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Biomedical subjects

C M Preston

Publications and source records attributed to C M Preston.

At least 73 records · Page 4Linked to original sources

Heligmosomoides polygyrus: peroxidase activity.

Peroxidase activity in Heligmosomoides polygyrus was located primarily in the mitochondrion. The enzyme was active with a range of organic and inorganic electron donors and, in addition to hydrogen peroxide, it could utilize cumene peroxide, but the highest activity was obtained with linoleic acid peroxide. The effects of electron chain substrates and inhibitors on H. polygyrus mitochondrial peroxidase activity was consistent with the enzyme being linked functionally to cytochrome c, although in vivo, this may not be the only electron donor. The interaction of the peroxidase with electron transport is discussed.

Animals↗

DNA sequences which regulate the expression of the pseudorabies virus major immediate early gene.

It has been shown previously that the transcription of herpes simplex virus (HSV) immediate early (IE) genes is transactivated by a component of the virus particle. The trans-inducing factor (TIF) is known to be polypeptide Vmw65. Infection with pseudorabies virus (PRV), a related herpesvirus, does not increase expression from HSV IE regulatory sequences (W. Batterson and B. Roizman, 1983, J. Virol. 46, 371-377). To examine the control of the PRV IE gene and possible sequence specificity of a TIF, the 5' terminus of the PRV major IE transcript was mapped and hybrid plasmids containing PRV upstream sequences linked to the HSV-1 TK gene were constructed. Gene expression under the control of PRV IE or HSV-1 IE gene 3 upstream regions were compared using transient expression assays. It was found that infection with uv-irradiated PRV did not stimulate expression from PRV IE or from HSV-1 IE gene 3 upstream regions, indicating that PRV did not possess an effective TIF. Infection with uv-treated HSV-1, or cotransfection with a plasmid which encodes Vmw65, stimulated expression from both PRV and HSV IE gene upstream regions. The nucleotide sequence of the 5' end of the PRV transcript and its upstream region was determined. This region was, in overall structure, unlike the upstream regions of HSV IE genes but showed a strong similarity to the enhancers of human and murine cytomegaloviruses (HCMV and MCMV). In particular, a reiterated 15-bp element of the PRV upstream region was homologous to a conserved, repeated sequence element found in both HCMV and MCMV enhancer regions and was also related to the "TAATGARATTC" motif found upstream of all HSV IE genes. Thus a conserved sequence element occurs upstream of IE genes in four herpesviruses with different genome structures and diverse biological properties.

Animals↗

Herpes simplex virus genes involved in latency in vitro.

The properties of temperature-sensitive (ts), insertion or deletion mutants of herpes simplex virus (HSV) were investigated in an in vitro model system for latency. The studies defined virus gene products required for establishment of latency and for reactivation of latent virus. All mutants tested established latency in human foetal lung fibroblasts and could be reactivated by intertypic superinfection with HSV or with human cytomegalovirus. Two mutants of HSV type 1 used in these studies, tsK and in1411, failed to synthesize active immediate early (IE) polypeptide Vmw175 and were blocked at a very early stage of the virus replication cycle, showing that, at most, only limited gene expression is necessary for the establishment of latency. Mutant dl1403, which lacks the gene encoding IE polypeptide Vmw110, established latency as efficiently as wild-type HSV. Latent HSV type 2 was reactivated by superinfection with tsK or in1411 but not with dl1403, suggesting that polypeptide Vmw110, which is known to regulate gene expression by trans-activation, is required for reactivation in the in vitro system.

Cells, Cultured↗

Abnormal forms of the herpes simplex virus immediate early polypeptide Vmw175 induce the cellular stress response.

Induction of the major stress response in chick embryo fibroblasts, which follows infection at 38.5 degrees C with the herpes simplex virus mutant tsK, was investigated. Synthesis of cellular stress proteins occurred only when the mutant form of an immediate early polypeptide, Vmw175, was overproduced. Infection with mutant in 1411, which has an amber (TAG) termination signal inserted between codons 83 and 84 of the gene encoding Vmw175 and therefore specifies a truncated portion of the polypeptide, failed to stimulate stress protein synthesis. The results suggested that the presence of abnormal forms of Vmw175 at high concentrations was the signal for induction of the stress response in tsK-infected cells.

Animals↗

The 65,000-Mr DNA-binding and virion trans-inducing proteins of herpes simplex virus type 1.

The possible identity of the herpes simplex virus type 1 (HSV-1) 65K (65,000-Mr) virion protein which stimulates transcription from immediate-early genes with the HSV-1 65K DNA-binding protein was investigated. The two proteins were found to be distinct by the three separate criteria of immunological reactivity, tryptic peptide fingerprinting, and mobility in two-dimensional gels. Using HSV-1/HSV-2 intertypic recombinants and a serotype-specific antiserum, we located the gene encoding the 65K DNA-binding protein between coordinates 0.574 and 0.682 on the HSV-1 genome. The protein is posttranslationally modified by phosphorylation. In crude extracts of HSV-1-infected cells the 65K trans-inducing protein did not detectably bind to double-stranded calf thymus DNA under the conditions of our assay.

Antigens, Viral↗

Cellular gene induction during herpes simplex virus infection can occur without viral protein synthesis.

Infection of cultured cells with herpes simplex virus (HSV) results in the transcriptional induction of a small number of cellular genes. Although the majority of such genes are dependent upon viral protein synthesis for their induction, a small minority are not. These genes are induced by events occurring prior to the onset of viral protein synthesis, in particular by binding of the virus to the cell surface and cellular entry of the virion. The significance of such cellular gene induction early in viral infection is discussed in terms of virus-cell interaction in general and the mechanism of transformation by HSV in particular.

Cells, Cultured↗

Analysis of DNA sequences which regulate the transcription of herpes simplex virus immediate early gene 3: DNA sequences required for enhancer-like activity and response to trans-activation by a virion polypeptide.

The far upstream region of herpes simplex virus (HSV) immediate early (IE) gene 3 has previously been shown to increase gene expression in an enhancer-like manner, and to contain sequences which respond to stimulation of transcription by a virion polypeptide, Vmw65. To analyse the specific DNA sequences which mediate these functions, sequential deletions from each end of the far upstream region were made. The effects of the deletions on transcription in the absence or presence of the Vmw65 were measured by use of a transient expression assay. The enhancer-like activity was due to three separable elements, whereas two additional DNA regions were involved in the response to Vmw65. One of the responding elements corresponded to an AT-rich consensus (TAATGARATTC, where R = purine) present in all IE gene far upstream regions, and the other was a GA-rich sequence also present in IE genes 2 and 4/5. The TAATGARATTC element could mediate responsiveness to Vmw65 but it was fully active only in the presence of the GA-rich element. The GA-rich element was unable to confer a strong response alone but could activate an otherwise nonfunctional homologue of TAATGARATTC.

Animals↗

An in vitro latency system for herpes simplex virus type 2.

An in vitro latency system for herpes simplex virus type 2 (HSV-2) in cultured cells has been developed. Virus replication was suppressed by infection of human foetal lung cells at the supraoptimal temperature of 42 degrees C, and, following transfer of such cell cultures to the normal growth temperature of 37 degrees C, infectious virus was generally undetectable for at least 6 days. HSV-2 was reactivated by intertypic superinfection at 38.5 degrees C with temperature-sensitive mutants of HSV-1, or with human cytomegalovirus, but not by superinfection with adenovirus types 2 or 5. The HSV-1 mutant tsKsyn, which produces only immediate early polypeptides at 38.5 degrees C, was as effective as the late mutant tsIsyn, but tsK which had been irradiated with u.v. light to prevent gene expression did not reactivate HSV-2. The efficiency of reactivation was very high, since 15 to 34% of the theoretical input of infectious HSV-2 particles could be retrieved by superinfection with 0.3 p.f.u. of tsKsyn per cell. Reactivation of latent virus was not induced by cell subculture or by other treatments which alter cell metabolism. The system described here may be important for studies on the molecular basis of HSV latency.

Cell Line↗

Surface properties of developing stages of Trichuris muris.

Surface properties of developing stages of Trichuris muris were investigated by analysis of binding affinities for specific anti-parasite antibodies present in a range of infection sera; in vitro eosinophil adherence studies; and binding of the fluorescent-labelled lectins, Con A, WGA, PNA and RCA. In general, larvae of any one particular stage did not bind anti-parasite antibodies present in serum collected at an earlier stage of the infection, thus indicating a considerable degree of antigenic stage-specificity. Forty day and older parasites displayed similar binding properties and it is suggested that no major changes in surface antigenicity occur after the final moult at day 25-30 after infection. Surface properties were also examined by means of complement and antibody-mediated eosinophil adherence assays. Attachment of eosinophils was maximal with day 5 larvae, although even at this stage not all of the parasite surface was covered with attached cells. Despite adherence, eosinophils were unable to effect parasite killing, even after 48 h of incubation. These studies showed that eosinophil adherence-promoting antibodies were present in immune sera; that the larval parasite surface was able to activate complement by the alternate pathway with subsequent generation of C3b molecules, and that the parasite was able to withstand eosinophil adherence and secretion by an as yet unidentified evasive stratagem. Studies with fluorescent-labelled lectins showed that all larval stages (days 5-25 after infection) were positive for Con A binding. Early larval stages (days 5-10 after infection) also bound PNA and WGA. Interestingly, recently moulted individuals rarely exhibited fluorescence, but cast cuticles fluoresced brightly.

Animals↗

DNA sequence of the herpes simplex virus type 1 gene whose product is responsible for transcriptional activation of immediate early promoters.

Previous work has shown that transcriptional activation of herpes simplex virus type 1 (HSV-1) immediate early genes is mediated by a protein species (Vmw65) present in the tegument of infecting virions. This paper describes DNA sequence analysis and mRNA mapping of the Vmw65 gene in HSV-1 strain 17. The Vmw65 coding region was identified as a 490 codon sequence encoding a polypeptide of molecular weight 54,342 and characterised by a high proportion of charged amino acid residues. A homologue to Vmw65 was detected in the genome of varicella-zoster virus, another human herpesvirus. Apart from its role in trans-activation, Vmw65 is a major constituent of the virion. Its possible significance in virus structure is discussed.

Base Sequence↗

Trichuris muris: structure and formation of the egg polar plugs.

The structure and development of the polar plugs of Trichuris muris eggs were observed by light and electron microscopy. Initial stages in plug formation commenced in the spermatheca of the adult female where two polar papillae became delimited from the remainder of the oocyte cytoplasm. These papillae exhibited a discrete PAS positive reaction and were regarded as prospective plug regions from which cytoplasmic granules were absent. Glycogen rosettes, initially concentrated in these prospective areas, were later transformed into an irregular fine network of chitin-protein microfibrils. This arrangement of microfibrils was in contrast to that of the surrounding collar region which displayed a distinct lamellate organization. The fully developed polar plug was of lower electron density than the shell. Each plug was covered externally by the vitelline layer and lined internally by the lipid layer of the eggshell.

Animals↗

Utilization of internal AUG codons for initiation of protein synthesis directed by mRNAs from normal and mutant genes encoding herpes simplex virus-specified thymidine kinase.

Previous studies (H.S. Marsden, L. Haarr, and C.M. Preston, J. Virol. 46:434-445, 1983) have shown that at least three polypeptides, with molecular weights of 43,000, 39,000, and 38,000, are encoded by the herpes simplex virus type 1 (HSV-1) thymidine kinase (TK) gene. It has been suggested that the 39,000- and 38,000-molecular-weight polypeptides arise from preinitiation complexes bypassing the first and second AUG codons before commencement of translation since, according to previous work (M. Kozak, Nucleic Acids Res. 9:5233-5252, 1981), these codons are not of the most efficient structure for initiation. This possibility was investigated by using specific herpes simplex virus mutants with alterations in the TK gene. Mutant TK4 has an amber mutation between the first and second AUG codons, whereas mutant delta 1 has a deletion which removes the first AUG codon but leaves other AUG codons, as well as transcriptional promoter sequences, intact. Both mutants synthesized only the 39,000- and 38,000-molecular-weight polypeptides, and the amounts produced were normal in TK4-infected cells but increased in delta 1-infected cells. Furthermore, the levels of TK produced after infection with the mutant viruses correlated with the amounts of the 39,000- and 38,000-molecular-weight polypeptides synthesized. The 43,000-, 39,000-, and 38,000-molecular-weight polypeptides were shown to be related by their positive reaction with anti-TK serum in both immunoprecipitation and immunoblotting experiments. The production of the 39,000- and 38,000-molecular-weight polypeptides through bypassing of the first AUG codon was examined by hybrid arrest experiments with a DNA fragment complementary to only 50 bases at the 5' terminus of TK mRNA. This fragment arrested the synthesis of the 30,000- and 38,000-molecular-weight polypeptides when annealed to mRNA from wild-type HSV-1- or TK4-infected cells, showing that those polypeptides arise from an mRNA initiated upstream from the first AUG codon. mRNA from cells infected with mutant delta 1, which lacks DNA sequences upstream from the first AUG, was not affected by the 50-base-pair fragment. The data therefore confirm that three polypeptides encoded by the HSV-1 TK gene arise by differential use of in-phase AUG codons for the initiation of protein synthesis. This mechanism for the production of related but distinct polypeptides has not previously been demonstrated in a eucaryotic system, and the implications for the regulation of TK enzyme activities are discussed.

Cell Line↗

Identification of herpes simplex virus DNA sequences which encode a trans-acting polypeptide responsible for stimulation of immediate early transcription.

Herpes simplex virus (HSV) immediate early (IE) transcription is known to be stimulated by a structural component of the virion which interacts, either directly or indirectly, with specific regulatory sequences located far upstream from IE messenger RNA 5'-termini. The aim of the work described in this paper is the mapping and identification of the virion component. Cloned HSV DNA fragments derived from various parts of the genome were cotransfected into BHK cells together with chimaeric plasmids which contained the thymidine kinase gene under IE control. Stimulation of thymidine kinase synthesis was elicited by cloned EcoRIi (0.63 to 0.72 map units), BamHIf (0.64 to 0.69) or EcoRIb (0.72 to 0.87). Cloned BamHIf had the same specificity as the virion component, since it stimulated thymidine kinase expression only from chimaeric plasmids which contained functional IE-specific regulatory sequences. The effect of EcoRIb was not confined to plasmids with IE-specific regulatory regions, suggesting a more general stimulatory role for one or more of the polypeptides encoded by this fragment. A subclone containing a 2.7 X 10(3) base-pair fragment of BamHIf (pMC1) was active in the cotransfection assay, and the effect was abolished by an eight base-pair insertion into the middle of this fragment. The only polypeptide known to map entirely within the HSV genome region defined by pMC1 was identified as the major tegument species Vmw65. The results therefore suggest that Vmw65 is the virion component which trans-activates HSV IE transcription.

Base Sequence↗

Effects of orientation and position on the activity of a herpes simplex virus immediate early gene far-upstream region.

It has previously been shown that a far-upstream region of the herpes simplex virus immediate early (IE) gene 3 increases the expression of a linked thymidine kinase (TK) gene and also contains sequences which respond to stimulation of transcription by a virion component. The effects of altering the orientation and distance of the far-upstream region with respect to the normal IE gene 3 promoter are described. Reversal of the orientation whilst retaining the normal position of the far-upstream region did not affect its activity, but placing it downstream from the TK gene abolished any detectable effect. When the far-upstream region was separated from the promoter by insertion of Escherichia coli DNA fragments (approximately 1000 base pairs), its activity was reduced but not prevented. A similar effect was observed for unstimulated expression of TK and stimulated expression in the presence of the virion component. The IE gene 3 far-upstream region therefore resembles enhancer sequences in some respects but also shows significant differences.

Animals↗

Analysis of DNA sequences which regulate the transcription of a herpes simplex virus immediate early gene.

The locations and functions of DNA sequences involved in transcription of the gene encoding herpes simplex virus type 1 immediate early (IE) mRNAs 4 and 5 were analyzed by use of a transient-expression assay. The region upstream of the genes encoding IE mRNAs 4 and 5 was fused to the thymidine kinase gene coding sequences, and production of enzyme or RNA was measured after transfection of plasmids into BHK cells. The effect of deletions in the upstream region was determined in the absence or presence of a virus structural component which stimulates herpes simplex virus IE transcription. Two distinct units were identified. One of these was a promoter which required not more than 69 base pairs of DNA specific for the genes encoding IE mRNAs 4 and 5 upstream from the mRNA 5' terminus. The other was a far-upstream region which mediated the response to the virion component and had an upstream boundary between nucleotides -347 and -335. An origin of DNA replication was interposed between these two units. The element TAATGAGATAC , which represents a consensus sequence present in the upstream regions of all herpes simplex type 1 IE genes, appeared to be essential for stimulation by the virion component. The activity of this element was modulated by the sequences which flank it, especially by regions having extremely high contents of guanine plus cytosine and which contain a conserved unit CCCGCCC or its complement GGGCGGG .

Animals↗

Functional analysis of a herpes simplex virus type 1 promoter: identification of far-upstream regulatory sequences.

We have performed a functional analysis of DNA sequences upstream from the gene for IE mRNA3 of herpes simplex virus type 1. Nucleotide sequences involved in initiation and positive regulation of transcription have been defined by construction of specific deletions in vitro. Transcription was assayed in vivo by microinjection into Xenopus oocytes, or by introduction of plasmid DNA into tissue culture cells and measurement of transient expression. Three functional promoter elements have been defined: i) Sequences between -16 and -37 which are not essential for transcription but are required for accurate initiation. ii) Proximal promoter sequences which are sufficient for transcription initiation in the absence of upstream sequences. iii) Far-upstream promoter sequences (more than 108bp upstream) which increase transcription in oocytes, and contain positive regulatory sequences (-174 to -331) which respond strongly to a factor in the virus inoculum.

Animals↗

Poly(ADP-ribosyl)ation of a herpes simplex virus immediate early polypeptide.

This paper reports in vitro poly(ADP-ribosyl)ation of the herpes simplex virus type 1 (HSV-1) immediate early polypeptide Vmw175. The phenomenon was most clearly observed by use of the temperature-sensitive mutant tsK, which overproduces Vmw175 at the nonpermissive temperature (NPT) and has a mutation in the coding sequences for this polypeptide. Nuclei prepared from cells which were infected with tsK at NPT and subsequently downshifted to the permissive temperature incorporated [32P]NAD into Vmw175. This reaction did not occur when nuclei were prepared from cells constantly maintained at NPT, showing that only functional Vmw175 can be radiolabeled with [32P]NAD. The identity of the acceptor protein was confirmed by demonstrating the expected electrophoretic mobility differences between the HSV-1 and HSV-2 counterparts of Vmw175. The use of suitable inhibitors demonstrated that the reaction represented mono- or poly(ADP-ribosyl)ation, and further analysis showed the presence of long poly(ADP-ribose) chains attached to Vmw175. Poly(ADP-ribosyl)ation may be important as a cause or result of the regulation of viral transcription by Vmw175. Radiolabeling of another virus-specified polypeptide (approximate molecular weight 38,000), thought to be a structural component of the input virus, is also reported.

Electrophoresis, Polyacrylamide Gel↗

Processing of herpes simplex virus proteins and evidence that translation of thymidine kinase mRNA is initiated at three separate AUG codons.

The role which post-translational modification plays in the genesis of herpes simplex virus-induced polypeptides was investigated. Two-dimensional gel electrophoresis was used to identify those polypeptides (i) synthesized in vitro, (ii) labeled in vivo during a pulse, and (iii) labeled after a chase. Excluding glycoproteins, we detected 36 precursor or short-lived polypeptides, 8 polypeptides which were generated by post-translational modification, 46 polypeptides which were apparently not modified after synthesis, and 19 polypeptides which were either transient intermediates or not modified. Comparison of polypeptides synthesized in vitro and during an in vivo pulse showed that translation in vitro resembles quite closely translation in vivo and that amounts of protein synthesized in vivo are determined largely by the levels of mRNA. This analysis provided the basis for an investigation of the suggestion (C.M. Preston and D.J. McGeoch, J. Virol. 38:593-605, 1981) that the two polypeptides of apparent molecular weights of 43,000 (VI 43) and 39,000 (VI 39) encoded by the herpes simplex virus type 1 thymidine kinase gene are translated from a single mRNA by two in-phase initiation codons. Hybrid arrest was used to identify in vitro translation products encoded by the thymidine kinase gene. Two-dimensional gel electrophoresis showed that VI 39 was more acidic than VI 43, consistent with the predicted amino acid composition of a polypeptide whose synthesis was initiated at the second AUG codon, located 135 bases downstream from the first. Furthermore, two-dimensional gels revealed a third polypeptide whose synthesis was arrested by the same fragment. Its pI and apparent molecular weight (38,000) were compatible with initiation of translation at a third AUG codon an additional 42 bases downstream. Our findings provide strong evidence that downstream initiation codons within the thymidine kinase mRNA are used.

Codon↗