebound. The data are consistent with a small inhomogeneous broadening. The underlying homogeneous width is approximately 90% of the total width. We have measured the rebinding from 5K to 80K and mapped different parts of the spectrum to the distribution of rebinding enthalpies. Relaxation does occur when MbCO is exposed to a bright photolyzing light for a time greater than about 10 s, and is interpreted as local conformational relaxation of the heme and the protein structure around the heme pocket. Relaxation was measured from 10K to 120K for varying illumination times and intensities. The implications of the structural relaxation at low temperatures for the rebinding kinetics at physiological temperatures are discussed.
author2 Frauenfelder, Hans
format Text
author Ansari, Anjum
author_facet Ansari, Anjum
author_sort Ansari, Anjum
title Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
title_short Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
title_full Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
title_fullStr Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
title_full_unstemmed Conformational Relaxation and Kinetic Hole-Burning in Sperm Whale Myoglobin
title_sort conformational relaxation and kinetic hole-burning in sperm whale myoglobin
publishDate 1988
url http://hdl.handle.net/2142/77422
genre Sperm whale
genre_facet Sperm whale
op_relation http://hdl.handle.net/2142/77422
(UMI)AAI8908610
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