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Biomedical subjects

M Hogan

Publications and source records attributed to M Hogan.

At least 91 records · Page 5Linked to original sources

Copper(II).bleomycin, iron(III).bleomycin, and copper(II).phleomycin: comparative study of deoxyribonucleic acid binding.

The kinetics and mechanism of binding of Cu-(II).bleomycin, Fe(III).bleomycin, and Cu(II).phleomycin to DNA were studied by using fluorometry, equilibrium dialysis, electric dichroism, and temperature-jump and stopped-flow spectrophotometry. The affinity of Cu(II).bleomycin for DNA was greater than that of metal-free bleomycin but less than that of Fe(III).bleomycin. Cu(II).bleomycin exhibited a two-step binding process, with the slow step indicating a lifetime of 0.1 s for the Cu(II).bleomycin.DNA complex. Fe(III).bleomycin binding kinetics indicated the presence of complexes having lifetimes of up to 22 s. DNA was lengthened by 4.6 A/molecule of bound Cu(II).bleomycin and by 3.2 A/bound Fe(III).bleomycin but not at all by Cu(II).phleomycin, suggesting that both bleomycin complexes intercalate while the phleomycin complex does not. However, phleomycin exhibited nearly the same specificity of DNA base release as bleomycin. These results suggest that the coordinated metal ion plays a major role in the binding of metal-bleomycin complexes to DNA but that intercalation is neither essential for DNA binding and degradation nor primarily responsible for the specificity of DNA base release by these drugs.

Animals↗

Immune evasion by Schistosoma mansoni: loss of susceptibility to antibody or complement-dependent eosinophil attack by schistosomula cultured in medium free of macromolecules.

Schistosomula of Schistosoma mansoni, recovered either after penetration of cercariae through isolated rat skin or by mechanical transformation of cercariae, become fully resistant after 24-48 h of culture to damage by human blood eosinophils in the presence of human anti-schistosomular sera. Cultured schistosomula are also shown to lose their susceptibility to attack by human eosinophils in the presence of human complement. This resistance is related to the simultaneous reduction of the ability of human anti-schistosomular antibodies and human complement component C3 to bind to the surface of the cultured larvae. The development of insusceptibility to antibody, complement and eosinophil-mediated attack does not require the acquisition by the schistosomula of a protective coat of host or other macromolecules, since it is achieved in chemically defined culture medium free of serum and macromolecules. This supports the hypothesis that schistosomula undergo intrinsic changes which render them insusceptible to immune attack.

Animals↗

Renal tumors in rats given trisodium nitrilotriacetic acid in drinking water for 2 years.

One hundred and ninety-six albino male rats [Crl/COBS CD (SD) BR] were given 1,000 ppm trisodium nitrilotriacetic acid (NTA) in drinking water for 2 years. One hundred and ninety-two control rats were given water without NTA. Animals that had a palpable mass or that appeared clinically ill were killed. All survivors were killed at 704 days. A significantly (P less than 0.05) higher proportion of the NTA-treated rats vs. 11.2% of the controls). The largest difference between the NTA-treated rats and the controls in tumor incidence was associated with renal adenoma. The NTA-treated group contained 25 rats with renal adenomas and 4 with renal adenocarcinomas. Only 5 control rats had renal adenomas; none had renal adenocarcinomas. No statistically significant differences were observed for any of the other tumor types among the NTA-treated rats and the controls. The overall incidence of renal tubular cell hyperplasia and nephritis was similar in the treated and control groups. However, a significantly greater number of NTA-treated rats had more severe grades of hyperplasia. Thus NTA when administered continuously in drinking water at a concentration of 1,000 ppm is tumorigenic to the rat kidney.

Acetates↗

Interaction of netropsin and distamycin with deoxyribonucleic acid: electric dichroism study.

We report dichroism and equilibrium binding studies of netropsin (Net) and distamycin A3 (Dist) binding to deoxyribonucleic acid (DNA). We show that at low degrees of binding (r) to calf thymus DNA, Net induces a considerable increase in the apparent DNA length (14 A/drug molecule bound), closely analogous to the results reported earlier for Dist. In addition, we show that chicken erythrocyte DNA shows length changes similar to those of calf thymus DNA upon distamycin binding. DNA length reaches a maximum at 1 bound drug/20-30 base pairs and then decreases to its initial value by r = 0.1. This effect is not seen for two other DNAs with nearly identical A + T base pair content and may therefore arise from the details of base sequence or base modification in eukaryotic DNA. We also show that Dist binding to calf thymus DNA at low r values is positively cooperative and shows a DNA affinity which is primarily nonionic. We demonstrate that independent of the DNA to which they are bound, the Net and Dist transition moments are inclined by 43 +/- 3 degrees from the helix axis, consistent with the idea that both drugs bind inside and parallel to the DNA small groove. From dichroism measurements, we show that the conformational change induced in calf thymus DNA by Dist does not kink or bend the helix and does not substantially alter the average inclination of the bases. Finally, we outline a statistical mechanical theory for calculation of binding isotherms when binding is coupled to a DNA structural change.

Animals↗

Unfolding of nucleosomes by ethidium binding.

We report spectroscopic, hydrodynamic, and biochemical studies on the complex of ethidium bromide with 140 base pair nucleosomal core particles. Fluorescence titration indicates a greater intrinsic affinity of ethidium for nucleosomes than for DNA, and fluorescence depolarization measurements imply increased immobilization of ethidium bound to nucleosomes, but with more extensive dye-dye energy transfer compared to DNA-bound dye. Ethidium intercalated into DNA in nucleosomes has a limiting reduced linear dichroism of -0.45 at 320 nm and -0.25 at 530 nm. Both the energy transfer and dichroism results are consistent with clustering of the nucleosome-bound dye molecules. Electric dichroism measurements and ultracentrifugation studies reveal that structural distortion of the nucleosome accompanies ethidium binding, occurring in the range of r (ethidium residues per base pair) values from 0.02 to 0.06. The distortion transition is characterized by an increase in the negative limiting reduced dichroism from 0.29 to 0.45 at 265 nm, an increase in the field-induced viscosity-limited rotational orientation time from 0.8 to 3 mus, and a decrease in sedimentation coefficient from 10.5 to 8.2 S. The complex was modeled hydrodynamically as a cylinder of 335-A length and 67-A diameter, containing 1.4 superhelical turns of DNA. Dimethylsuberimidate cross-linked nucleosomes, or native nucleosomes in the presence of Mg2+, bind ethidium weakly and are not distorted. The periodicity of cutting sites produced by DNase II digestion of nucleosomes remains constant as ethidium is added, but the bandwidth increases. A thermodynamic model is proposed to interpret the binding isotherm, based on enhancement of drug binding affinity due to release of superhelical stress in the nucleosome-ethidium complex.

Base Composition↗

The adherence of human neutrophils and eosinophils to schistosomula: evidence for membrane fusion between cells and parasites.

Human neutrophils and eosinophils adhere to the surface of schistosomula of Schistosoma mansoni that have been preincubated with antischistosomular sera with or without complement. Neutrophils are seen to form small (< 0.5 micrometer), heptalaminar and large (5-8 micrometer), pentalaminar fusions with the normal pentalaminar parasite surface membrane. By freeze-fracture techniques, attachment areas 5-8 micrometer in diameter are seen to form between neutrophils and schistosomula. These areas have three zones--an edge and two centrally located areas, one of which is rich and one of which is poor in intramembrane particles (IMPs). The edge zone is continuous around the attachment areas and is usually composed of a skip-fracture that passes out of the schistosomular outer membrane into the inner membrane. In some cases, the edge zone is made up of a string of IMPs. The IMP-rich central areas have an IMP concentration similar to that of unattached neutrophil membranes, are raised off of the surface of the schistosomulum, and have two normal schistosomular membranes underneath indicating that they are indeed unattached. the IMP-poor central areas are composed of a fused or hybrid membrane that is continuous with the neutrophil plasma membrane but that bears the same spatial relationship to the schistosomular inner membrane that the normal outer membrane does. Similar changes are seen in samples prepared with glycerination. Eosinophils generally do not fuse with the schistosomular outer membrane but, instead, discharge their granular contents onto the surface of the schistosomula and appear to adhere to the parasite through this discharged material. It is suggested that schistosomula have a capability to fuse with mammalian cells and that this fusion proceeds from a fusion of the outer leaflets to a fusion of the bilayers, as appears also to be the case in other systems.

Animals↗

Partial and complete detachment of neutrophils and eosinophils from schistosomula: evidence for the establishment of continuity between a fused and normal parasite membrane.

Neutrophils and eosinophils adhering to the surface of schistosomula of Schistosoma mansoni have been partially or completely detached with hypertonic sucrose or by pipetting. The sucrose-treated neutrophils are attached only in areas where there are pentalaminar fusions between the neutrophil and tegumental membranes, suggesting that these fusions attach the cells to the parasites. Pipetting breaks many of the attached cells. In thin section, the tegumental membrane underlying these cells is seen to be pentalaminar. By freeze-fracture techniques, modified attachment areas are found. The edge zone often appears as a single strand of intramembrane particles (IMPs) on the P2 face and as a groove on the E2 face. The edge zone may also have large discontinuities, in which case it no longer separates membrane faces of unequal IMP density from one another. In addition, the IMPs on the IMP-rich areas become aggregated and surrounded by craters in the membrane. These experiments suggest that the fusions may be the mechanism by which the parasite acquires some host membrane components on its surface. On the other hand, eosinophil plasma membranes are seen adhering to a layer of electron-dense material on the parasite after the cells have been disrupted by pipetting. This suggests that eosinophils adhere to the parasite surface through their discharged granule material and not by membrane fusions.

Animals↗

Interactions between human eosinophils and schistosomula of Schistosoma mansoni. II. The mechanism of irreversible eosinophil adherence.

Previous work (1)(1) has shown that normal human eosinophils show a preferential capacity, in comparison with neutrophils, to bind to antibody- coated schistosomula of Schistosoma mansoni. This effect is attributable to a temperature-dependent function of the eosinophil which renders its binding stable and irreversible by aggregated gamma globulin or Staphylococcus aureus protein A. In contrast, the binding of neutrophils is readily reversible by these agents. It has now been shown that the differences observed between eosinophils and neutrophils is a property of their interaction with living schistosomula. When dead or artificially damaged schistosomula were tested, neutrophils showed a markedly enhanced capacity to adhere, in both the presence and absence of anti-chistosomular serum. Subsequent experiments were designed to test the hypothesis that the strong, stable binding of eosinophils was attributable to degranulation, with release of granule contents which would then serve as ligands to bind the cell to the organism. First, an enhanced adherence both of eosinophils and of neutrophils could be demonstrated in the presence of eosinophil major basic protein (MBP) or of protamine, a high molecular weight cation. Second, the binding of eosinophils induced by concanavalin A (Con A) was found to differ markedly from that induced by antischistosomular serum. Con A-mediated binding of eosinophils was fully reversible by alpha-methyl-mannoside, was not associated with damage to the organism, and did not lead to degranulation of the cell, as estimated by measuring the release of MBP into the culture supernate. However, induction of degranulation of concanavalin A-bound eosinophils, but not of neutrophils, with the calcium ionophore A23187 converted the reaction into one which was no longer reversible by alpha- methylmannoside and in which damage to the organism now did occur. These findings support the hypothesis that the stable binding of eosinophils is associated with degranulation, a process which may contribute to the preferential capacity of this cell to mediate antibody-dependent damage to schistosomula.

Antibodies↗

Transmission of allosteric effects in DNA.

Binding of distamycin induces a cooperative transition of calf thymus DNA to a new form with higher affinity for the drug and altered structural properties.

Allosteric Regulation↗

Binding of bleomycin to DNA: intercalation of the bithiazole rings.

At pH 5.5, binding of bleomycin relaxed supercoiled ColE1 DNA without breaking it. Binding of tripeptide S, a fragment of the drug containing the bithiazole rings, also relaxed and then recoiled supercoiled DNA, at pH 5.5 and at pH 8.0, where bleomycin is normally active. The unwinding angle was 12 degrees. Both compounds lengthened linear DNA by 3.1 A per molecule bound, and linear dichroism (303--315 nm) of bleomycin bound to linear DNA oriented in an electric field indicated the presence of a chromophore making an angle of 59--61 degrees with the helix axis. These results strongly suggest that bleomycin binding to DNA involves intercalation of the bithiazole rings. In 0.1 M Na Cl at pH 8, supercoiled ColE1 DNA was broken at a rate 50% greater than relaxed closed circular ColE1 DNA. Since supercoiling increases the affinity of DNA for intercalators, this result suggests that intercalative binding is involved in bleomycin-induced breakage of DNA.

Bleomycin↗

Structure of DNA within three isometric bacteriophages.

This paper describes a model for the structure of DNA contained in three morphologically similar bacteriophages--T7, P22 and phiCd-1--based on the transient electric dichroism of intact phage. The reduced dichroism of each of the phages at perfect orientation is within the range +0.12 to +0.19. Assuming that the phage orientation axis is that which passes from the apex through the tail, the measured dichroism suggests that DNA is wrapped in closely packed, co-axial solenoids with the axis of the solenoids tipped 43.5 degrees +/- 2.5 degrees from the orientation axis of the phage. All three phages show a large permanent dipole moment, with respective values of 5600, 200,000 and 500,000 Debye for T7, phiCd-1 and P22. The radius of the equivalent sphere for the three phages calculated from the rotational relaxation time for the rise of dichroism is in agreement with birefringence and electron microscope observations. The circular dichroism spectra of all three bacteriophages indicate that the local DNA helicity is similar in each case.

Coliphages↗

Transient electric dichroism studies of nucleosomal particles.

We report transient electric dichroism experiments on nucleosomal core particles containing 140 and 175 base pairs of DNA, and on spacerless dinucleosomes. The results indicate that all particles posses a permanent dipole moment. The orientation time of 140 base pair nucleosomes implies an estimated maximum dimension of a = 130 A (a must be at least 111 A), consistent with the disk model. The maximum dimension of the spacerless dinucleosome is estimated to be about 290 A (at least 180 A), ruling out a structure in which two disks are stacked directly on top of each other. The reduced dichroism amplitude indicate that the DNA superhelix axis in nucleosomes aligns perpendicular to the electric field, as expected for a dipole moment directed along a C2 symmetry axis across the disk diameter. Nucleosomes containing 175 base pairs of DNA show a substantially larger dichroism amplitude that do 140 base pair nucleosomes. In the context of the disk model, this result is shown to be consistent with 100 base pairs of DNA per superhelical turn, but not with 80 base pairs per turn.

Animals↗

Physical studies of nucleosome assemble.

Biochemical, spectroscopic, and hydrodynamic studies were performed on the reconstituted complex of 140 base pair DNA and the arginine-rich histone tetramer (H3/H4)2. The histones bind to DNA in a 1:1 molar ration to form a stable particle which orients in an electric field with a rotational correlation time of 6.3 mus and a limitign reduced dichroism of --0.74. The complex was modeled hydrodynamically as a cylinder of dimensions 450 X 80 X 80 A containing approximately 1.5 superhelical turns. Addition of the lysinerich histones to this complex cause a condensation of the structure and results in physical properties nearly identical with those of a native nucleosomal particle.

Animals↗