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Biomedical subjects

D C Kelly

Publications and source records attributed to D C Kelly.

At least 37 records · Page 2Linked to original sources

Baculovirus replication: phosphorylation of polypeptides synthesized in Trichoplusia ni nuclear polyhedrosis virus-infected cells.

A number of polypeptides synthesized specifically in Trichoplusia ni multiple nucleocapsid nuclear polyhedrosis virus (T. ni MNPV)-infected Spodoptera frugiperda cells are phosphorylated both early and late in infection. Certain non-structural proteins and the major basic internal protein are the main phosphoproteins detected in infected cells. The polyhedron protein was not phosphorylated. Many cell proteins continue to be phosphorylated throughout infection. Pulse-chase experiments have shown that some polypeptides are stably phosphorylated whereas other polypeptides (including the major basic protein) have phosphates which cycle on and off. One polypeptide was substantially labelled only after a chase with unlabelled orthophosphate. Fractionation of cells into nucleus and cytoplasm showed that polypeptides located in both the cytoplasm and nucleus were phosphorylated.

Animals↗

Baculovirus replication: inhibition of Trichoplusia ni multiple nuclear polyhedrosis virus by [E]-5-(2-bromovinyl)-2'-deoxyuridine.

[E]-5-(2-bromovinyl)-2'-deoxyuridine (BVdU) inhibits the replication of the baculovirus Trichoplusia ni multiple nucleocapsid nuclear polyhedrosis virus in Spodoptera frugiperda cells. Virus-specific DNA synthesis and late protein synthesis are suppressed by the drug. BVdU is phosphorylated by deoxythymidine (deoxycytidine) kinase present in both uninfected and virus-infected cells, and in its 5'-triphosphate form it inhibits DNA polymerase activity in virus-infected cells. The effect of the BVdU is not completely reversible. Phosphonoacetic acid, phosphonoformic acid and Acyclovir have no effect on baculovirus replication. Acyclovir fails to compete with deoxycytidine and thymidine as substrates for pyrimidine deoxynucleoside kinase in virus-infected and uninfected cells.

Animals↗

Isolation of a bisegmented double-stranded RNA virus from Thirlmere reservoir.

A novel bisegmented double-stranded RNA virus has been isolated from water processed from Thirlmere reservoir. The virus is icosahedral, 58 nm in diam., has a buoyant density of 1.32 g/ml in CsCl, has an S value of 400 and a RNA/protein ratio of 0.087. The two linear segments of RNA have approx. mol. wt. of 2.26 X 10(6) and 2.09 X 10(6). The virus contains six polypeptides. The virus was isolated in Drosophila melanogaster cells and fails to replicate in other insect, amphibian, avian, piscine, mammalian and plant cells tested. The virus is biochemically different from infectious pancreatic necrosis virus (IPNV) and Drosophila X virus (DXV). The virus is also serologically unrelated to IPNV (strain Sp) and another invertebrate pathogenic virus, Tellina virus 1. The virus shares common antigens with DXV but is not completely identical.

Animals↗

Growth of nuclear polyhedrosis virus in larvae of the cabbage moth, Mamestra brassicae L.

Growth of nuclear polyhedrosis virus (NPV) in 5 larval instars of cabbage moth, Mamestra brassicae, has been quantified using 2 methods. Numbers of polyhedra were estimated by light microscope counts while concentrations of virus protein antigen were estimated using ELISA. Virus growth was rapid initially but slowed during its later stages, although ELISA protein concentrations decreased once a peak had been reached. There was a linear correlation between polyhedral counts and virus protein during the initial growth phase. Maximum polyhedral production ranged from 2 x 107 (first instar) to 3.4 x 109 (fifth instar) and could be correlated directly to increasing larval weight. Using ELisa, virus antigen was detectable at least 24 hours before polyhedra were observed under the light microscope. Productivity ratios ranged from 83,500 in the first instar to 1352 in the fifth instar.

Animals↗

Iridescent virus type 22 DNA.

Double stranded DNA extracted from iridescent virus type (IV 22) was characterized by its buoyant density in CsCl, thermal denaturation profile and guanine plus cytosine content. The DNA was linear with a molecular weight of 130--142 x 10(6) determined by reassociation kinetics, contour length measurements and restriction endonuclease analysis.

Base Composition↗

Biological and biochemical investigations on five European isolates of Mamestra brassica nuclear polyhedrosis virus.

Five multiply enveloped European isolates of Mamestra brassicae nuclear polyhedrosis virus (Oxford, German, French, Dutch and Danish) were found to be very closely related serologically using the enzyme linked immunosorbent assay (ELISA) double antibody sandwich method and immunodiffusion. By SDS-polyacrylamide gel electrophoresis of viral proteins and restriction endonuclease analysis of DNA using seven enzymes there appeared to be two variants as the Oxford and German isolates were distinct from the other three. The German isolate was shown to be more susceptible to Nonidet P40 detergent treatment affecting some nucleocapsid structural polypeptides which also reduced antigenicity in gel immunodiffusion plates. In bioassays of polyhedra, the Dutch isolate showed a higher LD50 than the other viruses although this was not statistically significant.

Antigens, Viral↗

Characterization of a Nuclear Polyhedrosis Virus Isolated from Diseased Gonometa podocarpi (Lepidoptera:Lasiocampidae).

Gonometa podocarpi is an important pest of several species of pine in East Africa, and large numbers of trees in plantations in Kenya were partially or completely defoliated by the larval stage of this insect. After the infestation in the Mt. Elgon region, large numbers of dead and moribund larvae were found on the ground. Examination of extracts of these larvae demonstrated the presence of an occluded virus. Electron microscopy of purified sectioned polyhedra demonstrated the presence of virus particles containing from 1 to 12 nucleocapsids. Purification of virus particles from polyhedra was accomplished by using alkali solubilization and sucrose gradient centrifugation. Virus particles contained 15 proteins as determined by polyacrylamide gel electrophoresis. Detergent solubilization of the virus particles released polyhedra containing one major structural protein. Electron microscopy of purified virus particles and nucleocapsids demonstrated them to be similar in structure to previously recorded nuclear polyhedrosis viruses. The viral deoxyribonucleic acid was extracted and spread for electron microscopy and was determined to have a size of approximately 80 x 10 daltons.

Journal Article↗

Biochemical and biophysical properties of a Mamestra brassicae multiple enveloped nuclear polyhedrosis virus.

A multiply enveloped nuclear polyhedrosis virus from Mamestra brassicae has been shown to be morphologically similar to other baculoviruses. The virus particles contain 13 polypeptides of which 4 are associated with the nucleocapsid. The polyhedron comprises of one major polypeptide of molecular weight 28,000. The DNA has a mol. wt. of about 1.15 X 10(8), which is larger than that reported for other baculoviruses. The DNA is a circular, supercoiled molecule of CG mol. fraction 0.448. DNA fragments produced by a range of restriction enzymes are presented as an aid to identification.

Animals↗

The detection of intracellular retrovirus-like entities in Drosophila melanogaster cell cultures.

A Drosophila melanogaster cell line has been examined for the presence of retrovirus particles. When these cells were disrupted and analysed on sucrose density gradients a subcellular fraction with a density of 1.22 g/ml was found to possess endogenous DNA polymerase activity and could catalyse polymerization of deoxynucleotide triphosphates in response to added template primers. The latter activity had the cation and template primer responses expected for reverse transcriptase. A high mol. wt. polyadenylic acid-containing RNA was also purified from this fraction and could be dissociated by heat treatment into 30 to 35S and smaller species. Electron microscopy revealed the presence of torroidal forms reminiscent of intracytoplasmic A-type retrovirus particles within the Drosophila cells. Similar forms were found associated with the subcellular fraction of 1.22g/ml. We concluded that our D. melanogaster cell line contains retroviruses similar, but not identical, to the A-type particles previously described in mammalian and avian cells.

Animals↗

Frog Virus 3 Replication: Analysis of Structural and Nonstructural Polypeptides in Infected BHK Cells by Acidic and Basic Two-Dimensional Gel Electrophoresis.

Analysis of frog virus 3-infected BHK cells by two-dimensional, acidic and basic gel electrophoresis showed that at least 90 infected cell-specific polypeptides could be detected. These polypeptides represent between 70 and 85% of the coding capacity of the viral genome. The polypeptides were sequentially induced in at least three phases. The virus gradually suppressed host cell polypeptide synthesis during infection, although the synthesis of a few cell polypeptides may be "switched off" early in infection.

Journal Article↗

Frog virus 3 replication: induction and intracellular distribution of polypeptides in infected cells.

The synthesis of the polypeptides induced in frog virus 3-infected cells was analyzed by high-resolution sodium dodecyl sulfate-polyacrylamide gel electrophoresis of radiolabeled cell extracts. Purified frog virus 3 contained 22 polypeptides, with molecular weights in the range 9 x 10(3) to 114 x 10(3). All of the structural and an additional seven nonstructural polypeptides were detected in infected cell lysates. The following three classes of induced polypeptides (under temporal control) were observed in BHK cells: at 2 h, four alpha polypeptides; at 4 h, 13 beta polypeptides; and at 6 h, the remaining 12 gamma polypeptides. The total molecular weight of the infected cell-specific polypeptides (ICPs) was approximately 1.5 x 10(6), which accounts for about 30% of the coding capacity of the viral genome. At least 10 of the induced polypeptides were phosphorylated, but none was glycosylated or sulfated. No evidence for posttranslation cleavage of polypeptides in pulse-chase and inhibition experiments was obtained. The synthesis of gamma polypeptides was not detected in the presence of the viral DNA replication inhibitors cytosine arabinoside and hydroxyurea, but halogenated nucleotides apparently had no effect. These results suggest that alpha and beta polypeptides are "early" events and that detectable gamma polypeptide synthesis is dependent on the production of progeny viral DNA. The regulation of frog virus 3-induced polypeptide synthesis in infected BHK cells was examined by using inhibitors of protein and RNA synthesis and amino acid analogs. These experiments confirmed the existence of three sequentially synthesized, coordinately regulated classes of polypeptides, designated alpha, beta, and gamma. The requirements for the synthesis of each class were as follows: (i) alpha polypeptides did not require previous cell protein synthesis; (ii) beta polypeptides required a prescribed period of alpha polypeptide synthesis and new mRNA synthesis; and (iii) gamma polypeptides required prior synthesis of functional beta polypeptides and new mRNA synthesis. alpha polypeptide synthesis was controlled by beta and gamma polypeptides, and alpha and beta polypeptides were involved in the suppression of host cell polypeptide synthesis. Indirect evidence was obtained for the temporal regulation of frog virus 3 transcription. The intracellular distribution of virus-induced polypeptides in cells infected with frog virus 3 was investigated by using standard cell fractionation techniques. Most of the 29 induced polypeptides were bound to structures within the nucleus, and only two ICPs were not associated with purified nuclei. When isolated nuclei were incubated in an infected cell cytoplasm preparation, all of the nuclear ICPs were incorporated in vitro. All of the ICPs were associated with ribosomal and rough endoplasmic reticulum fractions of infected cells, and a number of ICPs were found on smooth intracellular membranes. Most of the ICPs were also associated with purified plasma membranes of infected cells, and one polypeptide (ICP 58) was highly enriched in the plasma membrane compared with whole cell extracts or purified frog virus 3.

Journal Article↗

Phosphonoacetic Acid inhibition of frog virus 3 replication.

Phosphonoacetic acid at concentrations above 200 mug/ml inhibited the replication of frog virus 3 in BHK cells. The inhibition of viral DNA replication observed in these cells was reversible and correlated with the inhibition of the virus-induced DNA polymerase activity in an in vitro assay. The synthesis of frog virus 3-induced late or gamma polypeptides was also inhibited by phosphonoacetic acid, although the early (alpha and beta) polypeptides were unaffected.

Journal Article↗

Densonucleosis virus structural proteins.

The protein coats of two densonucleosis viruses (types 1 and 2) were examined by a variety of biophysical, biochemical, and serological techniques. The viruses were 24 nm in diameter, contained at least four polypeptides, were remarkably stable to extremes of pH and denaturing agents, and were serologically closely related. The two viruses could, however, be distinguished serologically and by differences in migration of their structural polypeptides. For each virus the "top component" (i.e., the protein coat minus DNA, found occurring naturally in infections) appeared to have a composition identical to that of the coat of the virus and was a more stable structure. Electrometric titration curves of the virus particles and top components demonstrated that the DNA phosphate in densonucleosis virus particles was neutralized by cations other than basic amino acid side chains of the protein coat. Circular dichroism studies showed that there was a conformational difference between the protein coats of top components and virus particles.

Journal Article↗

Interrelationships of the proteins of two parvoviruses (densonucleosis virus types 1 and 2).

Densonucleosis viruses (types 1 and 2) contain four major structural polypeptides with a total molecular weight in excess of the coding capacity of the DNA. Peptide maps obtained by limited proteolysis of isolated (125)I-labeled proteins of both virus types indicate a common origin of the virus proteins and homology between the different viruses. The structure of densonucleosis virus type 2 and its homologous top component (naturally occurring empty particles) was compared by proteolysis using several proteases and the bifunctional cross-linking reagents dimethylsuberimidate (DMS) and dimethylmalonimidate. Similar susceptibilities of both components with proteases were obtained. The top components alone were accessible to the action of the cross-linking reagent DMS. The lowest molecular weight major structural polypeptide was most resistant to the action of the proteases and DMS.

Electrophoresis, Polyacrylamide Gel↗