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1.
Photosynth Res ; 107(3): 237-46, 2011 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-21298342

RESUMEN

We used differential scanning calorimetry (DSC) as a technique capable of identifying photosynthetic complexes on the basis of their calorimetric transitions. Annotation of thermal transitions was carried out with thylakoid membranes isolated from various photosynthetic mutants of Synechocystis sp. PCC6803. The thylakoid membranes exhibited seven major DSC bands between 40 and 85°C. The heat sorption curves were analyzed both by mathematical deconvolution of the overall endotherms and by a subsequent annealing procedure. The successive annealing procedure proved to be more reliable technique than mathematical deconvolution in assigning thermal transitions. The main DSC band, around 47°C, resulting from the high enthalpy change that corresponds to non-interacting complex of PSII, was assigned using the PSI-less/apcE(-) mutant cells. Another band around 68-70°C relates to the denaturation of PSII surrounded by other proteins of the photosynthetic complexes in wild type and PSI-less/apcE(-) cells. A further major transition found at 82-84°C corresponds to the PSI core complex of wild type and PSII-deficient BE cells. Other transition bands between 50-67 and 65-75°C are believed to relate to ATP synthase and cytochrome b(6)f, respectively. These thermal transitions were obtained with thylakoids isolated from PSI(-)/PSII(-) mutant cells. Some minor bands determined at 59 and 83-84°C correspond to an unknown complex and NADH dehydrogenase, respectively. These annotations were done by PSI-less/apcE(-) and PSI(-)/PSII(-) mutants.


Asunto(s)
Fotosíntesis/genética , Proteínas del Complejo del Centro de Reacción Fotosintética/química , Synechocystis/fisiología , Tilacoides/química , Rastreo Diferencial de Calorimetría , Mutación , Synechocystis/química , Temperatura de Transición
2.
Photosynth Res ; 103(1): 19-30, 2010 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-19763873

RESUMEN

The role of phosphatidylglycerol (PG) in photosynthetic membranes of cyanobacteria was analyzed in a Synechococcus sp. PCC 7942 mutant produced by inactivating its cdsA gene presumably encoding cytidine 5'-diphosphate-diacylglycerol synthase, a key enzyme in PG synthesis. In a medium supplemented with PG the Synechococcus sp. PCC 7942/DeltacdsA cells grew photoautotrophically. Depletion of PG in the medium resulted (a) in an arrest of cell growth and division, (b) in a suppression of O(2) evolving activity, and (c) in a modification of Chl fluorescence induction curves. Two-dimensional PAGE showed that in the absence of PG (a) the amount of the PSI monomers increased at the expense of the PSI trimers and (b) PSII dimers were decomposed into monomers. [(35)S]methionine labeling confirmed that PG depletion did not block the de novo synthesis of PSII proteins but slowed down the assembly of the newly synthesized D1 protein into PSII core complexes. Retailoring of PG was observed during PG depletion: the exogenously added artificial dioleoyl PG was transformed into photosynthetically more essential PG derivatives. Concomitantly with a decrease in PG content, SQDG content increased, but it could not restore photosynthetic activity.


Asunto(s)
Fosfatidilgliceroles/fisiología , Complejo de Proteína del Fotosistema II/metabolismo , Synechococcus/metabolismo , Proteínas Bacterianas/genética , Proteínas Bacterianas/metabolismo , Ácidos Grasos/metabolismo , Fluorescencia , Metabolismo de los Lípidos , Mutagénesis Insercional , Fosfatidilgliceroles/metabolismo , Fotosíntesis/fisiología , Subunidades de Proteína/metabolismo , Synechococcus/genética , Synechococcus/crecimiento & desarrollo
3.
J Photochem Photobiol B ; 91(1): 51-7, 2008 Apr 25.
Artículo en Inglés | MEDLINE | ID: mdl-18343150

RESUMEN

To explore the possible effect of phosphatidylglycerol (PG) on the surface electric properties and chlorophyll fluorescence characteristics we used electric light scattering technique and 77K chlorophyll fluorescence of thylakoid membranes from a cyanobacterium, Synechocystis PCC6803 (wild type) and its pgsA mutant defective in PG synthesis. We found a strong decrease in the permanent and induced electric dipole moments of the mutant thylakoids, following long-term PG depletion parallel with a decrease of the emission peak from PSI and an increase of the emission peak from PSII. Partial recovery of the electric state of thylakoid membranes was observed at re-addition of PG to the mutant cells depleted of PG for 21 days. This change in the electric dipole moments is probably due to a decrease in PG content and progressive structural alterations in the macroorganization of the photosynthetic complexes induced by PG deprivation. Our results suggest that the depletion of a lipid, which carries a negative charge, despite its small contribution to the overall lipid content, significantly perturbs the surface charge of the membranes. These changes are related with the chlorophyll fluorescence emission ratios of two photosystems and may partly explain our earlier results concerning the PG requirement for the function and assembly of photosystems I and II reaction centers.


Asunto(s)
Fosfatidilgliceroles/metabolismo , Synechocystis/metabolismo , Tilacoides/metabolismo , Clorofila/metabolismo , Electricidad , Fluorescencia , Mutación , Fosfatidilgliceroles/genética , Propiedades de Superficie , Synechocystis/genética
4.
J Plant Physiol ; 162(10): 1123-32, 2005 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-16255170

RESUMEN

Characterization of the photosynthetic electron transport in a mutant of Spirulina platensis, generated by chemical mutagenesis, demonstrated that the electron transfer from the plastoquinone (PQ) to cytochrome b6/f was slowed. Thermoluminescence (TL) measurements suggested the presence of reversed energy flow via PQ, which resulted in an emergence of the plant-like after-glow TL band at 45 degrees C that could be enhanced by the transthylakoidal pH gradient and could be eliminated by an uncoupler, FCCP. The localization of the changes in the electron transport of the mutant cells measured by various methods revealed that the re-oxidation of the PQ pool is hampered in the mutant compared to the wild-type cells. The reduction in energy migration was localized between PQ and PS I reaction centers.


Asunto(s)
Cianobacterias/genética , Complejo de Citocromo b6f/metabolismo , Plastoquinona/metabolismo , Cianobacterias/enzimología , Fluorescencia , Mediciones Luminiscentes , Oxidación-Reducción , Fotosíntesis
5.
Plant Physiol ; 134(4): 1471-8, 2004 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-15064373

RESUMEN

Our earlier studies with the pgsA mutant of Synechocystis PCC6803 demonstrated the important role of phosphatidylglycerol (PG) in PSII dimer formation and in electron transport between the primary and secondary electron-accepting plastoquinones of PSII. Using a long-term depletion of PG from pgsA mutant cells, we could induce a decrease not only in PSII but also in PSI activity. Simultaneously with the decrease in PSI activity, dramatic structural changes of the PSI complex were detected. A 21-d PG depletion resulted in the degradation of PSI trimers and concomitant accumulation of monomer PSI. The analyses of PSI particles isolated by MonoQ chromatography showed that, following the 21-d depletion, PSI trimers were no longer detectable in the thylakoid membranes. Immunoblot analyses revealed that the PSI monomers accumulating in the PG-depleted mutant cells do not contain PsaL, the protein subunit thought to be responsible for the trimer formation. Nevertheless, the trimeric structure of PSI reaction center could be restored by readdition of PG, even in the presence of the protein synthesis inhibitor lincomycin, indicating that free PsaL was present in thylakoid membranes following the 21-d PG depletion. Our data suggest an indispensable role for PG in the PsaL-mediated assembly of the PSI reaction center.


Asunto(s)
Cianobacterias/metabolismo , Fosfatidilgliceroles/metabolismo , Complejo de Proteína del Fotosistema I/metabolismo , Clorofila/metabolismo , Cianobacterias/genética , Cianobacterias/crecimiento & desarrollo , Dimerización , Metabolismo de los Lípidos , Lípidos/química , Mutación , Fosfatidilgliceroles/farmacología , Complejo de Proteína del Fotosistema I/química , Complejo de Proteína del Fotosistema I/efectos de los fármacos , Proteínas de Plantas/química , Proteínas de Plantas/metabolismo , Tilacoides/efectos de los fármacos , Tilacoides/genética , Tilacoides/metabolismo
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