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Biomedical subjects

S Papa

Publications and source records attributed to S Papa.

At least 235 records · Page 13Linked to original sources

Response of isolated nuclei to phospholipid vesicles: a two dimensional gel electrophoresis analysis of H2SO4 soluble nuclear proteins after treatment with phosphatidylserine.

H2SO4 soluble proteins extracted from nuclei incubated with phosphatidylserine multilamellar vesicles (PS MLV) have been analysed by means of two-dimensional gel electrophoresis with particular attention to the uH2A fraction. A reduction of H1, H1 degrees and proteins A5, B7, B15 and B23 has been observed in lipid treated nuclei, while the core histones, as well as uH2A are unaffected by liposome treatment. Since these proteins show in vitro the same binding affinity for PS, their behaviour appears to be related to difference in localization in the nucleosome, responsible for their variable accessibility in the chromatin. These results might explain how this phospholipid induces a decondensation of chromatin and a stimulation of RNA synthesis.

Animals↗

Increase of globin RNA synthesis induced by phosphatidylserine liposomes in isolated erythroleukemic cell nuclei. Morphological and functional features.

The effect of phospholipid vesicles on chromatin structure, protein composition and globin RNA synthesis has been analysed in nuclei isolated from murine erythroleukemia cells. In terms of chromatin organisation, PC vesicles with neutral surface charge do not affect the structure of chromatin fibres, whereas negatively charged PS vesicles induce chromatin decondensation to a great extent. Indeed the fibres appear uniformly dispersed lacking also the perinucleolar heterochromatin. These morphological features are accompanied by depletion of lysine-rich histones H1 and H1(0) and of histone-like protein A5, due to PS liposomes. Functionally, PS vesicles induce enhancement both of total RNA and specific mRNA synthesis, as analysed by in vitro transcription of beta globin gene. On the contrary, PC vesicles do not seem to affect significantly total RNA and globin mRNA synthesis. These observations fit well with previous data obtained in other experimental systems, and support both the use of these molecules as probes for chromatin structure and function and their possible involvement in transcriptional events.

Amanitins↗

Interaction of the aminoglycoside antibiotic dihydrostreptomycin with the H+-ATPase of mitochondria.

In this paper a study is presented of the effect of dihydrostreptomycin on the H+-ATPase of the inner mitochondrial membrane. The antibiotic caused at concentrations of 1-5 X 10(-3)M a marked enhancement of the hydrolytic activity of the H+-ATPase complex in intact mitochondria and submitochondrial particles which was accompanied, in the latter, by enhancement of passive transmembrane proton conduction by the complex. The stimulation by dihydrostreptomycin of ATP hydrolysis resulted in a suppression of the sensitivity of this activity to inhibition by oligomycin. On the other hand the dihydrostreptomycin-promoted proton conduction in submitochondrial particles was suppressed by oligomycin. At concentrations above 10(-2)M dihydrostreptomycin caused inhibition of the activity of both membrane bound and isolated H+-ATPase. In submitochondrial particles devoid of the catalytic moiety (F1) of the H+-ATPase complex, dihydrostreptomycin caused partial inhibition of proton conductivity. It is concluded that the antibiotic uncouples the hydrolytic activity of the catalytic moiety (F1) from transmembrane proton conduction by the membrane sector (F0) of the ATPase complex. This effect can be followed at higher concentrations of dihydrostreptomycin by inhibition of the catalytic activity of F1 and, when F1 is removed from the membrane, by inhibition of transmembrane proton conduction by F0.

Animals↗

On the mechanism of H+ translocation by mitochondrial H+ -ATPase. Studies with chemical modifier of tyrosine residues.

In this paper a detailed study of the effect of nitration of tyrosine residues by tetranitromethane on H+ conduction and other reactions catalyzed by the H+ -ATPase complex in phosphorylating submitochondrial particles, uncoupled particles, and the purified complex is presented. Tetranitromethane treatment of submitochondrial particles results in marked inhibition of ATP hydrolysis, ATP-33Pi exchange, and proton conduction by the H+ -ATPase complex. These effects are caused by nitration of tyrosine residues of H+ -ATPase complex as shown by the appearance of the absorption peak at 360 nm (specific for nitrotyrosine formation) and inhibition of ATP hydrolysis and ATP-33Pi exchange in the complex purified from tetranitromethane-treated particles. H+ conduction in phospholipid vesicles inlaid with F0 is also inhibited by tetranitromethane treatment. These observations indicate that tyrosine residue(s) of F0 are critically involved in energy-linked proton translocation in the ATP-ase complex.

Adenosine Triphosphate↗

Distribution of acid alpha-naphthyl acetate esterase among human T lymphocyte subsets.

Human T lymphocyte subsets, identified by means of OKT3, 4 and 8 monoclonal antibodies, were isolated by a fluorescence activated cell sorter (FACS IV) and analyzed for distribution of alpha-naphthyl acetate esterase (ANAE) activity. As compared to OKT8+ lymphocytes a higher proportion of OKT4+ lymphocytes was ANAE-positive exhibiting a spot or dot-like pattern in the cytoplasm. OKT8 and 4 positive subsets showed a similar ANAE distribution in diffuse granular form. Although OKT4 and OKT8 populations presented a different ANAE dot-like reactivity, this marker did not allow as clear a distinction between them as that reported for TG and TM lymphocytes.

Cell Separation↗

Response of isolated nuclei to phospholipid vesicles: analysis of the nuclear proteins after treatment with phosphatidylserine and phosphatidylcholine and comparison with heparin.

Phospholipid liposomes affect the histone pattern of isolated rat liver nuclei. Multilamellar vesicles (MLV) obtained with phosphatidylserine (PS) release a large amount of the lysine rich histones, while those obtained with phosphatidylcholine (PC) do not induce significant changes with respect to controls. This different response has been compared to the effects obtained with Heparin, which slightly modifies the relative ratio of the histone fractions. These data might account for the mode by which phospholipids induce transitions of the chromatin structure and changes of the endogenous RNA polymerase activity.

Animals↗

Transfer of liposome-encapsulated carboxyfluorescein to isolated nuclei.

The interaction between phosphatidylcholine vesicles and isolated rat liver nuclei has been examined by studying the uptake of the fluorophore carboxyfluorescein. The kinetics of transfer of the dye, analyzed by flow cytofluorimetry with a Fluorescence Activated Cell Sorter (FACS IV), indicate an efficient delivery to the nucleoplasm. The results reflect a liposome-nuclear membrane interaction which may contribute to the processes which underlie our previously described morphological and functional changes in isolated nuclei treated with phospholipids.

Animals↗

Response of isolated nuclei to phospholipid vesicles: analysis of chromatin sensitivity to DNase I and micrococcal nuclease.

Phosphatidylserine (PS) and phosphatidylcholine (PC) multilamellar vesicles (MLV) affect chromatin structure as analysed by DNase I sensitivity. The kinetics of DNA solubilisation during the digestion of nuclei indicates that phosphatidylserine causes an increase in DNase accessibility while phosphatidylcholine slightly reduces this accessibility. The effect of phosphatidylserine has also been analysed by means of isokinetic sucrose gradients and agarose gel electrophoresis of nuclear DNA solubilised by micrococcal nuclease. This analysis indicates that phosphatidylserine induces a very rapid production of mononucleosome subunits as compared with untreated nuclei.

Animals↗

Redox-linked proton translocation in the b-c1 complex from beef-heart mitochondria reconstituted into phospholipid vesicles. General characteristics and control of electron flow by delta micro H+.

A study is presented of the characteristics of redox-linked proton translocation in the b-c1 complex isolated from beef-heart mitochondria and reconstituted into phospholipid vesicles. Measurements of the H+/e- stoichiometry, with three different methods, show that four protons are released from the vesicles per 2e- flowing from quinols to cytochrome c, two of these protons formally deriving from scalar oxidation of quinols by cytochrome c. This H+/e- stoicheiometry is independent of the initial redox state of the b-c1 complex (fully reduced or oxidized) and the rate of electron flow through the complex. It does not change in the pH range 6.0 - 7.2, but declines to 1.5 going with pH from 7.2 - 8.3. This decrease is accompanied by enhancement of the rate of electron flow in the coupled state. Collapse of delta psi effected by valinomycin addition to turning-over b-c1 vesicles resulted in substantial oxidation of cytochrome b-566 and comparable reduction of cytochrome c1, with little oxidation of cytochrome b-562. Nigericin alone had no effect on the steady-state redox levels of b and c cytochromes. Its addition in the presence of valinomycin caused oxidation of b cytochromes but no change in the redox state of cytochrome c1. Valinomycin alone caused a marked enhancement of the rate of electron flow through the complex. Nigericin alone was ineffective, but caused further stimulation of electron flow when added in the presence of valinomycin. The data presented are discussed in terms of two mechanisms: the Q cycle and a model based on combination of protonmotive catalysis by special bound quinone and proton conduction along pathways in the apoproteins.

Animals↗

Redox-linked proton translocation in the b-c1 complex from beef-heart mitochondria reconstituted into phospholipid vesicles. Studies with chemical modifiers of amino acid residues.

Possible involvement of polypeptides of b-c1 complex of beef-heart mitochondria in its redox and protonmotive activity has been investigated, by means of chemical modification of amino acid residues in the soluble as well as in the phospholipid-reconstituted b-c1 complex. Treatment of the enzyme with tetranitromethane (C(NO2)4) or with ethoxyformic anhydride (EFA), that modify reversibly tyrosyl and hystidyl residues respectively, resulted in a marked inhibition of electron transport from reduced quinols to cytochrome c. This was accompanied, in b-c1 reconstituted into phospholipid vesicles, by a parallel inhibition of respiratory-linked proton translocation; the H+/e- stoichiometry remained unchanged. Treatment of b-c1 complex with DCCD, that specifically modifies carboxylic groups of glutammic or aspartic residues caused a marked depression of proton translocation in b-c1 vesicles, under conditions where the rate of electron flow in the coupled state, was enhanced. As a consequence the H+/e- stoichiometry was lowered. SDS gel electrophoresis and [14C]DCCD-labelling of the polypeptides of the b-c1 complex showed a major binding of 14C-DCCD to the 8-kDa subunit of the complex and possible cross-linking, induced by DCCD treatment, of polypeptide(s) in the 8-kDa band and the 12-kDa band, with the Fe-s protein of the complex, with the appearance of a new polypeptide band with an apparent molecular mass of about 40 kDa. Involvement of polypeptides of low molecular mass, for which no functional role was so far described, and possibly of the Fe-S protein in the redox-linked proton translocation in b-c1 complex is suggested.

Amino Acids↗

The mechanism of proton translocation by the cytochrome system of mitochondria. Characterization of proton-transfer reactions associated with oxidoreductions of terminal respiratory carriers.

A direct kinetic analysis is presented of rapid proton-releasing reactions at the outer or C-side of the membrane, in ox heart and rat liver mitochondria, associated with aerobic oxidation of reduced terminal respiratory carriers in the presence of antimycin. Valinomycin plus K+ enhances the rate of cytochrome c oxidation and the rate and extent of H+ release. In the presence of valinomycin the leads to H+/e- ratio, computed on the basis of total electron flow from respiratory carriers to oxygen, varies with pH, remaining always lower than 1, and is unaffected by N-ethylmaleimide. 2-Heptyl-4-hydroxyquinoline N-oxide and 5-(n-undecyl)-6-hydroxy-4,7-dioxobenzothiazole, at concentrations which inhibit in the presence of antimycin the oxygen-induced reduction of b cytochromes, cause also a marked depression of the H+ release associated with aerobic oxidation of terminal respiratory carriers. Aerobic oxidation of the cytochrome system in mitochondria and of isolated b-c1 complex and cytochrome c oxidase results in scalar proton release from ionizable groups (redox Bohr effects). In mitochondria and submitochondrial particles, about 70% of the oxidoreductions of the components of the cytochrome system are linked to scalar proton transfer by ionizable groups. In isolated b-c1 complex scalar proton transfer, resulting from redox Bohr effect, amounts to 0.9H+ per Fe-S protein (190 muT). In isolated cytochrome c oxidase, Bohr protons amount to 0.8 per haem a + a3. The results presented indicate that the H+ release from mitochondria during oxidation of terminal respiratory carriers derives from residual antimycin-insensitive electron flow in the quinone-cytochrome c span and from redox Bohr effects in the b-c1 complex and cytochrome c oxidase. There is no sign of proton pumping by cytochrome oxidase during its transition from the reduced to the active 'pulsed' state and the first one or two turnovers.

Animals↗

Characteristics of redox-linked proton ejection in cytochrome c oxidase reconstituted in phospholipid vesicles. New observations support mechanisms different from proton pumping.

Experimental observations reveal a number of characteristics of the redox-linked proton ejection from cytochrome c oxidase vesicles, which apparently cannot be explained by a proton pumping activity of the oxidase. These observations seem, on the other hand, to provide useful elements for alternative explanation(s) of the proton ejection. It is proposed here that the process is scalar and not vectorial and can derive from redox-linked rupture of protonated salt-bridges in the oxidase-lipid complex.

Biological Transport, Active↗

Mechanism of proton translocation associated to oxidation of N,N,N',N'-tetramethyl-p-phenylenediamine in rat liver mitochondria.

A kinetic analysis is presented of proton translocation, TMPD+ formation and oxidation of endogenous respiratory carriers during oxygen pulses of TMPD supplemented rat-liver mitochondria. The results show that antimycin-insensitive proton ejection observed under coupled conditions derives from oxidation of endogenous respiratory carriers and re-reduction of TMPD+ by hydrogenated donors and not from proton pumping by cytochrome oxidase as claimed by other investigators. The observations presented provide an example of certain interpretative difficulties in the use of redox mediators and of the methodological approaches that can be used to avoid these.

Animals↗

Transport of pyruvate in mitochondria from different tumor cells.

A comparative study of the transport of pyruvate in mitochondria isolated from normal rat liver and from three tumors has been carried out. The Km for net pyruvate uptake in mitochondria isolated from Ehrlich ascites tumor cells is practically equal to that measured in normal rat liver mitochondria while, on the other hand, it is higher in Morris hepatomas 44 and 3924A. The Vmax of pyruvate uptake is depressed in all three types of tumor mitochondria as compared to that in the rat liver mitochondria, with the depression being higher in Morris hepatoma 3924A mitochondria. The lower activity of pyruvate translocator in mitochondria isolated from tumor cells as compared to that in rat liver mitochondria is also shown by depression of the rate of pyruvate-supported oxygen uptake. The results document a decreased activity of the pyruvate translocator in tumor mitochondria which seems to be correlated with the growth rate of the tumor cells.

Animals↗

Association between centriole and nuclear matrix in human lymphocytes.

Nuclear matrices, purified from normal and chronic lymphocytic leukemia lymphocytes, exhibit a close association with the centriole. This finding suggests that the nuclear and cytoplasmic skeletal systems are linked by transmembrane connections represented by nuclear matrix constituents. This could account for the observed synchrony between transformations of the centriole and particular nuclear events which take place during the cell cycle and suggests that the nuclear matrix, besides being involved in DNA replication and chromosome condensation, should affect the centriole cycle which controls the cytoskeleton organization.

Cell Division↗

Proton-cation translocation in tumor cell mitochondria.

The capacity of mitochondria isolated from tumor cells to conserve the transmembrane electrochemical proton gradient set up by respiration has been studied. In a K+ medium, mitochondria from Ehrlich ascites tumor cells exhibit a capacity to conserve aerobic delta microH comparable to that displayed by normal rat liver mitochondria. Mitochondria from Morris hepatoma 3924A show a decreased capacity to store delta microH+, which is principally due to lowering of delta pH. In a Na+ medium, both species of tumor mitochondria show a significant decrease of aerobic delta pH, while delta psi is the same, with respect to rat liver mitochondria. Experiments on passive swelling show that mitochondria from ascites tumor cells have an enhanced permeability to chloride salts of monovalent cations and increased activity of the Na+ (K+)-H+ exchange system of the mitochondrial membrane with respect to normal mitochondria. The enhanced activity of this system in ascites cells is also shown by the characteristics of respiration-linked proton translocation in submitochondrial particles and subsequent anaerobic proton diffusion. It is concluded that the decreased capacity of mitochondria from tumor cells to conserve aerobic delta pH is due to enhanced cyclic flow of Na+ across the membrane.

Aerobiosis↗