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1.
Antioxid Redox Signal ; 19(9): 1026-35, 2013 Sep 20.
Artigo em Inglês | MEDLINE | ID: mdl-23249217

RESUMO

SIGNIFICANCE: Cytochromes b561 (CYB561s) constitute a family of trans-membrane (TM), di-heme proteins, occurring in a variety of organs and cell types, in plants and animals, and using ascorbate (ASC) as an electron donor. CYB561s function as monodehydroascorbate reductase, regenerating ASC, and as Fe³âº-reductases, providing reduced iron for TM transport. A CYB561-core domain is also associated with dopamine ß-monooxygenase redox domains (DOMON) in ubiquitous CYBDOM proteins. In plants, CYBDOMs form large protein families. Physiological functions supported by CYB561s and CYBDOMs include stress defense, cell wall modifications, iron metabolism, tumor suppression, and various neurological processes, including memory retention. CYB561s, therefore, significantly broaden our view on the physiological roles of ASC. RECENT ADVANCES: The ubiquitous nature of CYB561s is only recently being recognized. Significant advances have been made through the study of recombinant CYB561s, revealing structural and functional properties of a unique "two-heme four-helix" protein configuration. In addition, the DOMON domains of CYBDOMs are suggested to contain another heme b. CRITICAL ISSUES: New CYB561 proteins are still being identified, and there is a need to provide an insight and overview on the various roles of these proteins and their structural properties. FUTURE DIRECTIONS: Mutant studies will reveal in greater detail the mechanisms by which CYB561s and CYBDOMs participate in cell metabolism in plants and animals. Moreover, the availability of efficient heterologous expression systems should allow protein crystallization, more detailed (atomic-level) structural information, and insights into the intra-molecular mechanism of electron transport.


Assuntos
Ácido Ascórbico/metabolismo , Grupo dos Citocromos b/fisiologia , Animais , Grupo dos Citocromos b/química , Transporte de Elétrons , Humanos , Oxirredução , Plantas/metabolismo , Domínios e Motivos de Interação entre Proteínas , Relação Estrutura-Atividade
2.
J Neurochem ; 110(2): 545-56, 2009 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19457129

RESUMO

Microglia, the immune cells of the CNS, play essential roles in both physiological and pathological brain states. Here we have used an in vitro model to demonstrate neuroprotection of a 48 h-microglial conditioned medium (MCM) towards cerebellar granule neurons (CGNs) challenged with the neurotoxin 6-hydroxydopamine, which induces a Parkinson-like neurodegeneration, and to identify the protective factor(s). MCM nearly completely protects CGNs from 6-hydroxydopamine neurotoxicity and at least some of the protective factor(s) are peptidic in nature. While the fraction of the medium containing molecules < 30 kDa completely protects CGNs, fractions containing molecules < 10 kDa or > 10 kDa are not neuroprotective. We further demonstrate that microglia release high amounts of transforming growth factor-beta2 (TGF-beta2) and that its exogenous addition to the fraction of the medium not containing it (< 10 kDa) fully restores the neuroprotective action. Moreover, MCM neuroprotection is significantly counteracted by an inhibitor of TGF-beta2 transduction pathway. Our results identify TGF-beta2 as an essential neuroprotective factor released by microglia in its culture medium that requires to be fully effective the concomitant presence of other factor(s) of low molecular weight.


Assuntos
Meios de Cultivo Condicionados/farmacologia , Microglia/fisiologia , Neurônios/fisiologia , Fármacos Neuroprotetores/farmacologia , Oxidopamina/toxicidade , Fator de Crescimento Transformador beta2/fisiologia , Animais , Morte Celular/efeitos dos fármacos , Morte Celular/fisiologia , Células Cultivadas , Relação Dose-Resposta a Droga , Humanos , Peso Molecular , Neurônios/efeitos dos fármacos , Ratos , Ratos Wistar
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