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1.
Biochemistry ; 31(3): 867-78, 1992 Jan 28.
Artículo en Inglés | MEDLINE | ID: mdl-1310047

RESUMEN

The ferrous form of native cytochrome c peroxidase (CCP) is known to undergo a reversible transition when titrated over the pH range of 7.00-9.70. This transition produces a conversion from a pentacoordinate high-spin to a hexacoordinate low-spin heme active site and is clearly apparent in the heme optical absorption spectra. Here, we report the characterization of this transition and its effect upon the local heme environment using various optical spectroscopies. The formation of hexacoordinate low-spin heme is interpreted to involve the binding of His-52 at the distal site after the perturbation of the extensive H-bonded network within and around the heme pocket of CCP(II) at alkaline pH. Interestingly, CD investigations of CCP(II) in the far-UV and Soret regions indicate the dissappearance of a single high-spin species and the existence of at least two low-spin species of CCP(II) as the pH is raised above 7.90. Furthermore, transient resonance Raman experiments demonstrate that the hexacoordinate low-spin species can be photolyzed within 10-ns laser pulses, producing a species similar to the low-pH (high-spin) form of CCP(II) at alkaline pH. However, the extent of photolysis is quite pH dependent, with a maximum photodissociation yield at pH = 8.50.


Asunto(s)
Citocromo-c Peroxidasa/metabolismo , Dicroismo Circular , Citocromo-c Peroxidasa/química , Citocromo-c Peroxidasa/efectos de la radiación , Concentración de Iones de Hidrógeno , Imidazoles/metabolismo , Fotólisis , Conformación Proteica , Saccharomyces cerevisiae/enzimología , Espectrofotometría , Espectrometría Raman
2.
FEBS Lett ; 214(1): 92-6, 1987 Apr 06.
Artículo en Inglés | MEDLINE | ID: mdl-3552728

RESUMEN

The first near-infrared (Qy)-excitation resonance Raman spectrum of photosynthetic reaction centers (Rb. sphaeroides wild type) is reported. This spectrum exhibits features which are not observed with excitation into either the Qx or Soret absorption bands. The spectral data indicate that the partial double-bond character is induced in the C9C10 bond of the isocyclic ring of one of the pigments via interactions with the protein. It is proposed that this modified pigment is the L-subunit bacteriopheophytin and that the preference for electron transfer to this molecule could be in part due to the change in electronic structure induced by the site-specific pigment-protein interaction.


Asunto(s)
Proteínas Bacterianas , Rhodobacter sphaeroides/metabolismo , Proteínas Bacterianas/metabolismo , Transporte de Electrón , Proteínas del Complejo del Centro de Reacción Fotosintética , Espectrometría Raman
3.
J Biol Chem ; 261(15): 6734-41, 1986 May 25.
Artículo en Inglés | MEDLINE | ID: mdl-3009474

RESUMEN

Resonance Raman (RR) spectra obtained at three excitation wavelengths are reported for various ferric, ferrous, and ferryl derivatives of bovine lactoperoxidase. The RR spectra of the ferric derivatives show the full complement of the vinyl stretching and scissor modes indicating that the two vinyls in the protoporphyrin IX prosthetic group are present in unmodified forms. The cysteine thiol complex exhibits a RR spectrum identical to that of the native enzyme, an observation which strongly suggests a nonheme binding site for the thiol substrates. The different ferrous complexes of lactoperoxidase which result from heme reduction at slightly alkaline and acidic pH gave identical low-frequency RR spectra. Differences are observed, however, in the high-frequency region. Reduction in the presence of cyanide, however, yields two time-resolved complexes. Changes in the ligand field during the conversion to the final form of the cyanoferrous complex are proposed based on the changes observed in the low-frequency vibrational spectrum. Comparisons are made between the low-frequency RR spectra of the limiting form of the cyanoferrous and the nitric oxide lactoperoxidase complexes. The similarity between the RR spectra of these two complexes in the 150-500 cm-1 region supports the assignment of structures for these complexes where the six-coordinate heme iron is displaced from the heme plane and away from the proximal histidine ligand.


Asunto(s)
Lactoperoxidasa/metabolismo , Peroxidasas/metabolismo , Animales , Bovinos , Cianuros/farmacología , Espectroscopía de Resonancia por Spin del Electrón/métodos , Óxido Nítrico/farmacología , Porfirinas , Unión Proteica , Espectrometría Raman/métodos
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