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Internucleosomal DNA fragmentation in cultured cells under conditions reported to induce apoptosis may be caused by mycoplasma endonucleases.

DNA fragmentation is a common biochemical hallmark of apoptosis. It is catalyzed by endogenous Ca2+, Mg(2+)-dependent endonuclease(s). Although the exact identity of the apoptotic endonuclease is still a matter of debate, a number of candidate nucleases have been proposed like NUC18, DNase II and DNase I. Relatively large amounts of nucleases are also expressed by mycoplasmas, cell wall-less bacteria of the class Mollicutes, which are found as contaminants in up to 45% of the continuous cell lines in current use. In order to clarify the effect of these pathogens on the investigation of apoptosis in cell culture systems, we looked for biochemical markers (DNA fragmentation, nuclease expression) and morphological changes characteristic of apoptosis (cell shrinkage, chromatin condensation, apoptotic bodies) in Mycoplasma hyorhinis-free and -infected cultures of the human pancreatic adenocarcinoma cell line PaTu 8902 and of mouse NIH 3T3 fibroblasts. For that purpose we employed cells cultured under standard conditions and cells exposed to the protein synthesis inhibitor cycloheximide, which is known to induce apoptosis in various cell systems. After exposure to cycloheximide only the mycoplasma-positive cells exhibited internucleosomal DNA degradation. In contrast, nuclease activities in the molecular range of 47 to 54 kDa were detected in cell homogenates and culture supernatants of infected cultures of both control and cycloheximide-treated cells, whereas mycoplasma-free cultures were nuclease-negative. The expression of the nucleases and the cycloheximide-induced DNA fragmentation were suppressed by the prokaryote-specific protein synthesis inhibitor chloramphenicol. Moreover, partially purified nucleases from supernatants of infected cells were able to cleave the DNA of isolated substrate nuclei at internucleosomal sites. These data indicate that DNA ladder formation in cell culture systems can also be caused by mycoplasmal nucleases which apparently penetrate the host cells after cycloheximide treatment or more generally after cellular stress. Therefore, internucleosomal DNA fragmentation in established cell lines has to be regarded with care, unless mycoplasmal infection can be excluded, or the existence of endogenous endonucleases can be proven. The presence of endonucleolytic activities of about 47 to 54 kDa molecular mass has now to be regarded as highly indicative of contaminations with M. hyorhinis. In contrast, the expression of an apoptotic morphology was not restricted to infected cells; in both mycoplasma-free and -contaminated cultures, cells with condensed chromatin were observed after staining with the DNA binding dye Hoechst 33342. Electron microscopic studies revealed that most of the cells containing compacted DNA were phagocytosed by unaffected fellow cells. Presumably because of the relatively long exposure (72 h) to cycloheximide we also observed secondary necrosis as indicated by the parallel occurrence of morphological characteristics of apoptosis (chromatin condensation) and necrosis (loss of membrane integrity and organelle swelling).

3T3 Cells↗

Interaction of bleomycin with a bent DNA fragment.

The interaction of bleomycin with a kinetoplast DNA fragment has been examined using various footprinting techniques. This DNA adopts a bent structure and displays an unusually low gel mobility on account of its phased runs of adenines. The bleomycin-cobalt complex increases the mobility of this DNA fragment, in contrast with other DNAs which show a decreased rate of gel migration, suggesting that the antibiotic removes DNA bending, possibly via an unwinding mechanism. Removal of the bending is confirmed by hydroxy-radical footprinting which produces a more even ladder of bands in the presence of the ligand. Cleavage by bleomycin is at the sequence G-pyrimidine, though not all such sites are affected to the same extent and some cutting is found at GA and GG. DNase I footprinting confirms the antibiotic-binding sites but reveals that some strong cleavage sites do not yield footprints. Bleomycin renders adenines on the 3' side of its cleavage sites (GT, GC and GA) hyper-reactive to diethyl pyrocarbonate.

Base Sequence↗

Erythropoietin activates caspase-3 and downregulates CAD during erythroid differentiation in TF-1 cells - a protection mechanism against DNA fragmentation.

The involvement of caspase-3 and its failure in the induction of DNA fragmentation during erythropoiesis were investigated with TF-1 cells. During erythroid differentiation, caspase-3 activation and cleavage of caspase-3 substrates such as ICAD (inhibitor of caspase-activated DNase) were detected without concomitant phosphatidyl-serine (PS) externalization and DNA fragmentation. These observations are in contrast to our understanding that DNA is degraded by CAD (caspase-activated DNase) when ICAD is cleaved by caspase-3. Our study demonstrates that CAD is downregulated at the mRNA and protein level during the erythroid differentiation in TF-1 cells. This provides a mechanism for the first time how cells avoid DNA fragmentation with activated caspase-3.

Apoptosis Regulatory Proteins↗

In vitro amplification of DNA fragments greater than 10 kb.

The synthesis of a 10.9-kb DNA fragment from a bacteriophage lambda template was used in the search for conditions to extend the range for the polymerase chain reaction (PCR). Using the same primer sequences and conditions (denaturation at 94 degrees C, 1 min; annealing at 57 degrees C, 1 min; polymerization at 70 degrees C, 20 to 30 min) as published by W. Rychlik, W. J. Spencer, and R. E. Rhoads [(1990) Nucleic Acids Res. 18, 6409-6412], unsatisfactory results were obtained with AmpliTaq and native Taq polymerase (poor reproducibility, low product yield, nonspecific products), whereas Tub polymerase completely failed to amplify this fragment. Only after changes in the following parameters were reliable results obtained but only with Tub polymerase: A two-step PCR procedure with primer annealing and extension at 65 degrees C followed by DNA denaturation at 94 degrees C for 1.5 min was performed. The DNA fragment desired was specifically amplified when the enzyme concentration was reduced to 0.4 U/50 microliters and extension times as low as 4 to 12 min with an optimum at 8 min were used. A prolongation to 20 min or more resulted in an accumulation of unspecific products with a concomitant reduction in the yield of the fragment. Under the conditions described above it was also possible to amplify a DNA fragment even significantly longer (15.6 kb).

Bacteriophage lambda↗

Improved estimation of DNA fragment length from gel electrophoresis data using a graphical method.

A computer program has been developed for computing DNA fragment size from its electrophoretic mobility using a graphical method. The program uses DNA marker data and selects the semilogarithmic linear range (sl-range), i.e., the linear portion of the semilogarithmic curve (mobility vs. log of DNA fragment length). Over this range a linear interpolation is derived for calculating the size of a DNA fragment whose mobility falls in the sl-range. The program also derives a hyperbolic interpolation formula that covers the entire range for determining the size of a DNA fragment whose mobility is beyond the semilogarithmic linear range. The method described in this paper is sensitive, accurate and reliable. This program can also be used to compute protein or polypeptide size from sodium dodecyl sulfate polyacrylamide gel electrophoresis data. The DOS version of the DNASIZE program is freely available from Netserver at EMBL or from BioTechNet by EMail.

DNA↗

Dried gel hybridization in place of southern hybridization for detection of Listeria monocytogenes DNA fragments.

A simple, sensitive, dried gel DNA hybridization method for detection of Listeria monocytogenes DNA fragments is described. DNA samples were fractionated on an agarose gel. The gel was then denatured in NaOH-NaCl and neutralized in Tris-NaCl. The resulting agarose gel was dried and hybridized with 32P-labelled DNA probe. No transfer to nitrocellulose membranes was used.

Blotting, Southern↗

Coexpression of DNA Fragmentation Factor Subunits in E.coli by Two Incompatible Plasmids.

The human DNA fragmentation factor (DFF) is a heterodimer of 40 kD (DFF40/CAD) and 45 kD(DFF45/ICAD) subunits. Apoptotic DNA fragmentation and chromatin condensation are mediated by the caspase-activated DFF40 nuclease, which is inhibited by a chaperone-like subunit DFF45. In this work, the coding regions of human DFF45 and DFF40 mRNAs were amplified from total RNA of HeLa cells by RT-PCR. Two 1 kb DNA fragments were obtained and were cloned into a kanamycin-resistant bacterial expression vector, pET-28a( ), generating pET28a-DFF45 and pET28a-DFF40, which were then used to transform E.coli BL21(DE3), respectively. After induction with IPTG, DFF45 and DFF40 were expressed effectively, accounting for about 56% and 22% of total bacterial proteins, respectively. Since successful expression of properly folded DFF40 requires coexpression with DFF45, the full-length DFF45 cDNA was inserted into an ampicillin resistant expression vector, pET-21a( ), and the recombinant plasmid was designated pET21a-DFF45. Under screening pressure by ampicillin and kanamycin simultaneously, E.coli BL21(DE3) was cotransformed with pET21a-DFF45 and pET28a-DFF40. Upon induction with IPTG, DFF45 and DFF40 were coexpressed efficiently and the desired products comprised about 30% and 17% of total cell proteins, respectively. To further study the stability of the two incompatible plasmids'coexistance in E.coli, the cotransformant was cultured in liquid medium containing ampicillin and kanamycin for 14 h, and more than 75% of the cells were found to be resistant to the two antibiotics, that is, they carried both pET21a-DFF45 and pET28a-DFF40. Thus, a novel method of coexpressing different proteins using two incompatible plasmids was developed.

Journal Article↗

Oligonucleosome DNA fragmentation of caspase 3 deficient MCF-7 cells in palmitate-induced apoptosis.

Oligonucleosomal fragmentation of nuclear DNA is the late stage hallmark of the apoptotic process. In mammalian apoptotic cells fragmentation is catalyzed by DFF40/ CAD DNase. DFF40/CAD primary activated through site-specific proteolytic cleavage by caspase 3. The absence of caspase 3 in MCF-7 leads to lack of oligonucleosomal DNA fragmentation under numerous apoptotic stimuli. In this study it was shown that palmitate induces apoptotic changes of nuclei and oligonucleosomal DNA fragmentation in casp3 deficient MCF-7. Activation and accumulation of 40-50 kDa DFF40 like DNases in nuclei and cytoplasm of palmitate-treated MCF-7 were detected by SDS-DNA-PAGE assay. Microsomes of apoptotic MCF-7 activate 40-50 kDa nucleases when incubated with human placental chromatin and induce oligonucleosomal fragmentation of chromatin in cell free system. Both DNases activation and chromatin fragmentation are suppressed in presence of caspase 3/7 inhibitor Ac-DEVD-CHO. Microsome associated caspase 7 is suggested to play the principal role in induction of oligonucleosomal DNA fragmentation of casp3 defitient MCF-7.

Animals↗

Automated sizing of DNA fragments in atomic force microscope images.

Current techniques used to measure lengths of DNA fragments in atomic force microscope (AFM) images require a user to operate interactive software and execute tedious error-prone cursor selections. An algorithm is proposed which provides an automated method for determining DNA fragment lengths from AFM images without interaction from the computer operator (e.g. cursor selections or mouse clicks). The approach utilises image processing techniques tailored to characteristics of AFM images of DNA fragments. The automated measurements have a mean absolute deviation of less than 1 pixel when compared to manual image-based measurements. The DNA length determined from the histogram of calculated lengths is accurate to within 3% of the actual DNA length in solution. For fragments that are 250 base-pairs long, the precision is estimated to be within 17 nm, which is about 20% of the total length. This precision was confirmed when the algorithm easily resolved fragments in one image that differed by only 17 nm. Fragment sizes up to 2000 base-pairs have been tested and successfully sized. This algorithm is being developed as part of a new solid-state DNA sizing technique for applications such as genotyping and construction of physical genome maps.

Algorithms↗

Identification of viral proteins encoded by two DNA fragments of herpesvirus of turkeys (HVT).

Herpesvirus of turkeys (HVT) vaccine is used worldwide to immunize chickens against Marek's disease (MD). Polyclonal antiserum directed against one virus cross-reacts with proteins of the other, while only 5% homology at the DNA level was demonstrated between the two viruses. A partial library of HVT DNA fragments ranging from 1.5 to 13.5 kbp in size was constructed in pBR 322. Under stringent conditions of hybridization (low salt concentration, 10% dextran sulfate at 68 degrees C), two of the cloned HVT DNA fragments (13.5 and 11.0 kbp) hybridized to three MDV DNA fragments: BamHI-C, D, and G. The 13.5 kbp fragment detected two transcripts of 1.8 and 3.0 kb in RNA extracted from HVT-infected chicken embryo fibroblasts, while the 11.0 kbp fragment detected three transcripts of 1.6, 2.0, and 3.0 kb in the extracted RNA. Using hybrid selection, specific RNA was isolated by hybridization with the two cloned HVT DNA fragments and then was translated in vitro using rabbit reticulocyte lysate, and the resulting proteins were analyzed by NaDodSO4-PAGE. The RNA selected by the two HVT DNA fragments coded for a 30 kD protein and for several smaller proteins 10-20 kD in size, while the RNA selected by the 11.0 kb HVT DNA fragment was translated into a 40 kD protein. Immunoprecipitation of these in vitro synthesized proteins with hyperimmune anti-HVT chicken serum showed that they were of viral origin.

Animals↗

Two methods that facilitate autoradiography of small 32P-labeled DNA fragments following electrophoresis in agarose gels.

Two methods which permit detection by autoradiography of small 32P-labeled DNA fragments resolved by agarose gel electrophoresis are described. Agarose gel electrophoresis poses problems for autoradiography as (i) the gels are normally too thick to allow autoradiography without being dried first, and (ii) fragments of DNA of 1000 bp or less in length are readily lost during drying. In this study DNA fragments as small as 121 bp have been retained in agarose gels upon drying. This has been achieved by either (i) first fixing the DNA with the cationic detergent cetyltrimethylammonium bromide, or (ii) drying the agarose gels onto Zeta-Probe charge-modified membranes.

Autoradiography↗

Use of randomly cloned DNA fragments for the identification of oral spirochetes.

DNA probes were produced for the detection and identification of 4 cultivable species of oral spirochetes, Treponema denticola, Treponema socranskii, Treponema vincentii and Treponema pectinovorum. To obtain probe sequences, chromosomal DNA, isolated from representative strains within each species, was cloned in Escherichia coli K-12. Cloned DNA fragments were screened for the ability to hybridize to DNA only from homologous strains. Several such fragments were identified and shown to be specific when tested against a series of DNAs from gram-negative and gram-positive oral bacteria. The selected probe sequences were semi-conserved within strains of T. denticola and T. socranskii such that restriction fragment length polymorphism (RFLP) was observed. In the case of T. socranskii, RFLP was useful in distinguishing between the 3 known subspecies. Chromosomal DNA fragments from 2 strains of T. vincentii failed to cross-hybridize, under stringent conditions, to genomic DNA from each of these strains. The hybridization probes were suitable for the identification of clinical isolates of T. denticola and could be used to detect the presence of individual Treponema species in mixed cultures. On this basis, the probes were used successfully to detect T. denticola in uncultured plaque samples.

Blotting, Southern↗

Changes in restricted human cellular DNA fragments containing globin gene sequences in thalassemias and related disorders.

Human cellular DNA fragments from cells of normal subjects and patients with thalassemia obtained by restriction enzyme digestion were analyzed for their globin gene content. The fragments were separated on agarose gels, transferred to nitrocellulose filters, hybridized to globin [(32)P]cDNA, and radioautographed. One to ten picograms of globin gene sequences were detectable. With EcoRI digestion, eight to nine cellular DNA fragments were found to contain globin genes. Three of these contained beta-like gene sequences assayed with beta globin cDNA probe. One beta-like fragment was absent in DNA from a homozygous subject for hemoglobin Lepore. Two of the three beta gene-containing fragments present in normal DNA were absent in DNA from a patient with hereditary persistence of fetal hemoglobin. The same two fragments containing beta-like genes were absent from deltabeta thalassemic DNA and one new fragment containing beta-like genes was found. Together with results obtained by hybridization of these DNAs in solution, the data are consistent with deletion of specific restriction human DNA fragments in subjects with these disorders and a greater deletion of beta-like gene sequences in subjects with hereditary persistence of fetal hemoglobin than in those with deltabeta thalassemia.

Base Sequence↗

The electrophoretic separation of curved cisplatin-modified DNA fragments on polyacrylamide gels is dependent on the voltage gradient.

Polyacrylamide gel electrophoresis has been widely used to study DNA fragments containing sequence-dependent curvature. The anomalous electrophoretic behavior of curved DNA fragments on such gels allows their separation from straight fragments of the same length. Here we demonstrate that polyacrylamide gels can be successfully used to resolve DNA fragments modified at a single site by the antitumor drug cis-diamminedichloroplatinum(II) (cis-DDP, cisplatin) from their unmodified counterparts. However, the resolution strongly depends on the voltage gradient, being completely lost when it drops below a certain threshold level. The parameters of the electric field do not affect separation of 'normal' DNA fragments of comparable length.

Base Sequence↗

Restoration of hydrogenase activity in hydrogenase-negative strains of Escherichia coli by cloned DNA fragments from Chromatium vinosum and Proteus vulgaris.

DNA fragments from Proteus vulgaris and Chromatium vinosum were isolated which restored hydrogenase activities in both hydA and hydB mutant strains of Escherichia coli. The hydA and hydB genes, which map near minute 59 of the genome map, 17 kb distant from each other, are not structural hydrogenase genes, but mutation in either of these genes leads to failure to synthesize any of the hydrogenase isoenzymes. The smallest DNA fragments which restored hydrogenase activity to both E. coli mutant strains were 4.7 kb from C. vinosum and 2.3 kb from P. vulgaris. These fragments were cleaved into smaller fragments which did not complement either of the E. coli mutations. The cloned heterologous genes also restored formate hydrogenlyase activity but they did not restore activity in hydE, hupA or hupB mutant strains of E. coli. The cloned genes, on plasmids, did not lead to the synthesis of proteins of sufficient size to be the hydrogenase catalytic subunit. The hydrogenase proteins synthesized by hydA and hydB mutant strains of E. coli transformed by cloned genes from P. vulgaris and C. vinosum were shown by isoelectric and immunological methods to be E. coli hydrogenase. Thus, these genes are not hydrogenase structural genes.

Blotting, Southern↗

Mechanisms of induction of apoptotic DNA fragmentation.

PURPOSE: Despite its common use as an indicator of apoptosis, little is known about the mechanisms controlling apoptotic DNA fragmentation in irradiated cells. This review discusses the pathways of chromatin fragmentation, and the role of both nucleases and chromatin structure in this process. DEFINITIONS: DNA fragmentation linked to apoptosis is a combination of cleavage events excising both large DNA fragments within the range 0.4-1.0 Mbp and 50 kbp followed by random cuts within internucleosomal regions (i.e. DNA laddering). The first two cleavage steps can be detected in virtually all apoptotic cells, but DNA laddering is not ubiquitously observed. Endonucleases that mediate this cleavage of chromatin may be classified by substrate specificity, mode of DNA cleavage and their cofactor requirements. CONCLUSIONS: Three major pathways of DNA fragmentation are proposed and discussed: (1) upregulation of endonucleases, (2) their intranuclear/intracellular redistribution and (3) primary changes of chromatin structure.

Animals↗

Characterization of DNA fragmentation events caused by genotoxic and non-genotoxic agents.

Leukemic cells have been shown to generate several classes of DNA fragments after treatment with cytotoxic cancer chemotherapy agents. However, it is unclear which of these fragmentation events are a direct effect of DNA-damaging chemotherapy agents, and which fragmentation events are caused by downstream processes, such as apoptosis. We have performed a detailed analysis of DNA fragmentation events which occur following cytotoxic chemotherapy in four representative leukemic cell lines (HL-60, Jurkat, K562, and Molt-4). We used a DNA topoisomerase II inhibitor (etoposide), an alkylating agent (melphalan), a nucleoside analog (cytosine arabinoside), and a non-genotoxic agent (N-methylformamide) to induce cell death. We studied high molecular weight and low molecular weight DNA fragmentation events, as well as the specific cleavage of the MLL breakpoint cluster region (bcr). The DNA fragments produced at late time points were largely independent of the agents used, while those generated at earlier time points showed clear differences in terms of fragment size and relative abundance, depending on the agent used. In addition, there were clear differences between cell lines in terms of size, relative abundance, and rate at which DNA fragments were produced by treatment with the same agents. We think that this survey documents the importance of studying several different cell lines, time points, and assays before reaching conclusions about the types of DNA fragments produced during treatment with cytotoxic agents, and provides a useful framework for studying a wide range of DNA fragments produced by cytotoxic agents.

Antimetabolites, Antineoplastic↗

Generation of competitor DNA fragments for quantitative PCR.

A convenient and generally applicable method for the generation of competitor DNA fragments for quantitative PCR is described. Using mouse-specific primers, fragments are amplified from DNA of an evolutionarily distantly related species under low-stringency annealing conditions. Because these artificially created fragments contain the mouse primer specific ends, they can be used for the quantification of the mouse DNA amplified by these primers. Competitor DNA fragments that differ in size from the corresponding mouse DNA are selected to distinguish both fragments visually by gel electrophoresis. Competitor DNA fragments were generated for mouse beta-actin, interleukin-1, and tumor necrosis factor (TNF). Co-amplification of beta-actin cDNA for adjustment of equal amounts of input cDNA and subsequently TNF cDNA from lipopolysaccharide (LPS)-activated and nonactivated spleen cells with serial dilutions of the respective competitor DNA fragments allowed a semiquantitative comparison of the ratio of TNF mRNA present in both cDNA samples. Under certain conditions, the competitor DNA fragments can be used to determine the approximate molar concentration of a mRNA.

Animals↗