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Monte Carlo simulation of the production of short DNA fragments by low-linear energy transfer radiation using higher-order DNA models.

A realistic DNA target model has been developed and implemented in the biophysical simulation code PARTRAC. It describes five levels of the B-DNA structure (nucleotides, DNA helices, nucleosomes, chromatin fiber structure and chromatin fiber loops) on an atomic level for the whole genome inside a mammalian cell nucleus. The model is capable of describing regular solenoidal, crossed-linker or zigzag structures as well as repeating stochastic arrangements of nucleosomes in the chromatin fiber. Electron tracks resulting from monoenergetic electrons with energies up to 100 keV and from 220 kVp X rays, starting at random positions in the cell, were superimposed on four DNA target models with different chromatin fiber structures. The yields of SSBs, DSBs and short single- and double-stranded DNA fragments were determined from spatial coincidences with strand atoms. Two parameters of the model-the energy necessary to create an SSB and the distance between two breaks that would be scored as a DSB-were adapted to equate simulated and measured strand break yields after X irradiation of human fibroblast cells. The integral fractions of short single- and double-stranded fragments were rather similar for all condensed chromatin fiber structures; they agreed with experimental data for DNA fragments below 2 kbp. The simulated fragment size distributions in the range from 0.1 to 1.5 kbp reflected the fiber structure irrespective of strandedness or electron energy. The distributions using a stochastic arrangement of nucleosomes in the chromatin fiber were found to be in better accordance with experimental data than those obtained with regular fiber structures.

DNA↗

[Analysis of distribution of ligands adsorbed on DNA fragments].

The effect of finite fragment length on the distribution pattern of bound protein along the DNA fragment is considered. If the size of the binding site for a ligand on DNA is comparable with the length of the DNA fragment fluctuations in the amount of ligand bound to the fragment create some difficulties for evaluating the distribution pattern of ligand on DNA. A mathematical approach is developed which enables one to calculate the distribution pattern of ligand on DNA provided that the number of bound ligand on the DNA fragment is known. Expression are also obtained to treat the effects of fluctuations in the number of ligand molecules bound to the DNA fragment on the distribution pattern of ligand. A new procedure is proposed which may be useful for locating the preferable binding sites for ligand on DNA on the basis of footprinting experiments.

Adsorption↗

Adaptive weighted least squares method for the estimation of DNA fragment lengths from agarose gels.

The size of DNA fragments is most frequently estimated from their electrophoretic mobilities. Agarose gels are used to estimate the size of DNA fragments ranging from a few hundred nucleotides to more than 20 kbp. The common practice when estimating the unknown fragment sizes is to plot the log of the size of molecular weight standards against their mobility and read the values of unknowns from this graph. However, due to perturbations in the gel, such plots often show pronounced curvature which may introduce significant subjectivity into the interpolation process. We present a new method "adaptive weighted least squares (AWLS)" based on the significance test to choose the order of polynomial. We compare this with the method introduced by Schaffer based on the modification of the Southern method. The results obtained by AWLS are significantly better than the method introduced by Schaffer. Different lanes are tested for consistency.

DNA↗

[A method of selective PCR-amplification of genomic DNA fragments (SAGF method)].

A method for separating into definite sets of a complex mixture of fragments obtained by DNA cleavage with IIS- or IIN-types of restriction endonucleases producing single-stranded termini of different sequences at the fragment ends has been developed. The method is based on the ligation of short double-stranded adapters with single-stranded termini complementary to the termini of a selected set of fragments followed by PCR-amplification with the primer which represents a strand of the adapters. Using endonucleases BcoKI and Bli7361 recognizing sequences CTCTTC and GGTCTC and producing three- and four-nucleotide 5'-termini, respectively, it has been shown that amplification of a set of fragments occurs only when the adapters are attached to DNA fragments with DNA-ligase. Several applications of the SAGF-method are suggested: for obtaining individual bands in DNA fingerprinting; for reducing the kinetic complexity of DNA in the representational difference analysis (RDA method) of complex genomes; for cataloguing DNA fragments, and for constructing physical genomic maps.

Animals↗

Nuclease activities and DNA fragmentation during programmed cell death of megagametophyte cells of white spruce (Picea glauca) seeds.

The haploid megagametophyte of white spruce (Picea glauca) seeds undergoes programmed cell death (PCD) during post-germinative seedling growth. Death of the megagametophyte storage parenchyma cells was preceded by reserve mobilization and vacuolation. TUNEL (terminal deoxynucleotidyltransferase-mediated dUTP nick-end labeling)-positive nuclei indicated that the first megagametophyte cells to die were those closest to the radicle at the micropylar end of the seed as well as those that comprised the most peripheral and innermost layers at the chalazal end of the seed. The death process was accompanied by nuclear fragmentation and internucleosomal DNA cleavage and the sequential activation of several nucleases. The latter comprised at least two groups: those induced relatively early during post-germinative seedling growth, that had pH optima in the neutral range (33, 31, 17 and 15 kDa), and those induced later that had pH optima in the acidic range (73, 62, 48, 43 and 29 kDa). Activities of all of the nucleases were stimulated by Ca2+, Mg2+ and Mn2+; only the nucleases active at neutral pH were inhibited by Zn2+. The temporal pattern of induction of the neutral and acidic nucleases may suggest that the latter function after tonoplast rupture.

Apoptosis↗

Differential regulation of phosphatidylserine externalization and DNA fragmentation by caspases in anticancer drug-induced apoptosis of rat mammary adenocarcinoma MTLn3 cells.

Caspase activation is a central event in the execution phase of apoptosis and is associated with phosphatidylserine (PS) externalization and DNA fragmentation. We investigated the role of caspase activity in anticancer drug-induced PS externalization and DNA fragmentation in MTLn3 cells. Caspase activation (DEVD-AMC cleavage) occurred in a time- and concentration-dependent manner after exposure to doxorubicin, in association with cleavage of poly(ADP) ribose polymerase and protein kinase C delta, two caspase-3 substrates. Caspase activation was closely followed by oligonucleosomal DNA fragmentation and PS externalization as determined by flow cytometric analysis. Similar observations were made for etoposide and cisplatin. Inhibition of caspases with zVAD-fmk inhibited almost completely doxorubicin-induced DNA fragmentation as well as proteolysis of protein kinase C delta. In contrast, PS externalization induced by doxorubicin was only partly affected by caspase inhibition. Flow cytometric cell sorting demonstrated that DNA fragmentation in the remaining PS positive cells after doxorubicin treatment in the presence of zVAD-fmk was fully blocked. In conclusion, these data indicate that while DNA fragmentation in anticancer drug-induced apoptosis of MTLn3 cells is fully dependent on caspase activity, PS externalization is controlled by both caspase-dependent and caspase-independent pathways.

Adenocarcinoma↗

Tight interaction between densely methylated DNA fragments and the methyl-CpG binding domain of the rat MeCP2 protein attached to a solid support.

In a previous report we have found that a number of short DNA fragments methylated at CpG sequences bound more tightly to a methyl-CpG binding column than DNA fragments having a larger number of methyl-CpG sequences. The column consists of a polypeptide comprising the DNA binding domain of the rat MeCP2 protein attached to a solid support. In the present study, we have investigated the features of short DNA fragments which bind tightly to a methyl-CpG binding column. Tight binding was observed when the DNA fragment had a high density of methyl-CpG sequences. Many of these fragments, derived from human genomic DNA, contained Alu repeated sequences supporting the previous observation that the highly-abundant Alu sequences are highly methylated. Our results suggest that methyl-CpG density is an important factor in the interaction between DNA fragments and the DNA binding domain of MeCP2 attached to a solid support.

Animals↗

Sperm DNA fragmentation in a random sample of the Spanish boar livestock.

A collection of 180 chilled boar semen samples, randomly chosen from stocks currently used for routine characterization of standard seminal quality, were studied for DNA fragmentation status using the sperm chromatin dispersion test and the DNA fragmentation index (DFI: percent of abnormal cell versus normal cells for DNA fragmentation) was determined. Values for sperm motility, acrosome status, coiled tails and abnormal head morphology, including presence and position of cytoplasmic droplets were also obtained. The DFI in the whole sample presented a wide range of variation with values oscillating between practically 0% and 47.95% and do not fit to a normal distribution. The most frequent classes (83.3%) presented a DFI lower than a 5%. Significant correlations between sperm DNA fragmentation and sperm motility, acrosome status, frequency of distal droplets, coiled tails and abnormal head morphology, were not observed. However, the presence of proximal cytoplasmic droplets showed a significant correlation with the level of DNA fragmentation observed in the ejaculated spermatozoa.

Acrosome↗

The role of DNA fragmentation in apoptosis.

The formation of distinct DNA fragments of oligonucleosomal size (180-200 bp lengths) is a biochemical hallmark of apoptosis in many cells. Recent observations also suggest large DNA fragments and even single-strand cleavage events occur during cell death. These observations have raised many questions. What are the types of DNA cleavage observed during apoptosis? What are the nucleases involved? And what is the role of these nucleolytic events in apoptosis?

Journal Article↗

Features of DNA fragments obtained by random amplified polymorphic DNA (RAPD) assays

Random amplified polymorphic DNA (RAPD) fragments were prepared from samples of Calonectris diomedea (Cory's shearwater, Aves) and Haemonchus contortus (Nematoda) DNA by polymerase chain reaction (PCR) using decamers containing two restriction enzyme sites as primers. Six of 19 studied RAPD fragments probably originated from traces of commensal microorganisms. Many rearranged fragments, absent in the original genomic DNA, were synthesized and amplified during the processing of all the DNA samples, indicating that interactions occur within and between strands during the annealing step of PCR. The model of interactions between molecular species during DNA amplification with a single arbitrary oligonucleotide primer was modified to include nested primer annealing and interactions within and between strands. The presence of these artefacts in the final RAPD have a major effect on the interpretation of polymorphism studies.

Journal Article↗

Separate metabolic pathways leading to DNA fragmentation and apoptotic chromatin condensation.

Apoptosis is the predominant form of cell death observed in a variety of physiological and pathological conditions such as cancer involution, insect metamorphosis, the development of the immune and nervous systems, and embryogenesis. The typical nuclear changes taking place in apoptotic cells include extensive condensation of chromatin and internucleosomal DNA fragmentation into units of 200 base pairs. However, the mechanisms responsible for both chromatin condensation and DNA fragmentation have yet to be elucidated. In this study, micrococcal nuclease and the divalent cations, Ca2+ and Mg2+, were applied to isolated nuclei in an attempt to reconstitute in vitro the digestion of genomic DNA associated with apoptosis. Micrococcal nuclease was found to induce a typical pattern of DNA fragmentation, but did not give rise to chromatin condensation, whereas Ca2+/Mg2+ induced both chromatin condensation and DNA fragmentation in isolated mouse liver nuclei. When the endonuclease inhibitor ZnCl2 was used, the DNA fragmentation induced by Ca2+/Mg2+ in nuclei could be completely inhibited, but chromatin condensation still occurred. For comparison, intact liver cells were treated with valinomycin, a potassium ionophore, which gave rise to an atypical cell death, with chromatin condensation appearing without DNA fragmentation. Our results suggest that endonuclease activation in apoptosis is neither necessary nor sufficient to induce chromatin condensation, and that DNA fragmentation and chromatin condensation may be triggered through separate pathways during apoptosis.

Animals↗

Role of Mg2+ and Ca2+ in DNA bending: evidence from an ONIOM-based QM-MM study of a DNA fragment.

The binding of hydrated Mg2+ and Ca2+ ions with a DNA fragment containing two phosphate groups, three sugar units, and a G.C base pair is modeled in the anion and dianion states using a three-layer ONIOM approach. A monodentate binding mode was the most stable structure observed for both the ions in the anion model. However, the interactions of Mg2+ and Ca2+ with the dianion model of the DNA fragment gave rise to a large structural deformation at the base pair region, leading to the formation of "ring" structures. In both anion and dianion models, Mg2+-bound structures were considerably more stable than the corresponding Ca2+-bound structures. This feature and the formation of ring structures in the dianion models strongly supported the higher coordination power of the Mg2+ toward DNA systems for its compaction. The charge of the DNA fragment appeared to be crucial in deciding the binding strength as well as the binding mechanism of the metal ions. To the best of our knowledge, this is the first theoretical investigation of the interaction of a comparatively larger DNA model system with the biologically important Mg2+ and Ca2+ ions.

Base Pairing↗

Natural killer cells and cytotoxic T cells induce DNA fragmentation in both human and murine target cells in vitro.

DNA fragmentation induced by cytolytic lymphocytes in human erythromyeloid cell line K562 and murine T lymphoma cell line YAC-1 was investigated by means of agarose gel electrophoresis. Murine natural killer (NK) and cytotoxic T (Tc) cells induced DNA fragmentation in YAC-1 cells, with the fragments being approximately multiples of 180 bp. More significantly, murine NK cells can induce a similar pattern of DNA fragmentation in human K562 cells. Therefore, cytolytic lymphocytes can induce apoptosis or programmed cell death in human target cells.

Animals↗

DNA fragmentation and morphological changes in apoptotic human lymphocytes.

Cell suspensions enriched in cells at various stages of apoptosis were obtained by separation of irradiated human peripheral blood lymphocytes on density gradients at different post-irradiation times. The state of DNA fragmentation in the cells was determined by comet assay and pulsed field gel electrophoresis. The morphologically distinguishable features of apoptosis such as chromatin condensation and cell shrinkage correlated with discrete stages of DNA fragmentation. It was found that >/=50 kbp fragmentation of DNA occurs already in cells of normal density whereas the subsequent DNA fragmentation onto fragments <50 kbp occurs in parallel with cell shrinkage and simultaneous increase in cell density. The observed stages of DNA fragmentation seem to be separated in time that could allow in case of abortive apoptosis formation of chromosomal aberrations.

Apoptosis↗

Analysis of DNA fragmentation in human uterine cervix carcinoma HeLa S3 cells treated with duocarmycins or other antitumor agents by pulse field gel electrophoresis.

Pulse field gel electrophoresis using a contour-clamped homogeneous electric field was applied for the analysis of DNA-fragmenting activity of antitumor agents towards human uterine cervix carcinoma HeLa S3 cells. Duocarmycins (DUMs), novel antitumor antibiotics with ultrapotent cell growth-inhibitory activities, caused DNA fragmentation at 10 times their IC50 values at 2 h exposure. At 100 times their IC50 values, the size of the smallest fragments was about 245 kilobase pairs (kbp). DUMA, DUMB1 and DUMB2 exhibited similar DNA fragmentation patterns, suggesting similar action mechanisms. DNA fragmentation was also detected in cells treated with radical producers, intercalators and topoisomerase inhibitors. Two bands of about 1800 and 1500 kbp were commonly detected in the cells treated with DUMs and these agents. In addition, fragments of about 900 kbp were detected in the cells treated with a topoisomerase inhibitor, 4'-(9-acridinylamino)methane-sulfon-m-anisidine, and fragments in the broad size range between 700 and 245 kbp in the cells treated with radical producers, bleomycin and neocarzinostatin. DUMs showed a characteristic DNA fragmentation pattern, since both types of fragments induced by the topoisomerase inhibitor and the radical producers were simultaneously detected, suggesting a novel mode of interaction with DNA. DNA-crosslinking agents and mitotic inhibitors did not induce DNA fragmentation under these conditions. The pulse field gel electrophoresis is potentially useful for characterizing DNA-cleaving activity of various antitumor agents at the cellular level.

Antibiotics, Antineoplastic↗

Occurrence of apoptotic DNA fragmentation in quiescent and proliferating cells in human endometrial adenocarcinoma tissues and the influence of apoptosis-suppressing effects of bcl-2 products.

In situ estimation of DNA fragmentation by the nick end labelling (NEL) method, and immunohistochemical examination of Ki-67 proliferative antigen and bcl-2 products in human endometrial adenocarcinoma tissues were performed to provide answers to the following two questions; a) does apoptotic DNA fragmentation occur specifically in quiescent cells or in proliferating cells or randomly in both?, b) does the bcl-2 product exert its apoptosis-suppressing effects differentially on carcinoma cells depending on their cell cycle condition?. Serial sections, one micrometer in thickness, from formalin-fixed and paraffinembedded tissues of 9 cases of human endometrial adenocarcinoma were examined. Apoptotic DNA fragmentation was observed in both quiescent (Ki-67 negative) and proliferating (Ki-67 positive) cells. Bcl-2 product-positive tumor cell islands tended to be NEL negative, although a few but non-negligible number of carcinoma cells, including both Ki-67 positive and negative ones, were NEL positive. These results indicate that, at least in human endometrial adenocarcinomas, apoptotic DNA fragmentation and bcl-2 product-independent (DNA) fragmentation occurs non-specifically with respect to the cell proliferation status. Further, the results suggest an altered regulation of cell death processes in human solid tumor tissue in vivo.

Aged↗

DNA fragmentation in ischemic core and penumbra in focal cerebral ischemia in rats.

Although apoptotic cell death has been suggested to be involved in ischemic injury of the brain, the precise mechanisms of ischemic neuronal cell death are unknown. Here, we examined the biochemical feature of apoptosis (i.e. DNA fragmentation) in male spontaneously hypertensive rats (5-7 months old) subjected to photothrombotic distal middle cerebral artery (MCA) occlusion. After MCA occlusion, the brain was cut in a cryostat to produce a standard coronal block and samples were dissected from the regions corresponding to the ischemic core, penumbra and contralateral control areas. Changes in cerebral blood flow (CBF) were monitored at 1 mm posterior and 2-4 mm lateral to the bregma by means of a laser-Doppler flowmetry. After MCA occlusion, CBF was decreased to 72+/-18 (+/-S.D.), 50+/-14, and 35+/-11% of the control values at 2, 3, and 4 mm from the midline, respectively. DNA fragmentation characteristics of apoptosis were examined in these samples by conventional and pulse-field gel electrophoresis. On the conventional gel electrophoresis, nucleosomal DNA fragmentation was detected in the penumbral zone at 6 h after MCA occlusion. Large DNA fragments of 50 and 20 kbp were detected in the penumbral zone and also in the ischemic core region at 3 h after distal MCA occlusion. The large DNA fragments seen on the pulse-field gel elecrophoresis were further degraded to small DNA fragments at 6 h after MCA occlusion in the penumbral zone but not in the core regions. The evolving DNA fragmentation was observed between 3 and 6 h after the onset of brain ischemia in the penumbra, suggesting that apoptosis may contribute to the development of ischemic infarction.

Animals↗