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1.
Cell Mol Biol (Noisy-le-grand) ; 65(8): 54-58, 2019 Dec 31.
Artículo en Inglés | MEDLINE | ID: mdl-32133978

RESUMEN

Telomere shortening is involved in age-related disorders, such as cancer and cardiovascular diseases. Recently, telomerase re-activation strategies have been proposed to counteract telomere shortening and its consequences. Here, we investigated the benefit of dietary supplementation with a mix of S-adenosyl-methionine (SAMe) and a polysaccharide extract of Astragalus (APS) on telomere length of circulating lymphocytes of healthy volunteers. Blood lymphocytes of a cohort of 26 healthy volunteers who were administrated the mix of SAMe and APS in a food supplement for one year were collected. In vitro treatment of blood lymphocytes of healthy volunteers with the mix was also performed. A cohort of 150 healthy volunteers was used as a control. Telomere length was measured by Q-FISH. The micronucleus assay was performed to detect genotoxicity of the mix. The telomeres of circulating lymphocytes of the cohort of 26 donors supplemented with the mix were significantly longer than those of matched controls (p < 10-4). This elongation was essentially observed in the lymphocytes of older donors. Similarly, in vitro treatment of circulating lymphocytes with the mix significantly increased telomere length and decrease the proportion of cells with short telomeres. Here, we observed an increase in telomere length after in vivo and in vitro administration of a mix with SAMe and APS.  The benefit of dietary supplementation with this mix opens a new horizon for the battle against aging and could be used in the treatment of chronic age-related disorders.


Asunto(s)
Antioxidantes/administración & dosificación , Suplementos Dietéticos , Medicina Tradicional China , Telómero/metabolismo , Adolescente , Adulto , Anciano , Planta del Astrágalo/metabolismo , Niño , Preescolar , Humanos , Linfocitos/metabolismo , Persona de Mediana Edad , Polisacáridos/administración & dosificación , Polisacáridos/química , S-Adenosilmetionina/administración & dosificación , S-Adenosilmetionina/química , Acortamiento del Telómero , Adulto Joven
2.
J Am Chem Soc ; 124(23): 6714-22, 2002 Jun 12.
Artículo en Inglés | MEDLINE | ID: mdl-12047191

RESUMEN

[2Fe-2S] ferredoxins act as electron carriers in photosynthesis by mediating the transfer of electrons from photosystem I to various enzymes such as ferredoxin:NADP(+):reductase (FNR). We have analyzed by density functional theory the possible variations of the electronic properties of the [2Fe-2S] ferredoxin, from the cyanobacterium Anabaena, depending on the redox-linked structural changes observed by X-ray diffraction at atomic resolution (Morales, R.; et al. Biochemistry 1999, 38, 15764-15773). The present results point out a specific and concerted role of Ser47, Phe65, and Glu94 located at the molecule surface, close to the iron-sulfur cluster. These residues were already known to be crucial for efficient electron transfer to FNR (e.g., Hurley, J. K.; et al. Biochemistry 1997, 36, 11100-11117). Our calculations suggest that the Glu94 carboxylate negative charge regulates the electron charge delocalization between the Ser47 CO group and the Phe65 aromatic ring, depending on the redox state. The Glu94 carboxylate is stabilized by a strong hydrogen bond implicating a hydroxyl-containing side chain (i.e., Ser or Thr) at location 47. We propose that the Phe65 ring acts as an intermediary carrier receiving the reducing electron prior to its transfer from the reduced Fd to FNR, in view of its central role in the Fd-FNR interaction.


Asunto(s)
Ferredoxina-NADP Reductasa/química , Ferredoxinas/química , Anabaena/química , Anabaena/metabolismo , Electrones , Ferredoxina-NADP Reductasa/metabolismo , Ferredoxinas/metabolismo , Modelos Moleculares , Oxidación-Reducción , Conformación Proteica , Teoría Cuántica , Termodinámica
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