Femtosecond X-ray emission study of the spin cross-over dynamics in haem proteins
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Published:2020-08-18
Issue:1
Volume:11
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Kinschel DominikORCID, Bacellar CamilaORCID, Cannelli OlivieroORCID, Sorokin Boris, Katayama TetsuoORCID, Mancini Giulia F.ORCID, Rouxel Jérémy R., Obara Yuki, Nishitani Junichi, Ito Hironori, Ito Terumasa, Kurahashi Naoya, Higashimura Chika, Kudo Shotaro, Keane TheoORCID, Lima Frederico A., Gawelda WojciechORCID, Zalden Peter, Schulz Sebastian, Budarz James M.ORCID, Khakhulin Dmitry, Galler Andreas, Bressler Christian, Milne Christopher J.ORCID, Penfold Thomas, Yabashi MakinaORCID, Suzuki ToshinoriORCID, Misawa Kazuhiko, Chergui MajedORCID
Abstract
AbstractIn haemoglobin the change from the low-spin (LS) hexacoordinated haem to the high spin (HS, S = 2) pentacoordinated domed deoxy-myoglobin (deoxyMb) form upon ligand detachment from the haem and the reverse process upon ligand binding are what ultimately drives the respiratory function. Here we probe them in the case of Myoglobin-NO (MbNO) using element- and spin-sensitive femtosecond Fe Kα and Kβ X-ray emission spectroscopy at an X-ray free-electron laser (FEL). We find that the change from the LS (S = 1/2) MbNO to the HS haem occurs in ~800 fs, and that it proceeds via an intermediate (S = 1) spin state. We also show that upon NO recombination, the return to the planar MbNO ground state is an electronic relaxation from HS to LS taking place in ~30 ps. Thus, the entire ligand dissociation-recombination cycle in MbNO is a spin cross-over followed by a reverse spin cross-over process.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
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