PubMed Health⌕ Search

Biomedical subjects

F Montero

Publications and source records attributed to F Montero.

50 records · Page 3Linked to original sources

Kinetics of conformational changes in the globular head of calf thymus H1 upon tryptic digestion.

The influence of the N- and C-terminal tails on the conformation of the globular domain of histone H1 from calf thymus has been investigated by monitoring the changes in absorption far UV circular dichroism and fluorescence spectra due to the tryptic digestion of the molecule. The values of kinetic constants obtained for the time course of the reaction followed by different above mentioned techniques seem to indicate that whereas the relaxation in the tyrosine environment occurs due to the digestion of the polar tails, the alpha-helix content increases in the earlier phase of the digestion.

Animals↗

Rearrangement of nucleosomal components by modification of histone amino groups. Structural role of lysine residues.

Modification of nucleosomal particles from chicken erythrocytes with the reagents for protein amino groups acetic and dimethylmaleic anhydrides causes a rearrangement of nucleosomal components. Treatment with both reagents is accompanied by liberation of free DNA and formation of residual particles with anomalous histone composition. The residual particles obtained with acetic anhydride contain an excess of histones corresponding to the free DNA produced. In contrast, dimethylmaleic anhydride causes release of histones H1, H5, H2A and H2B and formation of residual particles deficient in these histones but containing an excess of H3 and H4 corresponding to the liberated DNA. Regeneration of the modified amino groups of nucleosomal preparations treated with dimethylmaleic anhydride is accompanied by reconstitution of nucleosomal particles with the sedimentation coefficient and composition of core histones of the original nucleosomes. This reconstitution does not occur when the released fraction containing histones H2A and H2B and free DNA is separated from the residual particles. The studied disassembly of nucleosomal particles obtained by specifically blocking lysine-DNA interactions with these reagents appears to indicate that lysine residues are essential for the binding of DNA to histones with formation of nucleosomal particles.

Animals↗

Contribution of histones H2A and H2B to the folding of nucleosomal DNA.

We have studied the structural properties of nucleosomal particles deficient in histones H2A and H2B produced by modification of histone amino groups with dimethylmaleic anhydride [Jordano, J., Montero, F., & Palacián, E. (1984) Biochemistry (preceding paper in this issue)]. Digestion with DNase I of residual particles containing only 15% of the original H2A . H2B complement produces only discrete DNA fragments no longer than 70 nucleotides. As compared with the original nucleosomes, thermal denaturation of the residual particles shows a decrease from 140 to about 90 in the number of nucleotide base pairs per particle that melt at the highest temperature transition as well as a drop in the temperature of this transition. Circular dichroism spectra of the residual particles give ellipticity values around 275 nm, much higher than those corresponding to the control nucleosomes, which appears to indicate a loss in the compact DNA tertiary structure. When regeneration of the modified amino groups of the residual particles takes place in the presence of the complementary fraction containing histones H2A and H2B, but not in its absence, nucleosomal particles with the structural properties of the original nucleosomes are reconstituted. Therefore, the structural change observed in the residual particles can be assigned to the lack of histones H2A and H2B and not to the modified amino groups of the histones present in the residual particles. The results are consistent with the stabilization by histones H2A and H2B of a DNA length of 50-70 base pairs per nucleosome.

Animals↗

Dissociation of single-stranded DNA from nucleosomes following modification with acetic anhydride.

Modification with acetic anhydride of nucleosomes from chicken erythrocytes at low ionic strength (less than 0.1 M NaCl) is accompanied by the formation of residual particles and the release of free DNA. This DNA has been identified as single-stranded by thermal denaturation, digestion with nuclease S1, and elution from hydroxyapatite. In contrast, if modification takes place at 0.6 M NaCl, the liberated DNA is mainly double-stranded. The release of the free energy stored in folded nucleosomal DNA, triggered by the weakening of lysine-DNA interactions which takes place upon modification, might be responsible for the observed denaturation of DNA at low ionic strength.

Acetates↗

Relaxation of chromatin structure upon removal of histones H2A and H2B.

Modification of chromatin from chicken erythrocytes with dimethylmaleic anhydride is accompanied by its solubilization and the dissociation of histones H1, H5, H2A and H2B. Histone H1 is the first to dissociate and H5 the last. After regeneration of the modified amino groups, residual chromatin preparations with different histone composition were studied by circular dichroism and thermal denaturation. In addition to the effects produced by the lack of histones H1 and H5, both techniques show a substantial relaxation of chromatin structure induced by the loss of histones H2A and H2B, which appear to play an important role in the superhelical folding of DNA.

Animals↗

Fluorescence of histones H1. A tyrosinate-like fluorescence emission in Ceratitis capitata H1 at neutral pH values.

We have examined the fluorescent properties of histones H1, and of some peptides derived from them, from calf thymus and from the fruit fly Ceratitis capitata. The fluorescent emission spectrum of folded histone H1 from C. capitata at neutral pH is characterized by a maximum at 303 nm and a shoulder at 340 nm. The overall quantum yields of fluorescence do not increase upon folding, although the fluorescence of the single tyrosyl residue of calf H1 is enhanced when the protein folds. As expected, the excitation maximum of calf H1 is shifted to longer wavelengths when the protein folds and its position does not depend upon the wavelength at which the fluorescence is observed. However, Ceratitis H1 exhibits two excitation maxima. The first corresponds to emission at 303 nm and it is slightly redshifted upon protein folding, whereas the second, which corresponds to emission at 340 nm, is displaced from 280 nm in the denatured protein to approximately 285 nm in the folded histone. This suggests that the two tyrosyl residues of the insect histone behave as independent fluorophores. The shoulder at 340 nm does not appear at pH 2, even when the protein is folded. Titration to neutral pH values results in the appearance of the shoulder, the process being characterized by a pK'a approximately equal to 3.7. The fluorescence spectrum of insect histone has been resolved into the contributions of the individual tyrosyl residues and the results suggest that the emission at 340 nm originates in a tyrosinate that may be formed in the excited state by proton transfer to the carboxylate anion of a glutamyl residue. The results obtained from these experiments have also aided in resolving the near-UV circular dichroism spectrum of insect histone (Barbero, J.L., Franco, L., Montero, F., and Morán, F. (1980) Biochemistry 19, 4080-4087) into the individual contributions of the tyrosyl residues.

Animals↗

C1 proteins: a class of high-mobility-group non-histone chromosomal proteins from the fruit fly Ceratitis capitata.

1. CM-cellulose chromatography of a fraction soluble in 5% perchloric acid from Ceratitis capitata chromatin yields three proteins, C1a1, C1a2 and C1b, which have been purified to electrophoretical homogeneity. 2. C1a1, C1a2 and C1b analyse like high mobility group (HMG) non-histone chromosomal proteins, although they do not exactly correspond with those from vertebrates. It is proposed that C1 proteins, as well as Drosophila D1 [Rodríguez Alfageme et al. (1980) Chromosoma, 78, 1-31] are representative of a class of insect-specific HMG proteins. Tryptic fingerprints show that C1a1 and C1a2 are very similar, but C1b is a somewhat distinct protein. Circular dichroism studies have shown that these preparations do not appreciably fold on increasing ionic strength. 3. The interactions between DNA and C1 proteins have been studied. These proteins precipitate DNA in 0.15 M NaCl, 0.015 M sodium citrate and the precipitation curves are cooperative. Soluble complexes between C1 proteins and DNA could be prepared in low ionic strength media and their thermal denaturation profiles obtained. C1 proteins do not destabilize DNA under the conditions used to prepare the complexes but the three proteins stabilize DNA to a different degree. From these studies it has been concluded that the association constant of C1b to DNA is smaller than that of C1a1 and C1a2.

Animals↗

Structural studies on histones H1. Circular dichroism and difference spectroscopy of the histones H1 and their trypsin-resistant cores from calf thymus and from the fruit fly Ceratitis capitata.

A peptide containing the globular region of the histone H1 from the fruit fly Ceratitis capitata has been isolated after limited tryptic digestion of insect H1. The composition of this trypsin-resistant core resembles that of the homologous peptide from calf thymus H1, although the insect H1 core possesses one cysteine, two tyrosines, one histidine, and more isoleucine and less glycine and leucine than the calf thymus H1 core. Circular dichroism measurements indicate that all the fragments that possess an ordered secondary structure (approximately 11% in both calf thymus H1 and Ceratitis H1) are present in the trypsin-resistant cores. Both calf thymus and Ceratitis H1 and their trypsin-resistant cores fold cooperatively on titration with NaOH, though the folding of the cores is less cooperative than that for the parentmolecules. On the other hand, salt-induced folding of both cores and intact molecules is noncooperative. The environment of the tyrosyl residues in both calf thymus and Ceratitis H1 has been studied by circular dichroism in the region 250-300 nm and by difference spectroscopy; their pKa' values have also been determined. The results suggest that one of the tyrosyl residues of Ceratitis H1 is buried in the hydrophobic core, in an environment similar to that of calf thymus tyrosine-72, while the second tyrosyl residue of the insect H1 molecule, which titrates with a lower pKa' value (approximately 9.30 in the absence of salt and approximately 9.80 in the presence of 0.3 M KF), is on the surface of the trypsin-resistant core. Due to the limited number of aromatic residues in the histone molecules, the above-mentioned techniques proved to be useful tools to study conformational transitions.

Amino Acids↗

Serum selenium concentration of a healthy northwest Spanish population.

Selenium (Se) is an essential element, cofactor for glutathione peroxidase (GSHPx) activity, whose deficiency may induce modifications in the cellular antioxidative status and induce the appearance of different diseases. Current views suggest that a serum Se concentration inferior to 45 micrograms/L may correlate with an increased risk of coronary hearth diseases, coronary atherosclerosis and cancer. Since the Se concentration in human blood varies between geographical areas, we initiated a study to evaluate the Se status in the general healthy population of Barcelona. Serum Se concentration was investigated in a random sample of 150 subjects (age range 18-70 yr) by graphite furnace atomic spectrometry (FLAAS). L'vov platform, Zeeman background correction, and other specifications of stabilized temperature platform furnace (STPF) concept were followed. The results show that in the general population of Barcelona, Se serum concentration ranges between 60 and 106 micrograms/L (X = 80.7 +/- 10 micrograms/L). These values can be considered within the safe limits, since no subject was found with a concentration lower than the threshold of 45 micrograms/L.

Adolescent↗

[Biofouling of heat exchange tubes].

We compared the biofouling behavior of different materials (admiralty brass, stainless steel, and titanium) commonly used to construct heat exchangers in thermoelectric plants. The incidence of film formation on the loss of heat during transference was assessed, and analyzed in terms of plant efficiency and corrosion, both general and localized development. Our results showed that the resistance of titanium and stainless steel to corrosion was similar, and much better than that of admiralty brass. Biofouling, however, was higher in the first two materials.

Biodegradation, Environmental↗

[Upper digestive hemorrhage in the inhabitants of high altitudes in Peru].

One hundred cases of upper gastrointestinal hemorrhage in peruvian highlanders were studied at a hospital in La Oroya (3850 meters above the sea level). On admission in all of them an esophagogastroduodenal fiberscope was performed to establish the diagnosis. Most of them were males (98%), between 30-39 years of age (38%) and presented at the same time hematemesis and melena (64%). After bleeding in 72% the hemoglobin was over 14 g%. As a whole the most frequent diagnosis were: gastric ulcer (33%). duodenal ulcer (23%) and erosive gastritis (23%). In those living between 3000-3500 m.a.s.l. duodenal ulcer had the highest incidence. At 3500 m.a.s.l. was gastric ulcer more frequent, followed by erosive gastritis. In 11% surgery was required and only in 27% it was necessary a blood transfusion. After bleeding 10% had an hemoglobin level over 20 g% and because of this they were considered as having Chronic Mountain Sickness, 4 of them with severe cardiorespiratory and consciousness disturbances required after the gastrointestinal hemorrhage, an immediate bleeding in order to compensate the patient, a completely unusual occurrence in general pathology but a peculiar treatment in these patients living at high altitudes of the peruvian Andes.

Adult↗