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1.
Eur Biophys J ; 47(5): 549-559, 2018 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-29362827

RESUMEN

The blood proteome has been studied extensively for identification of novel reliable disease biomarkers. In recent years, differential scanning calorimetry has emerged as a new tool for characterization of the thermodynamic properties of the major serum/plasma proteins and for the establishment of calorimetric markers for a variety of diseases. Here we applied calorimetry to monitor the effect of treatment of patients diagnosed with multiple myeloma and Waldenström's macroglobulinemia on the calorimetric profiles of patients' blood sera. The parameters derived from the calorimetric profiles were compared with the primary serum biomarkers, monoclonal immunoglobulin (M protein) concentration, and κ/λ free light chain ratio. For the secretory cases, the calorimetric parameters thermogram's shape similarity and weighted average center strongly depended on the M protein level but had lower sensitivity and specificity. By contrast, for non-secretory cases, the calorimetric parameters did not depend on the κ/λ free light chains ratio and exhibited significantly higher sensitivity and specificity than M protein levels. A combination of the immunological and calorimetric tests was found to greatly improve the sensitivity and specificity of the clinical status evaluation. The pronounced differences in blood sera thermograms before and during monitoring reflected the individual patients' response to treatment received and showed maintenance of heterogeneity during the disease course.


Asunto(s)
Biomarcadores de Tumor/metabolismo , Calorimetría , Mieloma Múltiple/metabolismo , Proteómica , Macroglobulinemia de Waldenström/metabolismo , Biomarcadores de Tumor/sangre , Humanos , Inmunoglobulinas/sangre , Mieloma Múltiple/sangre , Macroglobulinemia de Waldenström/sangre
2.
Photochem Photobiol ; 85(2): 609-13, 2009.
Artículo en Inglés | MEDLINE | ID: mdl-19222799

RESUMEN

Protein electric response signals (PERS) of the M intermediates of wild-type bacteriorhodopsin (bR) were recorded. Contrary to earlier findings reporting on a single-phase response upon excitation of the M intermediates, a kinetic analysis of the signals revealed the existence of three components, the fastest and the slowest ones of negative, while the middle one of positive sign with respect to the normal direction of proton pumping. Based on proton motion indicator experiments and molecular dipole calculations, the components were assigned to proton transfer steps and conformational changes driving the bR molecule back from the M to the ground state upon blue light excitation. The fastest, negative pump component was assigned to the proton transfer from D85 to the Schiff base. The subsequent positive component was attributed to rearrangements in the protein core (in the vicinity of the retinal molecule), triggered by the primary proton transfer process. The slowest component was established to reflect charge rearrangements associated with proton uptake by the protein from the bulk.


Asunto(s)
Bacteriorodopsinas/química , Bacteriorodopsinas/metabolismo , Electrones , Halobacterium salinarum/química , Halobacterium salinarum/metabolismo , Halobacterium salinarum/efectos de la radiación , Protones , Temperatura
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