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PMID: 1742457 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Picosecond study of the near infrared absorption band of hemoglobin after photolysis of carbonmonoxyhemoglobin.

Biophysical journal ·Vol. 60 ·No. 4 ·1991-10-00 ·Pages 884-9

Dunn RC, Simon JD

Abstract

Picosecond absorption spectroscopy is used to examine the position and band shape of the near infrared absorption band of hemoglobin as a function of time after the photodissociation of CO from carbonmonoxyhemoglobin. For the earliest delay time probed, 35 ps, the peak of the transient spectrum is at 765 nm, red shifted by 6 nm from that characteristic of equilibrium deoxyhemoglobin. No evolution in either the peak position or band shape is observed for time delays up to 60 ns. In addition, the position and shape of the spectrum are independent of photolysis energies ranging from 15 microJ/pulse to 150 microJ/pulse, spanning conditions under which the photon/heme ratio is varied from 0.01 to 2.0. This indicates that the geometry in the heme group is unrelaxed and that equilibration of the surrounding protein structure occurs on a time scale longer than 60 ns.

MeSH Terms
Carboxyhemoglobin/chemistry Hemoglobins/chemistry Humans Kinetics Photolysis Spectrophotometry Time Factors
Chemicals
Hemoglobins Carboxyhemoglobin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Dunn R C
Department of Chemistry, University of California, San Diego, La Jolla 92093-0341.
Simon J D
References (24)
24 references, click to expand
  1. Picosecond resonance Raman spectroscopic evidence for excited-state spin conversion in carbonmonoxy-hemoglobin photolysis.
    Proc Natl Acad Sci U S A. 1981 Mar;78(3):1313-7 PMID: 16592986
  2. Low temperature photodissociation of hemoproteins: carbon monoxide complex of myoglobin and hemoglobin.
    Biochim Biophys Acta. 1974 Nov 5;371(1):126-39 PMID: 4473221
  3. Protein conformational relaxation following photodissociation of CO from carbonmonoxymyoglobin: picosecond circular dichroism and absorption studies.
    Biochemistry. 1991 Apr 16;30(15):3682-92 PMID: 2015224
  4. Linkage of functional and structural heterogeneity in proteins: dynamic hole burning in carboxymyoglobin.
    Science. 1987 Oct 16;238(4825):373-6 PMID: 3659921
  5. Dynamic properties of oxy- and carbonmonoxyhemoglobin probed by optical spectroscopy in the temperature range of 300-20 K.
    Biopolymers. 1987 Oct;26(10):1769-79 PMID: 3663855
  6. Time dependence of near-infrared spectra of photodissociated hemoglobin and myoglobin.
    Biochemistry. 1987 Jun 2;26(11):3092-8 PMID: 3607013
  7. Resonance Raman characterization of the 7-ns photoproduct of (carbonmonoxy)hemoglobin: implications for hemoglobin dynamics.
    Biochemistry. 1986 Oct 7;25(20):5941-8 PMID: 3790496
  8. Optical absorption spectra of deoxy- and oxyhemoglobin in the temperature range 300-20 K. Relation with protein dynamics.
    Biophys Chem. 1986 Aug;24(3):259-75 PMID: 3768470
  9. Molecular dynamics simulation of photodissociation of carbon monoxide from hemoglobin.
    Proc Natl Acad Sci U S A. 1985 Apr;82(7):2034-8 PMID: 3856881
  10. Picosecond resonance Raman evidence for unrelaxed heme in the (carbonmonoxy)myoglobin photoproduct.
    Biochemistry. 1985 Sep 24;24(20):5295-7 PMID: 4074696
  11. Picosecond time-resolved resonance Raman studies of hemoglobin: implications for reactivity.
    Science. 1985 Aug 16;229(4714):661-5 PMID: 4023704
  12. Probing protein structure and dynamics with resonance Raman spectroscopy: cytochrome c peroxidase and hemoglobin.
    Biochemistry. 1990 May 15;29(19):4497-508 PMID: 2164841
  13. Structural and functional significance of inhomogeneous line broadening of band III in hemoglobin and Fe-Mn hybrid hemoglobins.
    Biochemistry. 1990 May 22;29(20):4844-52 PMID: 2364063
  14. Femtosecond photolysis of CO-ligated protoheme and hemoproteins: appearance of deoxy species with a 350-fsec time constant.
    Proc Natl Acad Sci U S A. 1983 Jan;80(1):173-7 PMID: 6571992
  15. Nanosecond absorption spectroscopy of hemoglobin: elementary processes in kinetic cooperativity.
    Proc Natl Acad Sci U S A. 1983 Apr;80(8):2235-9 PMID: 6572974
  16. The iron-proximal histidine linkage and protein control of oxygen binding in hemoglobin. A transient Raman study.
    J Biol Chem. 1983 Sep 10;258(17):10564-72 PMID: 6885793
  17. Geminate recombination of O2 and hemoglobin.
    Proc Natl Acad Sci U S A. 1980 Oct;77(10):5606-10 PMID: 6932659
  18. Transient Raman study of hemoglobin: structural dependence of the iron-histidine linkage.
    Science. 1982 Dec 17;218(4578):1244-6 PMID: 7146910
  19. Linked functions in allosteric proteins. Extension of the concerted (MWC) model for ligand-linked subunit assembly and its application to human hemoglobins.
    J Mol Biol. 1981 Apr 25;147(4):559-82 PMID: 7277501
  20. Spectroscopic studies of oxy- and carbonmonoxyhemoglobin after pulsed optical excitation.
    Proc Natl Acad Sci U S A. 1978 Nov;75(11):5255-9 PMID: 281677
  21. Energy-structure correlation in metalloporphyrins and the control of oxygen binding by hemoglobin.
    Proc Natl Acad Sci U S A. 1977 May;74(5):1789-93 PMID: 266703
  22. Stereochemistry of cooperative effects in haemoglobin.
    Nature. 1970 Nov 21;228(5273):726-39 PMID: 5528785
  23. Stereochemistry of cooperative effects in hemoglobin.
    Cold Spring Harb Symp Quant Biol. 1972;36:295-310 PMID: 4508142
  24. ON THE NATURE OF ALLOSTERIC TRANSITIONS: A PLAUSIBLE MODEL.
    J Mol Biol. 1965 May;12:88-118 PMID: 14343300
Article Info
Journal
Biophysical journal
Abbr.
Biophys J
ISSN
0006-3495
Published
1991-10-00
Pages
884-9
Language
English
Region
United States
NLM ID
0370626
PMCID
PMC1260139
Subset
IM
Grants
NIGMS NIH HHS · GM-41942 · United States
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