Literature DB >> 16085709

Ligand migration pathway and protein dynamics in myoglobin: a time-resolved crystallographic study on L29W MbCO.

Marius Schmidt1, Karin Nienhaus, Reinhard Pahl, Angela Krasselt, Spencer Anderson, Fritz Parak, G Ulrich Nienhaus, Vukica Srajer.   

Abstract

By using time-resolved x-ray crystallography at room temperature, structural relaxations and ligand migration were examined in myoglobin (Mb) mutant L29W from nanoseconds to seconds after photodissociation of carbon monoxide (CO) from the heme iron by nanosecond laser pulses. The data were analyzed in terms of transient kinetics by fitting trial functions to integrated difference electron density values obtained from select structural moieties, thus allowing a quantitative description of the processes involved. The observed relaxations are linked to other investigations on protein dynamics. At the earliest times, the heme has already completely relaxed into its domed deoxy structure, and there is no photo-dissociated CO visible at the primary docking site. Initial relaxations of larger globin moieties are completed within several hundred nanoseconds. They influence the concomitant migration of photo-dissociated CO to the Xe1 site, where it appears at approximately 300 ns and leaves again at approximately 1.5 ms. The extremely long residence time in Xe1 as compared with wild-type MbCO implies that, in the latter protein, the CO exits the protein from Xe1 predominantly via the distal pocket. A well-defined deligated state is populated between approximately 2 micros and approximately 1 ms; its structure is very similar to the equilibrium deoxy structure. Between 1.5 and 20 ms, no CO is visible in the protein interior; it is either distributed among many sites within the protein or has escaped to the solvent. Finally, recombination at the heme iron occurs after >20 ms.

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Year:  2005        PMID: 16085709      PMCID: PMC1187994          DOI: 10.1073/pnas.0504932102

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  49 in total

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Authors:  P W Fenimore; H Frauenfelder; B H McMahon; F G Parak
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5.  Ligand binding to heme proteins: connection between dynamics and function.

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Journal:  Biochemistry       Date:  1991-04-23       Impact factor: 3.162

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7.  Cavities in proteins: structure of a metmyoglobin-xenon complex solved to 1.9 A.

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8.  Protein dynamics. Mössbauer spectroscopy on deoxymyoglobin crystals.

Authors:  F Parak; E W Knapp; D Kucheida
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9.  Time-resolved resonance Raman study on ultrafast structural relaxation and vibrational cooling of photodissociated carbonmonoxy myoglobin.

Authors:  Teizo Kitagawa; Nami Haruta; Yasuhisa Mizutani
Journal:  Biopolymers       Date:  2002       Impact factor: 2.505

10.  Mapping the pathways for O2 entry into and exit from myoglobin.

Authors:  E E Scott; Q H Gibson; J S Olson
Journal:  J Biol Chem       Date:  2000-10-03       Impact factor: 5.157

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  62 in total

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2.  Allosteric action in real time: time-resolved crystallographic studies of a cooperative dimeric hemoglobin.

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Journal:  Proc Natl Acad Sci U S A       Date:  2006-05-09       Impact factor: 11.205

3.  Full kinetics of CO entry, internal diffusion, and exit in myoglobin from transition-path theory simulations.

Authors:  Tang-Qing Yu; Mauro Lapelosa; Eric Vanden-Eijnden; Cameron F Abrams
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4.  Transient ligand docking sites in Cerebratulus lacteus mini-hemoglobin.

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6.  O2 migration pathways are not conserved across proteins of a similar fold.

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Journal:  Biophys J       Date:  2007-08-10       Impact factor: 4.033

7.  Ligand migration and binding in the dimeric hemoglobin of Scapharca inaequivalvis.

Authors:  Karin Nienhaus; James E Knapp; Pasquale Palladino; William E Royer; G Ulrich Nienhaus
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8.  Dynamic fluctuation of proteins watched in real time.

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9.  An engineered heme-copper center in myoglobin: CO migration and binding.

Authors:  Karin Nienhaus; John S Olson; G Ulrich Nienhaus
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Review 10.  Myoglobin strikes back.

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