4.5 Article

Change in electron and spin density upon electron transfer to haem

Journal

BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS
Volume 1553, Issue 3, Pages 183-187

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/S0005-2728(02)00182-2

Keywords

density functional; haem charge; quantum chemistry

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Haems are the cofactors of cytochromes and important catalysts of biological electron transfer. They are composed of a planar porphyrin structure with iron coordinated at the centre. It is known from spectroscopy that ferric low-spin haem has one impaired electron at the iron, and that this spin is paired as the haem receives an electron upon reduction (I. Bertini, C. Luchinat, NMR of Paramagnetic Molecules in Biological Systems, Benjamin/Cummins Publ. Co., Menlo Park, CA, 1986 pp. 165-170: H.M. Goff, in: A.B.P. Lever, H.B. Gray (Eds.), Iron Porphyrins, Part 1, Addison-Wesley Publ. Co., Reading, MA 1983, pp. 237-281, G. Palmer, in: A.B.P. Lever, H.B. Gray (Eds.), Iron Porphyrins. Part 11, Addison-Wesley Publ. Co., Reading, MA, 1983, pp. 43-88). Here we show by quantum chemical calculations on a haem a model that upon reduction the spin pairing at the iron is accompanied by effective delocalisation of electrons from the iron towards the periphery of the porphyrin ring. including its substituents. The change of charge of the iron atom is only approx. 0.1 electrons, despite the unit difference in formal oxidation state. Extensive charge delocalisation on reduction is important in order for the haem to be accommodated in the low dielectric of a protein, and may have impact on the distance dependence of the rates of electron transfer. The lost individuality of the electron added to the haem on reduction is another example of the importance of quantum mechanical effects in biological systems. (C) 2002 Elsevier Science B.V. All rights reserved.

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