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Biomedical subjects

J A Navarro

Publications and source records attributed to J A Navarro.

At least 19 recordsLinked to original sources

Laser-flash kinetic analysis of the fast electron transfer from plastocyanin and cytochrome c6 to photosystem I. Experimental evidence on the evolution of the reaction mechanism.

The reaction mechanism of electron transfer from the interchangeable metalloproteins plastocyanin (Pc) and cytochrome c6 (Cyt) to photooxidized P700 in photosystem I (PSI) has been studied by laser-flash absorption spectroscopy using a number of evolutionarily differentiated organisms such as cyanobacteria (Anabaena sp. PCC 7119 and Synechocystis sp. PCC 6803), green algae (Monoraphidium braunii), and higher plants (spinach). PSI reduction by Pc or Cyt shows different kinetics depending on the organism from which the photosystem and metalloproteins are isolated. According to the experimental data herein reported, three different kinetic models are proposed by assuming either an oriented collisional reaction mechanism (type I), a minimal two-step mechanism involving complex formation followed by intracomplex electron transfer (type II), or rearrangement of the reaction partners within the complex before electron transfer takes place (type III). Our findings suggest that PSI was able to first optimize its interaction with positively charged Cyt and that the evolutionary replacement of the ancestral Cyt by Pc, as well as the appearance of the fast kinetic phase in the Pc/PSI system of higher plants, would involve structural modifications in both the donor protein and PSI.

Biological Evolution

Site-specific mutagenesis demonstrates that the structural requirements for efficient electron transfer in Anabaena ferredoxin and flavodoxin are highly dependent on the reaction partner: kinetic studies with photosystem I, ferredoxin:NADP+ reductase, and cytochrome c.

Electron transfer reactions involving site-specific mutants of Anabaena ferredoxin (Fd) and flavodoxin (Fld) modified at surface residues close to the prosthetic groups, with photoexcited P700 in spinach photosystem I (PSI) particles, ferredoxin:NADP+ reductase (FNR), and horse cytochrome c (cytc), have been investigated by laser flash photolysis and stopped-flow spectrophotometry. Nonconservative mutations in Fd at F65 and E94, which have been shown to result in very large inhibitions of electron transfer to FNR, were found to yield wild-type behavior in reactions with PSI and cytc. In general, the effects of Fd mutagenesis on the PSI reactions were considerably smaller than those observed for the FNR reaction. In the case of Fld, mutagenesis was found to have only small effects on both the FNR and PSI reactions, although the specific sites whose mutation caused changes in electron transfer properties differed for the two systems. In contrast, several of the Fld mutants showed appreciably larger effects on the nonphysiological reaction with cytc. We conclude from these studies that the structural requirements for efficient electron transfer involving the Fd and Fld molecules differ, depending upon the reactant with which these redox proteins interact. This is consistent with the multiple roles that these proteins have in vivo in biological electron transfer and implies that different conserved residues in these proteins have evolved to satisfy varying requirements of particular reaction partners.

Anabaena

Purification and physicochemical properties of the low-potential cytochrome C549 from the cyanobacterium Synechocystis sp. PCC 6803.

A soluble low-potential cytochrome c549 has been purified in milligram quantities from the cyanobacterium Synechocystis sp. PCC 6803. The protein exhibits an acid isoelectric point of 3.9, a molecular mass of 15.8 kDa, and a midpoint redox potential value of -250 mV at pH 7.0 EPR and 1H NMR studies suggest a low-spin heme iron with bis-histidine coordination at the fifth and sixth positions. EDTA-photoreduced 5-deazariboflavin has been used as the electron-donating system to study, by laser flash absorption spectroscopy, the electron transfer reactions between Synechocystis cytochrome c549 and redox proteins involved in the cyclic electron flow around photosystem I. The second-order rate constants (k2) obtained for ferredoxin (or flavodoxin) oxidation by Synechocystis cytochrome c549 are rather low (ca. 10(5) M-1 s-1), thus suggesting that this low-potential heme-protein does not operate as the primary electron carrier for either transferring electrons to the cytochrome b6f complex in cyclic photophosphorylation or to hydrogenase during anaerobic metabolism. The k2 values for plastocyanin reduction by cytochrome c549 are about 100 times higher (ca. 10(7) M-1 s-1), but it remains to be determined whether or not this reaction actually reflects a physiological process.

Chemical Phenomena

Plasma levels of nitrates in patients with Parkinson's disease.

It has been suggested that nitric oxide (NO) could be implicated in the neuronal degeneration of substantia nigra compacta in patients with Parkinson's disease (PD). To ascertain the possible role of NO as risk factor for PD, we studied the plasma levels of nitrate (oxidation product that provides an indirect estimation of NO), in 68 PD patients and 68 matched-controls. The plasma levels of nitrate did not differ significantly between PD patient and control groups (44.5 +/- 2.46 and 44.8 +/- 2.67 mumol/l, respectively). They were not influenced by antiparkinsonian drug and they did not correlate with age at onset, duration, scores of the Unified Parkinson's Disease Rating scales and Hoehn and Yahr staging in the PD group. These data suggest that plasma levels of nitrate are apparently unrelated to the risk for PD.

Aged

A laser flash absorption spectroscopy study of Anabaena sp. PCC 7119 flavodoxin photoreduction by photosystem I particles from spinach.

Electron transfer from P700 in photosystem I (PSI) particles from spinach to Anabaena sp. PCC 7119 flavodoxin has been studied using laser flash absorption spectroscopy. A non-linear protein concentration dependence of the rate constants was obtained, suggesting a two-step mechanism involving complex formation (k = 3.6 x 10(7) M-1.s-1) followed by intracomplex electron transfer (k = 270 s-1). The observed rate constants had a biphasic dependence on the concentrations of NaCl or MgCl2, with maximum values in the 40-80 mM range for NaCl and 4-12 mM for MgCl2. To our knowledge, this is the first time that the kinetics of PSI-dependent flavodoxin photoreduction have been determined.

Cyanobacteria

Bone metal content in patients with chronic renal failure.

Bone accumulation of metals, other than aluminum (Al), in patients with chronic renal failure (CRF) has rarely been studied. We report the bone and blood levels of iron (Fe), vanadium (V), lead (Pb), Al and calcium (Ca) in 18 CRF patients on long-term hemodialysis and in 14 controls (C). Significant increments in mean blood Al (1,300%), V (160%) and Fe (60%) and decrease in blood Pb (-50%) were found in the patients with CRF. Renal subjects had higher bone concentrations (mean +/- S.E.M.; microgram/g of bone) of Al (CRF = 129.1 +/- 16.9; C = 12.6 +/- 2.9; P < 0.0001), Fe (CRF = 940.4 +/- 133.4; C = 263.4 +/- 49.0; P < 0.0001) and V (CRF = 2.55 +/- 0.43; C = 1.39 +/- 0.36; P = 0.0308) and lower Ca (CRF = 268.2 +/- 11.1 mg/g; C = 377.2 +/- 28.1; P = 0.0017). A positive correlation was found between bone Al and V (r = 0.355, P < 0.05). Results indicated that a significant bone accumulation of Al, Fe and V, but not Pb, occurred in the hemodialyzed azotemic individuals.

Adult

Detection of Mycobacterium paratuberculosis antigen with colloidal immunogold in naturally infected sheep.

The anti-Mycobacterium paratuberculosis polyclonal serum is proved useful for labelling Mycobacterium paratuberculosis in glutaraldehyde-osmium-fixed and epon-embedded intestinal samples from sheep with clinical symptoms of paratuberculosis. M. paratuberculosis marked with antibody-coated colloidal gold stain was seen in macrophages, epithelioid cells, giant cells and neutrophils throughout intestinal mucosa. In large macrophages with a low lysosomal content, a great number of intact mycobacteria was seen within phagosomes. In macrophages with average lysosomal content, very few intact mycobacteria or mycobacterial debris were present and lysosome-phagosome fusions were observed. Mycobacteria within neutrophils were scanty. These results show the usefulness of colloidal immunogold techniques for studies of the pathogenesis of paratuberculosis.

Animals

Structural and ultrastructural modifications of adenohypophyseal gonadotropic cells in goat (Capra hircus) in anoestrus, gestation and milk production.

The structural and ultrastructural modifications of the gonadotropic cells of goats were studied with an immunohistochemical method (peroxidase-antiperoxidase), in anoestrus, gestation and milk production. The cell type which predominates in anoestrus corresponds in its morphological characteristics to the classic FSH cells, and has two populations of homogeneous and electrodense secretory granules (141-244 nm and 244-400 nm in diameter), rough endoplasmic reticulum of flat cisternae and many large-sized lysosomes. During gestation secretory granules show a characteristic reduction in size and are less abundant; lysosomes are also more scarce and the endoplasmic reticulum shows a high development; dilated and intercommunicated cisternae show a slight electrodense content, characteristic of typical LH cells. During milk production the cells show an increase in the number of secretory granules which are still small, and an increase in the number of lysosomes which appear as in anoestrus.

Anestrus

Immunogold identification of prolactin cells of goats in anoestrus, pregnancy and milk production: ultrastructural variations.

Prolactin (PRL) cells of the goat adenohypophysis have been identified by the IgG-gold procedure with anti-sheep PRL serum. The secretion of these cells show differences in size and labelling in the three reproductive stages under study. Cells containing PRL can be grouped into low secretory activity cells (PRL-I) and high secretory activity cells (PRL-II) regarding their ultrastructure and functional significance. PRL-I were the most frequent cells in animals at the anoestrus stage, presenting numerous secretory granules and scarce development of the rough endoplasmic reticulum (RER) and Golgi complex (GC). At anoestrus and pregnancy stages there are frequent granule fusions, and the hormonal content partially disappears, perhaps by digestion. PRL-II cells were the most numerous at the lactating stage, presenting a moderate number of secretory granules and well-developed GC and RER. Some PRL-II cells of lactating animals exhibiting scarce granules and numerous exocytosis suggesting a high secretory activity. In both anoestrus and pregnancy stages most granules range in diameter from 450 to 750 nm, in contrast to the lactating stage in which most granules range in diameter from 150 to 450 nm.

Animals

Results of reaugmentation with MISTI prostheses after failure of smooth silicone prostheses.

In 1988 and 1989, we replaced smooth silicone double-lumen implants with Molecular Impact Surface Textured Implants (MISTIs) in 28 of our patients. Of these, 20 had experienced recurrent capsular contracture and sought an alternative prosthesis that would provide long-term relief from this problem, and 8 simply wanted larger prostheses. Among the reaugmentation patients who had experienced recurrent contractures, 4 have had problems with the texturized implants; 1 developed an infection, and 3 developed unilateral fibrosis within weeks of surgery. The infection was resolved with antibiotics, and the fibrosis was resolved with capsulectomy, biweekly methylprednisolone irrigation in the surgical pocket, and lenticular suction drainage over a 3-week period. After a 2-year follow-up, these 4 problematic patients have remained soft and asymptomatic following their treatment, and the remaining 16 patients have remained soft and asymptomatic since their surgery.

Adult

Transient kinetics of flavin-photosensitized oxidation of reduced redox proteins. Comparison of c-type cytochromes and plastocyanins.

We have used laser flash photolysis to investigate the kinetics of oxidation of reduced plastocyanins obtained from spinach and the green alga Monoraphidium braunii by the triplet states of lumiflavin, riboflavin and FMN. We have compared the results of these experiments with the kinetics of reduction of the oxidized forms of these proteins by the corresponding flavin semiquinones, as well as with the kinetics of flavin oxidation and reduction of cytochrome c552 (Class I c-type cytochrome, generic name c553) from Monoraphidium. In all cases, the rate constants for oxidation were one or two orders of magnitude larger than for reduction, consistent with the greater thermodynamic driving force for the oxidation reaction. Similar steric and electrostatic effects were observed for both reactions with all proteins, suggesting that the same (or closely adjacent) sites were being utilized for electron removal and entry. The two algal proteins were quite similar to one another in their redox properties, consistent with their physiological role of being able to substitute for one another in photosynthetic electron transport. In contrast, the algal plastocyanin was more reactive than the spinach protein in both oxidation and reduction, suggesting differences in their steric properties at the site of electron transfer.

Chlorophyta

Kinetics of electron transfer from thioredoxin reductase to thioredoxin.

The reduction of Escherichia coli thioredoxin by thioredoxin reductase was studied by stopped-flow spectrophotometry. The reaction showed no dependence on thioredoxin concentration, indicating that complex formation was rapid and occurred during the dead time of the instrument. The kobs for the reaction of approximately 20 s-1 probably reflects the rate of electron transfer from thioredoxin reductase to thioredoxin and agrees with the kcat observed by steady-state kinetics. The reaction rate was unaffected by increasing the ionic strength, suggesting a lack of electrostatic stabilization in the interaction of the two proteins. A mutant thioredoxin in which a positively charged lysine in the active-site region was changed to a glutamic acid residue resulted in an electrostatic destabilization. Thioredoxin K36E was still a substrate for the reductase, but binding was impaired so that the rate could be measured by stopped-flow techniques as reflected by a dependence on protein concentration. Raising the ionic strength in this reaction served to shield the negative charge and increased the rate of binding to the reductase.

Electron Transport

Laser flash photolysis studies of the kinetics of reduction of ferredoxins and ferredoxin-NADP+ reductases from Anabaena PCC 7119 and spinach: electrostatic effects on intracomplex electron transfer.

The influence of electrostatic forces on the formation of, and electron transfer within, transient complexes between redox proteins was examined by comparing ionic strength effects on the kinetics of the electron transfer reaction between reduced ferredoxins (Fd) and oxidized ferredoxin-NADP+ reductases (FNR) from Anabaena and from spinach, using laser flash photolysis techniques. With the Anabaena proteins, direct reduction by laser-generated flavin semiquinone of the FNR component was inhibited by complex formation at low ionic strength, whereas Fd reduction was not. The opposite results were obtained with the spinach system. These observations clearly indicate structural differences between the cyanobacterial and higher plant complexes. For the complex formed by the Anabaena proteins, the results indicate that electrostatic forces are not a major contributor to complex stability. However, the rate constant for intracomplex electron transfer had a biphasic dependence on ionic strength, suggesting that structural rearrangements within the transient complex facilitate electron transfer. In contrast to the Anabaena complex, electrostatic forces are important for the stabilization of the spinach Fd:FNR complex, and changes in ionic strength had little effect on the limiting rate constant for intracomplex electron transfer. This suggests that in this case the geometry of the initial collisional complex is optimal for reaction. These results provide a clear illustration of the differing roles that electrostatic interactions may play in controlling electron transfer between two redox proteins.

Cyanobacteria

Transaxillary subpectoral placement of textured breast prostheses.

Textured breast implants are difficult to introduce through a small incision. We have developed two new retractors and a new positioning regimen that enables us to use the transaxillary subglandular or subpectoral approach for breast augmentation. These retractors enable us to bluntly dissect the plane beneath the gland or the pectoralis muscle and then adduct the arm so that the relaxed pectoralis or subglandular space can be retracted to allow atmospheric pressure, gravity, and the surgeon's finger to work in unison.

Breast