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Artículo

Coordination of peroxide to the CuM center of peptidylglycine α-hydroxylating monooxygenase (PHM): Structural and computational study

Rudzka, Katarzyna; Moreno, Diego MartinIcon ; Eipper, Betty; Mains, Richard; Estrin, Dario ArielIcon ; Amzel, L. Mario
Fecha de publicación: 02/2013
Editorial: Springer
Revista: Journal of Biological Inorganic Chemistry
ISSN: 0949-8257
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Físico-Química, Ciencia de los Polímeros, Electroquímica

Resumen

Many bioactive peptides, such as hormones and neuropeptides, require amidation at the C terminus for their full biological activity. Peptidylglycine a-hydroxylating monooxygenase (PHM) performs the first step of the amidation reaction-the hydroxylation of peptidylglycine substrates at the Ca position of the terminal glycine. The hydroxylation reaction is copper- and O2-dependent and requires 2 equiv of exogenous reductant. The proposed mechanism suggests thatO2 is reduced by two electrons, each provided by one of two nonequivalent copper sites in PHM (CuH and CuM). The characteristics of the reduced oxygen species in the PHM reaction and the identity of the reactive intermediate remain uncertain. To further investigate the nature of the key intermediates in the PHM cycle, we determined the structure of the oxidized form of PHM complexed with hydrogen peroxide. In this 1.98-A° -resolution structure (hydro)peroxide binds solely to CuM in a slightly asymmetric side-on mode. The O-O interatomic distance of the copperbound ligand is 1.5 A ° , characteristic of peroxide/hydroperoxide species, and the Cu-O distances are 2.0 and 2.1 A ° . Density functional theory calculations using the first coordination sphere of the CuM active site as a model system show that the computed energies of the side-on L3CuM(II)-O2 2- species and its isomeric, end-on structure L3CuM(I)-O2 - are similar, suggesting that both these intermediates are significantly populated within the protein environment. This observation has important mechanistic implications. The geometry of the observed side-on coordinated peroxide ligand in L3CuM(II)O2 2- is in good agreement with the results of a hybrid quantum mechanical-molecular mechanical optimization of this species.
Palabras clave: AMIDATION OF PEPTIDES , COPPER-CONTAINING PROTEINS , PEPTIDYLGLYCINE Α-HYDROXYLATING MONOOXYGENASE , PEROXIDE
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/6330
DOI: http://dx.doi.org/10.1007/s00775-012-0967-z
URL: http://link.springer.com/article/10.1007%2Fs00775-012-0967-z
URL: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4041156/
Colecciones
Articulos(INQUIMAE)
Articulos de INST.D/QUIM FIS D/L MATERIALES MEDIOAMB Y ENERGIA
Articulos(IQUIR)
Articulos de INST.DE QUIMICA ROSARIO
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Citación
Rudzka, Katarzyna; Moreno, Diego Martin; Eipper, Betty; Mains, Richard; Estrin, Dario Ariel; et al.; Coordination of peroxide to the CuM center of peptidylglycine α-hydroxylating monooxygenase (PHM): Structural and computational study; Springer; Journal of Biological Inorganic Chemistry; 18; 2; 2-2013; 223-232
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