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W Doerfler

Publications and source records attributed to W Doerfler.

At least 217 records · Page 12Linked to original sources

Expression of viral DNA in adenovirus type 12-transformed cells, in tumor cells, and in revertants.

The expression as cytoplasmic RNA of integrated human adenovirus type 12 (Ad12) DNA in transformed and tumor cell lines and in revertants was investigated. The transformed and tumor cells contained multiple copies of the viral genome, 3 to 22 copies per cell in different cell lines. The integrated Ad12 DNA molecules persisted intact or nearly intact and in most cases colinear with the virion DNA. In the revertant cell lines, which were derived from cell line T637 (22 copies of Ad12 DNA per cell), all of the Ad12 DNA molecules were lost (line F10) or only one copy and a fraction of a second copy persisted (line TR12). The size classes and map locations of Ad12-specific cytoplasmic RNAs in three Ad12-transformed hamster cell lines (T637, HA12/7, and A2497-3), in two revertant lines (F10 and TR12), in one Ad12-induced hamster (CLAC3), and in one rat brain tumor line (RBT12/3) were determined. Cytoplasmic RNA from uninfected B3 hamster cells and from human KB cells productively infected with Ad12 served as controls. In the latter control experiments, the RNA was isolated early or late postinfection. With respect to the amounts of Ad12-specific RNAs detected in cytoplasmic RNA from various Ad12-transformed or Ad12-induced tumor cell lines, we could not establish any correlations to the number of Ad12 genome copies integrated into the cellular DNAs. Thus, the expression of the integrated viral genomes in these lines was regulated by mechanisms more complicated than simple gene dosage effects. Using cloned fragments of Ad12 DNA as hybridization probes, we analyzed the cytoplasmic RNAs from the cell lines mentioned by electrophoresis on agarose gels, blotting, and DNA-RNA hybridization. For each transformed and tumor cell line, except for the revertants, several size classes of Ad12-specific cytoplasmic RNA were detected for the early E1, E2, and E4 regions of Ad12 DNA. Some of these size classes were similar but not identical to those observed in cytoplasmic RNA isolated early from human KB cells productively infected with Ad12. Only cell lines A2497-3, T637, and RBT12/3 contained several size classes of cytoplasmic RNA homologous to the E3 region of Ad12 DNA. Weak homologies to the E1 region of Ad12 DNA were also detected in the revertant lines F10 and TR12. Late regions of Ad12 DNA were expressed as cytoplasmic RNA in cell lines CLAC3 and RBT12/3. Weak homologies were detected between certain segments of the Ad12 genome (the EcoRI-B, -C, and -D fragments) and the cytoplasmic RNA from uninfected hamster cells. These homologies had no apparent counterpart at the level of DNA, perhaps because these homologies could be detected only due to an overrepresentation of RNA sequences. In preliminary experiments, we failed to detect the expression as cytoplasmic RNA of the so-called virus-associated RNA in transformed and tumor cell lines. Virus-associated RNA represents a population of low-molecular-weight RNAs that map at around 30 fractional length units on the viral genome.

Adenoviruses, Human↗

Methylation of adenovirus genes in transformed cells and in vitro: influence on the regulation of gene expression?

An inverse correlation has been described between the levels of DNA methylation in specific segments of adenovirus DNA integrated into the genomes of transformed and tumor cells and the extent to which these segments are expressed as messenger RNA. In the adenovirus type 2 (Ad2)-transformed hamster cell lines HE2 and HE3, the virus-specific DNA binding protein (DBP) is not expressed, and the DNA in the DBP gene is completely methylated in all 5'-CCGG-3' sites. At least part of the late promoter/leader sequence of the DBP gene is present in cell lines HE2 and HE3. In line HE1, on the other hand, the DBP is expressed, and the DNA in the DBP gene is unmethylated at the 5'-CCGG-3' (HpaII) sites. The late promotor/leader sequence of the DBP gene is expressed in cytoplasmic RNA isolated from line HE1. The effect of DNA methylation has also been tested in vitro in a microinjection system using Xenopus laevis oocytes. Unmethylated DNA fragments of Ad2 (E2a region) have been found to serve as active templates. When the same fragments are methylated at the 5'-CCGG-3' sites by the HpaII DNA-methyltransferase, viral RNA synthesis is inhibited upon microinjection into oocyte nuclei. These results provide direct evidence for the notion that DNA methylated at highly specific sites is somehow involved in the regulation of gene expression.

5-Methylcytosine↗

DNA methylation and viral gene expression in adenovirus-transformed and -infected cells.

The level of DNA methylation in adenovirus type 2 (Ad2) and type 12 (Ad12) DNA was determined by comparing the cleavage patterns generated by the isoschizomeric restriction enzymes HpaII and MspI. As previously reported virion DNA of Ad2 and Ad12 is not methylated. Parental or newly synthesized Ad2 DNA in productively infected human KB or HEK cells is not methylated either, nor is the integrated form of Ad2 DNA in productively infected cells. Hamster cells and Muntiacus muntjak cells are abortively infected by Ad12. We have not detected methylation of Ad12 DNA in hamster or Muntiacus muntjak cells. An inverse correlation between the level of methylation and the extent of expression of viral DNA in Ad12-transformed hamster cells has been described earlier. A similar relation has been found for the EcoRI fragment B of Ad2 DNA which is not methylated but is expressed as the Ad2 DNA-binding (72K) protein in the Ad2-transformed hamster line HE1. Conversely, the same segment is completely methylated in lines HE2 and HE3, and there is apparently no evidence for the expression of the 72K protein in these cell lines.

Adenoviruses, Human↗

Infectious DNA from Autographa californica nuclear polyhedrosis virus.

Cells from the lepidopteran Spodoptera frugiperda can be successfully transfected in culture with the DNA from Autographa californica nuclear polyhedrosis virus (AcNPV). The calcium chloride precipitation procedure has been used in conjunction with dimethyl sulfoxide treatment of the transfected cells. The highest specific infectivity observed was 6.1 x 10(4) PFU/mug of AcNPV DNA. As judged from a comparison of the restriction patterns of viral DNA preparations, the virus produced in transfection experiments was identical to the virions from which the DNA for transfection was prepared. The transfection procedure described will be useful for the genetic analysis of AcNPV DNA.

Journal Article↗

Surface charge patterns as recognition signals in nucleic acid molecules.

Surface charge patterns of nucleic acid or protein molecules are caused by weak charges and are ultimately dependent upon the nucleotide or amino acid sequence, respectively. It is proposed that these charge patterns play a decisive role in nucleic acid-protein interactions. Although charge patterns are sequence related, they cannot be read off the sequence directly as yet. Methods to determine these charge patterns are presently not available. Thus, one or several unidentified codes may still be hidden in DNA sequences. Surface charge patterns will be subject to alterations by externally applied electric and/or magnetic fields. The biological role of changes in electro-magnetic fields in the environment of biological systems has scarcely been explored. Such effects may be of particular significance in neurobiology.

Amino Acid Sequence↗

Methylation of integrated adenovirus type 12 DNA sequences in transformed cells is inversely correlated with viral gene expression.

The adenovirus type 12 (Ad12) DNA sequences integrated into the DNA of four lines of Ad12-transformed hamster cells are extensively methylated. Methylation in mammalian cell DNA is believed to occur predominantly at 5'-C-G-3' sequences. The majority, although not all, of the 5'-C-C-G-G-3' sequences present in integrated Ad12 DNA are methylated. Ad12 DNA isolated from purified virions, on the other hand, is not methylated to any significant extent. The segments of the integrated viral DNA comprising early genes, which are expressed as mRNA in two lines of Ad2-transformed hamster cells, are undermethylated in comparison to late viral segments, which are not expressed and are extensively methylated. In contrast, in two lines of Ad12-induced rat brain tumor cells, some of the late viral genes have been shown to be expressed as mRNA. The segment of the integrated Ad12 DNA that comprises these late genes, the EcoRI B fragment, is undermethylated in comparison to the extensive methylation of the same fragment in Ad12-transformed hamster cells. Thus, there appears to exist a striking inverse correlation between the levels of methylation of specific DNA segments and the extent to which these segments are expressed as mRNA. The functional significance of this correlation remains to be determined. It may provide a clue to understanding the regulation of gene expression in transformed cells and perhaps in eukaryotic cells in general.

Adenoviruses, Human↗

Methylation of integrated viral DNA sequences in hamster cells transformed by adenovirus 12.

Data have been presented which demonstrate that the Ad12 DNA sequences integrated into the DNA of four lines of Ad12-transformed hamster cells are extensively methylated. Methylation in mammalian-cell DNA presumably occurs at 5'-CCGG-3' sequences mainly at the internal C residue. The majority, though not all, of the 5'-CCGG-3' sequences present in integrated Ad12 DNA are methylated. Further experiments will be required to elucidate the functional significance of the methylation of integrated Ad12 DNA. Ad12 DNA isolated from purified virions is not methylated to any significant extent. Recent results indicate that segments of the integrated viral DNA, which are expressed into mRNA in transformed cells, are undermethylated, whereas segments that are not expressed are extensively methylated.

Adenoviruses, Human↗

Adenovirus type 12-induced rat tumor cells of neuroepithelial origin: persistence and expression of the viral genome.

Four cell lines derived from adenovirus type 12-induced rat brain tumors were studied. The polyploid cells displayed neuroepithelial characteristics and were transplantable into syngeneic rats and nude mice. In tissue culture the cells grew in monolayers and multilayers. A very high saturation density was reached, and the cells plated in agar and were easily agglutinated with low concentrations of concanavalin A. Between 2 and 11 copies of the viral genome per diploid cellular genome were detected by reassociation kinetics analysis in the different lines. The patterns of distribution of viral DNA sequences in these lines, as revealed by blot analysis, suggest colinear integration of the intact viral genome into the cellular DNA. The patterns of integration were stable after more than 15 months of prolonged tissue culture and after animal reimplantation. Integration patterns were identical in three of the tumor lines and different in another line. Viral sequences were transcribed. The extent of homology found toward adenovirus type 12 DNA in polyadenylated polysome-associated mRNA isolated from the tumor lines suggests that the early and some of the late genes of adenovirus type 12 DNA are transcribed in these tumor cells. Infectious virus was not rescuable from these lines.

Adenoviruses, Human↗

Integration sites of adenovirus type 12 DNA in transformed hamster cells and hamster tumor cells.

The patterns and sites of integration of adenovirus type 12 (Ad12) DNA were determined in three lines of Ad12-transformed hamster cells and in two lines of Ad12-induced hamster tumor cells. The results of a detailed analysis can be summarized as follows. (i) All cell lines investigated contained multiple copies (3 to 22 genome equivalents per cell in different lines) of the entire Ad12 genome. In addition, fragments of Ad12 DNA also persisted separately in non-stoichiometric amounts. (ii) All Ad12 DNA copies were integrated into cellular DNA. Free viral DNA molecules did not occur. The terminal regions of Ad12 DNA were linked to cellular DNA. The internal parts of the integrated viral genomes, and perhaps the entire viral genome, remained colinear with virion DNA. (iii) Except for line HA12/7, there were fewer sites of integration than Ad12 DNA molecules persisting. This finding suggested either that viral DNA was integrated at identical sites in repetitive DNA or, more likely, that one or a few viral DNA molecules were amplified upon integration together with the adjacent cellular DNA sequences, leading to a serial arrangement of viral DNA molecules separated by cellular DNA sequences. Likewise, in the Ad12-induced hamster tumor lines (CLAC1 and CLAC3), viral DNA was linked to repetitive cellular sequences. Serial arrangement of Ad12 DNA molecules in these lines was not likely. (iv) In general, true tandem integration with integrated viral DNA molecules directly abutting each other was not found. Instead, the data suggested that the integrated viral DNA molecules were separated by cellular or rearranged viral DNA sequences. (v) The results of hybridization experiments, in which a highly specific probe (143-base pair DNA fragment) derived from the termini of Ad12 DNA was used, were not consistent with models of integration involving true tandem integration of Ad12 DNA or covalent circularization of Ad12 DNA before insertion into the cellular genome. (vi) Evidence was presented that a small segment at the termini of the integrated Ad12 DNA in cell lines HA12/7, T637, and A2497-3 was repeated several times. The exact structures of these repeat units remained to be determined. The occurrence of these units might reflect the mechanism of amplification of viral and cellular sequences in transformed cell lines.

Adenoviridae↗

Revertants of adenovirus type 12-transformed hamster cell line T637 as tools in the analysis of integration patterns.

Spontaneously arising morphological revertants of the adenovirus type 12 (Ad12)-transformed hamster cell line T637 had been previously isolated, and it had been demonstrated that in these revertants varying amounts of the integrated Ad12 genome were eliminated from the host genome. In this report, the patterns of persistence of the viral genome in the revertants were analyzed in detail. In some of the revertant cell lines, F10, TR3, and TR7, all copies of Ad12 DNA integrated in line T637 were lost. In lines TR1, -2, -4 to -6, -8 to -10, and -13 to -16, only the right-hand portion of one Ad12 genome was preserved; it consisted of the intact right segment of Ad12 DNA and was integrated at the same site as in line T637. In revertant lines G12, TR11, and TR12, one Ad12 DNA and varying parts of a second viral DNA molecule persisted in the host genome. These patterns of persistence of Ad12 DNA molecules in different revertants supported a model for a mode of integration of Ad12 DNA in T637 hamster cells in which multiple (20 to 22) copies of the entire Ad12 DNA were serially arranged, separated from each other by stretches of cellular DNA. The occurrence of such revertants demonstrated that foreign DNA sequences could not only be acquired but could also be lost from eucaryotic genomes. There was very little, if any, expression of Ad12-specific DNA sequences in the revertant lines TR7 and TR12. Moreover, Ad12 DNA sequences which were found to be undermethylated in line T637 were completely methylated in the revertant cell lines G12, TR11, TR12, and TR2. These findings were consistent with the absence of T antigen from the revertant lines reported earlier. Hence it was conceivable that the expression of integrated viral DNA sequences was somehow dependent on their positions in the cellular genome. In cell line TR637, the early segments of Ad12 DNA were expressed and undermethylated; conversely, in the revertant lines G12, TR11, TR12, and TR2, the same segments appeared to be expressed to a limited extent and were strongly methylated.

Adenoviridae↗

Viruses as tools for studies on the molecular biology of mammalian cells.

1. Multiple copies of intact adenovirus type 12 (Ad12) DNA are integrated into the DNA of Ad12-transformed hamster and Ad12-induced rat brain tumor cells. Free viral DNA is not present in the Ad12-transformed lines investigated. 2. Only few sites of integration are found in Al2-transformed hamster and Ad12-induced rat brain tumor cells. Integration may have occurred into repetitive cellular sequences at selective sites. These sites may be different in different cell lines, however, none of these sites has been analyzed in sufficient detail. 3. Three lines of Ad12-induced rat brain tumor cells exhibit identical patterns of integration. These lines have been derived from three brain tumors in one animal and may have evolved from the same transformed cell. 4. In Ad12-induced rat brain tumor cells early and late segments of the viral genome are expressed as polysome-associated messenger RNA. 5. In human cells productively infected with adenovirus type 2 (Ad2), a large number of viral genome copies are linked to cellular DNA early postinfection. There are only a few sites of recombination (illegitimate?) which probably lie in repetitive cellular DNA sequences. The functional significance of this frequent recombination is unknown.

Adenoviridae↗

Specificity and mode of cleavage of the pH 4.0 endonuclease from adenovirus type 2 - infected KB cells.

Adenovirus type 2 or lambda DNA was digested with the pH 4.0 endonuclease, purified from adenovirus 2-infected KB cells. The enzyme produces a limit digest of approximate size in the range of 140-210 base pairs long. The termini of the DNA fragments generated by the endonuclease digestion had 3'-P and 5'-OH groups. The 3' and 5' end groups of the products were analyzed. Our data indicate that 3' end group was a purine (68-76%), dA occuring about twice the frequency of dG. The 5' end group was either dG or dC with equal frequency. Data obtained by treatment of the 5' labeled endonuclease product of lambda DNA with single-strand specific S1 nuclease from Asperigillus oryzae or exonuclease VII from Escherichia coli indicated that the majority of the products had a short 5' protruding ends. The mode of cleavage of this endonuclease seems to be through initial formation of several single-strand breaks with some base specificity. If these breaks are at close proximity on opposite strands, double-stranded fragments with protruding ends are generated.

Adenoviruses, Human↗

Infection of Spodoptera frugiperda cells with Autographa californica nuclear polyhedrosis virus I. Synthesis of intracellular proteins after virus infection.

The replication of Autographa californica nuclear polyhedrosis virus (AcNPV) in Spodoptera frugiperda cells in culture has been studied with different methods. The first virus-induced polypeptides (with molecular weights of 46K, 30K, 29K) in infected cells appeared at 3 hr postinfection. Viral DNA synthesis started at about 5 hr postinfection. By electron microscopy, intranuclear nucleocapsids were detected at 10 hr postinfection and at about the same time, the titer of intracellular infectious particles began to rise. The pattern of viral protein synthesis was rather complex; within the first 24 hr postinfection, some 30-35 different polypeptides appeared sequentially in infected cells. Some of these polypeptides seemed to be structural proteins of the virion. The 28K polyhedrin polypeptide was synthesized originally as a precursor and was modified posttranscriptionally. Polyhedrin was synthesized until late in infection. Two distinct stages exist in AcNPV replication: (i) the rapid synthesis of AcNPV-specific nucleic acids and proteins and the assembly of nucleocapsids, some of which develop by budding to extracellular virus; (ii) intranuclear membrane synthesis, polyhedra formation, and occlusion of intranuclear, enveloped virions.

Journal Article↗

Infection of Spodoptera frugiperda cells with Autographa californica nuclear polyhedrosis virus II. The viral DNA and the kinetics of its replication.

The kinetics of replication of Autographa californica nuclear polyhedrosis virus (AcNPV) DNA in Spodoptera frugiperda cells in culture were studied. Viral DNA replication started at about 5 hr postinfection, the rate of viral DNA replication reached a maximum at about 18 hr postinfection and thereafter decreased. Parental viral DNA could be detected within the first hour postinfection in the total intracellular DNA by the Southern technique. There was no evidence for the occurrence of AcNPV DNA sequences which became covalently linked to cellular DNA between 1 and 3 hr post-infection in the productive cycle. The AcNPV DNA appeared as a covalently closed circular molecule of about 92 x 10(6) daltons. The AcNPV DNA did not seem to be methylated, at least there were no 5'-CmCGG3' sequences detectable in this DNA. Restriction enzyme analysis of viral DNA preparations derived from several single plaque isolates of AcNPV as well as of DNA from different virus stocks revealed a certain heterogeneity of the AcNPV DNA.

Journal Article↗