Spectroscopic and Electronic Structure Studies of the Trinuclear Cu Cluster Active Site of the Multicopper Oxidase Laccase: Nature of Its Coordination Unsaturation

Спектроскопические и электронно-структурные исследования триъядерного медного кластера активного центра мультиферментной оксидазы лакказы: природа его координационной недостаточности
Edward I. Solomon, Amy E. Palmer, R. David Britt, Liliana Quintanar, K. Kristoffer Andersson, Jungjoo Yoon, Constantino P. Aznar
2005-09-17

DFT and spectroscopic studiesT2 three-coordinate coppercoordination unsaturationmulticopper oxidase laccasetrinuclear Cu cluster
Laccase is a multicopper oxidase that contains four Cu ions, one type 1 (T1), one type 2 (T2), and a coupled binuclear type 3 Cu pair (T3). The T2 and T3 centers form a trinuclear Cu cluster that is the active site for O2 reduction to H2O. A combination of spectroscopic and DFT studies on a derivative where the T1 Cu has been replaced by a spectroscopically innocent Hg2+ ion has led to a detailed geometric and electronic structure description of the resting trinuclear Cu cluster, complementing crystallographic results. The nature of the T2 Cu ligation has been elucidated; this site is three-coordinate with two histidines and a hydroxide over its functional pH range (stabilized by a large inductive effect, cluster charge, and a hydrogen-bonding network). Both the T2 and T3 Cu centers have open coordination positions oriented toward the center of the cluster. DFT calculations show that the negative protein pocket (four conserved Asp/Glu residues within 12 A) and the dielectric of the protein play important roles in the electrostatic stability and integrity of the highly charged, coordinatively unsaturated trinuclear cupric cluster. These tune the ligand binding properties of the cluster, leading to its high affinity for fluoride and its coordination unsaturation in aqueous media, which play a key role in its O2 reactivity.
1
Both T2 and T3 Cu centers possess open coordination positions oriented toward the cluster center, producing coordinative unsaturation in aqueous media.
2
DFT shows the negative protein pocket (four conserved Asp/Glu within 12 Å) and protein dielectric critically stabilize the highly charged, coordinatively unsaturated trinuclear cupric cluster electrostatically.
3
The T2 Cu site is three-coordinate across its functional pH range, ligated by two histidines and a hydroxide, stabilized by inductive effects, cluster charge, and hydrogen-bonding.
4
The electrostatic tuning by the protein pocket and dielectric leads to high fluoride affinity and coordination unsaturation, which are key to the cluster's O2 reactivity.
5
The trinuclear Cu cluster (T2/T3) in laccase is the active site for O2 reduction to H2O and its geometric/electronic structure was detailed by spectroscopy and DFT with T1 replaced by Hg2+.

Trinuclear copper (Cu) cluster active site (T2/T3 centers) of multicopper oxidase laccase in the Hg2+-substituted derivative

Geometric and electronic structure, coordination unsaturation, ligand binding properties and electrostatic stabilization (including three-coordinate T2 ligation, open coordination positions, role of nearby Asp/Glu residues and protein dielectric) of the resting trinuclear Cu cluster relevant to O2 reduction

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2005-09-17
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Edward I. Solomon
Amy E. Palmer
R. David Britt
Liliana Quintanar
K. Kristoffer Andersson
Jungjoo Yoon
Constantino P. Aznar
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