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L Cocco

Publications and source records attributed to L Cocco.

At least 127 records · Page 7Linked 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↗

Dismutation of dihydrofolate by dihydrofolate reductase.

Degradation of 7,8-dihydrofolate (H2folate) in the presence of dihydrofolate reductase (DHFR) has been shown due not to an oxygenase activity of the reductase as previously reported but to dismutation of H2folate to folate and 5,6,7,8-tetrahydrofolate (H4folate). The reaction can be followed spectrophotometrically or by analysis of the reaction mixture by high-performance liquid chromatography (HPLC). The products have also been isolated and characterized. Oxygen uptake during the reaction is much less than stoichiometric with H2folate disappearance and is attributed to autoxidation of the H4folate formed. The dismutation activity is a property of highly purified Streptococcus faecium DHFR isoenzyme 2 (but not isoenzyme 1) and of Lactobacillus casei DHFR, but not of bovine liver DHFR. The activity is dependent on tightly bound NADP+ and/or NADPH. Removal of the nucleotide results in loss of dismutation activity, which is restored by adding NADP+ or NADPH. Maximum activity is obtained when approximately 1 mol equiv of nucleotide is added per mol of DHFR. It is proposed that in the dismutation reaction bound NADP(H) is alternately reduced and oxidized by incoming molecules of H2folate with release of folate and H4folate, respectively. The relatively slow rate of folate formation presumably limits the rate of the overall reaction. The equilibrium constant for the dismutation reaction is 19.4 +/- 7.4 at 22 degrees C and pH 7.0. Calculation of standard oxidation-reduction potentials at pH 7 gave values of -0.230 V for the H2folate/H4 folate pair and -0.268 V for the folate/H2folate pair. The mechanism by which NADP+ is retained by the enzyme from some sources during purification procedures is unclear.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Conformational changes of nuclear chromatin related to phospholipid induced modifications of the template availability.

The phospholipid involvement in the regulation of the functional and structural properties of isolated nuclei has been studied by analyzing the composition and the possible function of the nuclear matrix bound phospholipids in rat liver and murine erythroleukemic cells. The digestion of the matrix phospholipids with phospholipases results in the release of essentially all the newly replicated matrix DNA. The exogenous addition of liposomal phosphatidylserine to rat liver nuclei induces chromatin structural changes consisting in a disaggregation of the heterochromatin, probably mediated by the matrix remodeling, and in a transition from the solenoid fiber to the nucleosome filament, due to the removal of the histone H1. These effects occur through a direct interaction of phospholipid molecules with the inner nuclear components, as demonstrated by carboxyfluorescein transfer and electron microscope autoradiography.

Animals↗

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↗

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↗

Protonated state of methotrexate, trimethoprim, and pyrimethamine bound to dihydrofolate reductase.

13C nuclear magnetic resonance (NMR) of methotrexate, trimethoprim, and pyrimethamine enriched 90% with 13C at C2 has provided a sensitive means of detecting the state of protonation of the heterocyclic rings of these inhibitors. In each case, protonation of N1 causes an upfield movement of the chemical shift of C2 by more than 6 ppm. By this method it has been shown that, at pH values up to 9.2, methotrexate is bound to bovine liver dihydrofolate reductase with N1 of the inhibitor protonated, just as in the case of the complex with reductase from Streptococcus faecium and Lactobacillus casei. Furthermore, trimethoprim bound to reductase from any of the three sources, and pyrimethamine bound to either of the bacterial reductases also have N1 protonated even at pH values up to 10. This implies that in all cases there is a strong interaction between protonated N1 of the inhibitor and the carboxylate group of the active site aspartate or glutamate. In every case pKa of the bound inhibitor is increased by several units, a finding in accord with crystallographic evidence that inhibitor bound to L. casei reductase is in a hydrophobic environment and that N1 is not hydrogen-bonded to water. It was confirmed by titration of protein fluorescence that trimethoprim has greater affinity for bacterial reductase than for vertebrate (bovine) reductase, and that this selectivity is more marked in ternary complexes in which NADPH is also bound to the active site. However, the data cited above indicate that this difference in affinities is not due to a weaker ionic interaction between protonated N1 of trimethoprim and the bovine enzyme. Instead, binding of the trimethoprim side chain to hydrophobic sites on the enzyme must provide less binding energy in the case of the mammalian enzyme.

Animals↗

Molecular basis for the interaction of polyglutamates of folic acid and its analogs with dihydrofolate reductase.

Fluorimetric titration has been used to measure the dissociation constants for the complexes of folate, pteroyltriglutamate and pteroylheptaglutamate with dihydrofolate reductase purified from Lactobacillus casei, Streptococcus faecium (isoenzyme 2) and bovine liver. Effects of pH, temperature, salt concentration and second ligands have been examined. The method is shown to be unsuitable for methotrexate complexes. The polyglutamates do not bind more tightly than folate to the S. faecium reductase under any conditions examined, but bind somewhat more tightly than folate to the L. casei reductase at low pH (less than 7) and to the bovine liver enzyme at pH 7-9. Increasing concentrations of KC1 decrease the binding of all three ligands to the L. casei and bovine liver enzymes. Increasing pH markedly raises the dissociation constants for all complexes of the L. casei reductase, but has only slight effects on the complexes of the S. faecium reductase. Complexes of the bovine enzyme are affected to an intermediate degree by pH, but the folate complex is affected much more than those of the polyglutamates. Model building studies have been performed with a three-dimensional model of the complex of L. casei reductase with NADPH and methotrexate. Additional glutamyl groups were added in gamma-linkage to the glutamate moiety of the complexed methotrexate. A proposed mode of binding of the pteroyl polyglutamates is discussed and sequence comparisons are used to predict residues that might be involved in polyglutamate binding by reductase from other sources.

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↗

Nuclear magnetic resonance study of dihydrofolate reductase labeled with [gamma-13C]tryptophan.

Dihydrofolate reductase isozyme 2 of Streptococcus faecium has been labeled with 13C in the C gamma position of tryptophan residues by growing the organism on a defined medium containing L-[gamma-13C]tryptophan (90% 13C). The 13C nuclear magnetic resonance (NMR) spectrum of the enzyme shows four well-resolved resonances which have nuclear Overhauser enhancements of 1.1-1.3. Values of T1 (spin-lattice relaxation time) and T2 (spin-spin relaxation time) are significantly less than predicted for an isotropically rotating, rigid sphere with no intermolecular dipole-dipole interactions. Three of the resonances have chemical shifts downfield from the 13C resonance of urea-denatured enzyme by amounts up to 1.43 ppm. The chemical shift of resonance 4 in the spectrum is 4.0 ppm upfield from Trp C gamma of urea-denatured enzyme. This large upfield shift is attributed to electric field effects generated by polar side chains. The two more upfield peaks both provide evidence that the corresponding tryptophan residues, WC and WD, each undergo chemical exchange between alternative microenvironments. In the case of WC, which gives a resonance with two components, exchange is slow (ve, exchange rate much less than 55 s-1), and the relative populations of the two stable states are in the ratio 2:3. WD is apparently in intermediate to fast exchange on the NMR time scale. With a two-state model, ve increases from approximately 90 to 150 s-1 as the temperature is increased from 5 to 25 degrees C. This increases in temperature is also accompanied by an increase in the fractional population of the minor downfield state(s), from about 0.062 at 5 degrees C to 0.24 at 25 degrees C. However, the data may also be interpreted as a temperature-dependent equilibrium between a continuum of many states. WD is tentatively identified with Trp-22 since comparison of the sequences of Lactobacillus casei dihydrofolate reductase and S. faecium dihydrofolate reductase and inspection of the crystal structure of the L. casei enzyme indicate that Trp-6, Trp-115, and Trp-160 are probably all involved in regions of beta sheet whereas Trp-22 is in a loop joining beta A to alpha B. Earlier crystallographic evidence for the Escherichia coli reductase suggests that in the methotrexate complex with this enzyme the corresponding loop has a good deal of flexibility. It is probable that in the uncomplexed S. faecium reductase the motion of this loop is the major mechanism for the exchange process involving Trp-22. The upfield chemical shift of resonance 4 is attributed to electric field effects on C gamma of Trp-22 produced by the carboxylate groups of Asp-27 and Asp-9. On the basis of the small difference between the chemical shift of resonance 3 and that of tryptophan C gamma in urea-denatured reductase, it is suggested that WC may be identified with Trp-6.

Amino Acid Sequence↗

Carbon-13 nuclear magnetic resonance study of protonation of methotrexate and aminopterin bound to dihydrofolate reductase.

Methotrexate, aminopterin, and folate have been synthesized with 90% enrichment of C-2 with 13C. 13C nuclear magnetic resonance has been used to examine the state of protonation of the pteridine ring of these compounds under various conditions and gives much more clear-cut results than most other methods. For the free compounds the following pK values were obtained: methotrexate, 5.73 +/- 0.02 (N-1); aminopterin, 5.70 +/- 0.03 (N-1); folic acid, 2.40 (N-1) and 8.25 +/- 0.05 (N-3, O-4 amide group). The state of protonation of these compounds when complexed to dihydrofolate reductase (isoenzyme 2 from Streptococcus faecium) was also studied over the pH range 6--10. The resonance from bound methotrexate showed a constant chemical shift over the whole pH range studied, and it is inferred that in the complex the pteridine ring remains protonated to at least pH 10. The same result was obtained for the binary complex of aminopterin with the reductase and for either methotrexate or aminopterin in ternary complex with reductase and NADPH4. The latter is an inhibitor of the reductase competitive with NADPH. However, folate bound to the reductase in either the binary or the ternary complex shows the same protonation behavior as in the free state. The data indicate that the association constant for binding of methotrexate is increased enough when protonation of N-1 occurs to account for the enhanced binding of methotrexate as compared with folate.

Aminopterin↗

Non-histone chromatin proteins in human thymocytes and T lymphocytes from blood.

The composition of nuclear proteins from human thymocytes and T lymphocytes from peripheral blood was analyzed. Total thymocytes and total peripheral blood T lymphocytes differed markedly in non-histone chromatin proteins (both phosphorylated and non-phosphorylated), but did not differ in histones. When the cells were separated according to density, T-lymphocyte fractions with a close specific gravity showed restricted differences in non-histone chromatin patterns.

Cell Count↗

Early events in thymocyte activation. II. Changes in nonhistone chromatin proteins induced by a thymus-dependent human serum factor.

Previously, it has been shown that a human thymus-dependent serum factor (SF), isolated from peripheral blood and acting on precursors of mature T lymphocytes, induces an increase in the synthesis of cyclic AMP and proteins in thymocytes. We have now investigated the action of SF on the incorporation of 3H-leucine and 32P-orthophosphate into nuclear proteins of thymocytes after 15 to 240 min of culture. SF induced a rapid increase in the synthesis and phosphorylation of nuclear proteins, especially in the phosphorylated nonhistone chromatin proteins (P-NHCP). Electrophoretic patterns in polyacrylamide gels of the P-NHCP fractions, extracted from the chromatin of the stimulated cells, showed that proteins with m.w. higher than 50 x 10(3) were synthesized to a larger extent as compared with unstimulated cells. These data suggest that SF acts specifically on the synthesis of P-NHCP and may in this way control DNA-template activity.

Chromosomal Proteins, Non-Histone↗