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Biomedical subjects

J R Stephenson

Publications and source records attributed to J R Stephenson.

At least 37 records · Page 2Linked to original sources

Production of measles nucleoprotein in different expression systems and its use as a diagnostic reagent.

Measles nucleoprotein has been successfully expressed in three different hosts, bacterial (Escherichia coli BL21 DE3), insect (Spodoptera frugiperda; Sf9) and mammalian (primary human fibroblasts) cells, each producing an antigenic protein of M(r) 60 kDa. The nucleoprotein produced in all three hosts was used in an ELISA for the detection of antibodies to measles virus in a cohort of haemagglutinin-positive or -negative human sera. Data produced from baculovirus and adenovirus-based antigens indicated that there was good correlation between the ELISA results and previous haemagglutination inhibition test data, and there was little background interference by cellular proteins or the development of false positive or negative results. The assay was rapid as it could be carried out in under 4 h, sensitive as the sera could be diluted by at least 1000-fold, and versatile as both IgG and IgM could be detected and differentiated.

Animals↗

The NS1 protein of tick-borne encephalitis virus forms multimeric species upon secretion from the host cell.

Flaviviruses elicit a humoral immune response to two virus-encoded, membrane-associated glycoproteins. One is the major virion surface envelope protein (E), which is recognized by antibody, whereas the other is a secreted, heavily glycosylated non-structural protein (NS1). Inoculation with either protein can give rise to a protective immune response, as can the passive transfer of E and NS1 monospecific monoclonal antibodies. Experiments reported here demonstrate that the secreted form of NS1, whether from cells infected with tick-borne encephalitis virus (TBEV) or from cells infected with a defective recombinant adenovirus containing the NS1 gene, occurs chiefly as a pentamer or hexamer and occasionally as a decamer or dodecamer. Intracellular forms of this protein however occur only as dimers. The higher M(r) forms secreted from the cell are exquisitely sensitive to detergent, suggesting they are held together by hydrophobic bonds. Both intracellular and extracellular forms of the dimer can be dissociated by heat, but at different temperatures. Unlike similar proteins from mosquito-borne viruses. NS1 from TBEV-infected cells cannot be dissociated at ambient temperatures by extremes of pH. Studies on the antigenic structure of this protein show it to have several highly conserved epitopes, confirming similar earlier conclusions from amino acid sequence analyses.

Adenoviridae↗

Protection elicited by a replication-defective adenovirus vector expressing the tick-borne encephalitis virus non-structural glycoprotein NS1.

Tick-borne encephalitis virus (TBEV) encodes a conserved, immunogenic, non-structural protein NS1 that is glycosylated and secreted from infected cells in an oligomeric form. An adenovirus recombinant, RAd51, expressing high levels of TBEV NS1 has previously been demonstrated to protect mice against a lethal challenge with TBEV. We show here that BALB/c mice infected with TBEV experienced a transient viraemia between days 3 to 5 post-inoculation that was detectable prior to the encephalitic phase of infection. Mice vaccinated with RAd51 were protected against both the viraemic and encephalitic infections associated with the TBEV challenge. Protection was demonstrated to be due to NS1 synthesized de novo from RAd51 in the vaccinated mice. Since TBEV NS1 is expressed on the cell surface, antibody-dependent complement-mediated cytolysis (CMC) of infected cells was considered as a possible mechanism of protection. Vaccination with the recombinant adenovirus proved to be effective in a mouse strain carrying a genetic deletion in the complement receptor C5. CMC is therefore not an essential component of the observed protective immune response.

Adenoviridae↗

Evidence of persistent measles virus infection in Crohn's disease.

Transmission electron microscopy was used to examine the microvasculature of perfusion-fixed tissues from Crohn's disease and control patients. Paramyxovirus-like particles, and inclusions consisting of condensations of nucleocapsid, in giant cells and endothelium at foci of vascular injury were identified in all 9 Crohn's disease patients. Tissues from patients with Crohn's disease were also examined by either in situ hybridisation (n = 10) or immunohistochemistry (n = 15), and compared to inflammatory and noninflammatory controls (n = 22). Hybridisation for measles virus N-protein genomic RNA was positive in all cases of Crohn's disease localising to foci of granulomatous vasculitis and lymphoid follicles. Positive immunohistochemical staining for measles virus nucleocapsid protein was positive in 13 of 15 patients with Crohn's disease, localising to foci of granulomatous inflammation. Hybridisation for measles virus RNA was positive in a minority of control intestinal tissues; viral inclusions were not seen ultrastructurally. Immunostaining was negative in control cases of intestinal tuberculosis. These observations suggest that measles virus is capable of causing persistent infection of the intestine and that Crohn's disease may be caused by a granulomatous vasculitis in response to this virus.

Antibodies, Viral↗

The membrane binding C-terminus of protein A from Staphylococcus aureus affects its cellular localization and causes structural deformation when expressed in Escherichia coli.

Protein A from Staphylococcus aureus is a powerful diagnostic reagent and has several uses in human disease therapy. Expression in non-pathogenic Escherichia coli containing recombinant plasmids coding for this protein has increased its availability, but can reduce the stability of the plasmid-bearing host. By employing immune electron microscopy, we have determined that E. coli containing stable plasmids coding for a truncated version of protein A, without the membrane binding site, secrete this protein through the cytoplasmic membrane and into the periplasmic space, where it accumulates. E. coli containing unstable plasmids, however, which code for the complete protein including the membrane-binding site, target the protein into the cytoplasmic membrane. This accumulation of protein A in the E. coli cytoplasmic membrane inhibits the formation of septa between dividing cells and results in aberrant elongated, multi-chromosomal forms.

Amino Acid Sequence↗

Rapid detection of viruses of the tick-borne encephalitis virus complex by RT-PCR of viral RNA.

Studies were performed to identify a pair of primers, specific for the tick-borne encephalitis (TBE) virus complex of the Flaviviridae, with which to develop a rapid and specific identification system based on reverse transcription and the polymerase chain reaction (RT-PCR). The specificity of a putative primer pair was examined by RT-PCR of representative viruses from other antigenic complexes of the Flaviviridae and by computer sequence homology checks. All viruses of the TBE complex tested, with a single exception, were identified by RT-PCR using the identified primer pair. Accumulated data suggest that one of the putative primers identified in these studies may have flavivirus group specificity. The advantages of such a primer in the development of identification systems for all virus complexes of the Flaviviridae is discussed.

Base Sequence↗

Nucleotide sequence of the envelope protein of a Turkish isolate of tick-borne encephalitis (TBE) virus is distinct from other viruses of the TBE virus complex.

Turkish tick-borne encephalitis (TTE) virus causes an acute form of meningoencephalomyelitis in sheep in the north-western region of Turkey. The clinical syndrome resembles louping ill (LI) and the viruses responsible for both LI and TTE are members of the tick-borne encephalitis (TBE) complex of the Flaviviridae. The envelope protein gene of TTE virus was reverse-transcribed, amplified, cloned and sequenced. Alignment of the resultant sequence with those from other viruses of the TBE complex reveals that TTE virus is more closely related, at both nucleotide and amino acid levels (84.6% and 96% respectively), to the Central European (CEE) subtype of the TBE virus, usually associated with human disease. The relationship with LI virus is more distant (83% and 93.5% respectively). These studies support the assertion that the ovine encephalomyelitis found in Turkey is caused by a virus that is genetically distinct from known strains of both LI and CEE viruses and from a number of other known viruses of the TBE complex.

Amino Acid Sequence↗

Measles virus nucleocapsid protein expressed in insect cells assembles into nucleocapsid-like structures.

The gene encoding the major nucleocapsid, N, protein of measles virus has been inserted into a baculovirus vector under the control of the polyhedrin promoter. Insect cells infected with this recombinant baculovirus synthesize high levels of measles N protein, up to 40% of total soluble cell protein. The recombinant protein is recognized by sera from convalescent patients, vaccinees and patients with subacute sclerosing panencephalitis and thus could form the basis of a simple diagnostic assay. Nucleocapsid-like structures, similar to those found in mammalian cells infected with measles virus, can be observed in both the nucleus and cytoplasm of the infected insect cells. These have many structural features in common with nucleocapsids found in measles virus-infected cells, but are longer (up to 2 microns) and have a lower buoyant density. Measles N protein thus appears to be capable of assembling into nucleocapsid-like structures in the absence of measles virion RNA or other viral proteins.

Animals↗

Bacteraemia due to recurrent reinfection with Staphylococcus epidermidis associated with defective opsonisation and procidin function in serum.

AIMS: To differentiate between reinfection and relapsing infection with Staphylococcus epidermidis in a middle-aged woman with defective opsonisation and procidin function in serum. METHODS: Microbiological typing was done by biotyping, phage typing, and polyacrylamide gel electrophoresis of radiolabelled bacterial proteins (radioPAGE method). Polymorphonuclear cell function was assessed in vitro by phagocytosis and killing of Candida albicans; measurement of neutrophil random locomotion and chemotaxis; reduction of nitroblue tetrazolium after stimulation by opsonised Candida and a radiometric saccharomyces opsonisation assay. The effect of plasma infusions on opsonic activity was assessed by chemiluminescence using control polymorphonuclear leucocytes with a laboratory strain of S epidermidis opsonised with either patient or control serum. RESULTS: Recurrent reinfection with different strains of Staphylococcus epidermidis rather than relapsing infection was confirmed as having occurred by typing bacterial strains. The RadioPAGE method detected all the S epidermidis strains involved in this patient's illness. The patient's serum was shown to be defective in both opsonin and procidin function. The defects were correctable in vitro by the addition of normal serum. Clinical recovery occurred after repeated infusions of normal fresh frozen plasma and prolonged antibacterial treatment; antibacterial treatment alone was insufficient. CONCLUSIONS: The radioPAGE method is useful in distinguishing recurrent reinfection with S epidermidis from relapsing infection with this organism. Elucidation of the nature of, and underlying predisposition to, infection in the patient studied allowed a rational treatment plan of plasma infusion combined with antibacterial treatment to be devised which ultimately proved successful.

Autoradiography↗

Surgical treatment of displaced intraarticular fractures of the calcaneus. A combined lateral and medial approach.

Twenty-two patients with 22 displaced intraarticular fractures of the calcaneus were treated by open reduction and internal fixation using a lateral approach and, when needed, a medial approach, followed by early motion. These patients were evaluated from 16 to 72 months (average, 37 months) after surgery. At follow-up evaluation, the result was assessed on the basis of restoration of anatomy and function. Combining the anatomic and functional findings, the results in this series were good in 17 patients, fair in one, and poor in four.

Adult↗

Comparison of the pathogenicity for pregnant sheep of Rift Valley fever virus and a live attenuated vaccine.

A live attenuated mutant of Rift Valley fever virus, MV P12, was previously shown to be non-pathogenic in young lambs, but capable of producing protective immunity. The studies reported here show that the abortion in sheep caused by an infection with virulent virus is the result of necrosis of the maternal villi and cotyledons arising from an acute inflammation of the maternal caruncles. Pregnant ewes infected with the attenuated mutant virus MV P12 showed none of these lesions in the placenta and gave birth to healthy lambs. Colostrum from ewes infected with MV P12 virus was able to induce protective immunity in the offspring. These data along with previously published results suggest that the mutant virus MV P12 is an excellent candidate for use as a live attenuated veterinary vaccine.

Abortion, Veterinary↗

Yellow fever 17DD vaccine virus is temperature sensitive when grown in mosquito C6-36 cells.

Twenty-three yellow fever (YF) vaccine viruses and three wild-type YF viruses were propagated independently in human adenocarcinoma (SW13) cells and mosquito Aedes albopictus C6-36 cells. The three YF 17DD vaccine viruses were found to be slightly temperature sensitive (ts) at 39.5 degrees C versus 37.0 degrees C (efficiency of plaquing 0.04 to 0.1) following propagation in C6-36 but not in SW13 cells. A plaque-purified preparation of the 17DD vaccine manufactured in Brazil was ts when grown in C6-36 cells and remained ts when passaged back into the SW13 cell line.

Aedes↗

Variation in the biological function of envelope protein epitopes of yellow fever vaccine viruses detected with monoclonal antibodies.

Three different virus strains (17D-204, 17DD and the French neurotropic vaccine) have been used as live attenuated yellow fever (YF) vaccines and are manufactured in different centres around the world. The envelope proteins of these vaccine viruses were examined and compared using mouse monoclonal antibodies (MAbs) in haemagglutination inhibition (HAI) and neutralization (N) tests. The epitopes eliciting HAI and/or N were found to vary depending on the virus examined. Such variation was also found between vaccine viruses of the same strain manufactured in different centres. These data were confirmed by the use of mouse polyclonal antisera. On the basis of the MAb results in HAI tests a dendrogram of the similarity coefficients between the viruses was constructed and showed that the viruses could be placed into three major groups. Thus, it is concluded that YF vaccines manufactured in different centres are antigenically distinct as recognized by the mouse immune system.

Antibodies, Monoclonal↗

High-level expression of the tick-borne encephalitis virus NS1 protein by using an adenovirus-based vector: protection elicited in a murine model.

Tick-borne encephalitis virus (TBEV) encodes an abundant, highly immunogenic nonstructural glycoprotein, NS1. The function of this protein has yet to be determined. We have cloned the NS1 gene from the Neudorfl strain of TBEV under the control of the powerful constitutive cytomegalovirus major immediate-early promoter into an adenovirus E1 deletion mutant. The novel combination of the cytomegalovirus immediate-early promoter and the adenovirus vector produced extremely high levels of NS1 expression in cells which do not support replication of the adenovirus deletion mutant. The recombinant protein was shown to be indistinguishable from authentic TBEV NS1 in its (i) apparent molecular weight by polyacrylamide gel electrophoresis, (ii) glycosylation pattern, (iii) ability to form high-molecular-weight complexes, and (iv) ability to be secreted from cells. Appropriate processing of NS1 expressed by the adenovirus recombinant occurred independently of any additional TBEV-encoded gene function. When directly inoculated into mice, the recombinant adenovirus RAd51 was shown to elicit an antibody response to the TBEV NS1 protein. Immunization with RAd51 conferred protection against challenge with TBEV.

Adenoviridae↗

X-ray solution scattering of Sindbis virus. Changes in conformation induced at low pH.

Alphaviruses, like many enveloped animal viruses, enter the cell by fusing with the cell membrane. This fusion occurs only in coated vesicles at a low pH. By using X-ray solution scattering of highly purified virus particles we have gained direct evidence that a drop in pH does not alter the structure of the virus core but does cause a significant change in the structure of the virus envelope. Thus these experiments give direct evidence to support the hypothesis that a reduction in pH causes a conformational change in the virus E protein, which enables it to promote fusion with the cell envelope and trigger virus infection.

Hydrogen-Ion Concentration↗

Recurrent CAPD peritonitis caused by coagulase-negative staphylococci: re-infection or relapse determined by clinical criteria and typing methods.

Four hundred consecutive episodes of continuous ambulatory peritoneal dialysis (CAPD)-associated peritonitis in 105 patients were analysed. Of these episodes 161 (40.25%) were caused by coagulase-negative staphylococci (CNS). Thirty-seven patients developed recurrent attacks (3-10) of peritonitis and CNS accounted for 72 (60%) of these episodes. Classification of reinfection or relapse in 67 of these recurrent episodes of peritonitis was based on clinical criteria alone. This was compared with the results of three typing methods of CNS strains: biotyping plus antibiograms, immunoblotting and 35S-methionine-labelled protein patterns (radio-PAGE). Radio-PAGE was the most discriminatory method followed by biotyping with antibiograms and then immunoblotting. There was total agreement between clinical diagnosis and the three typing methods in 67.2% of episodes but there was total disagreement between the clinical diagnosis and the three typing methods in 11.9%, suggesting inaccurate clinical diagnosis, and in 20.8% typing by at least one method differed from the clinical criteria. Thus, clinical criteria alone are inadequate for the accurate distinction of reinfection from relapse in recurrent CNS peritonitis. This distinction is desirable for optimal management and accurate assessment of different therapies. We suggest that CNS strains from peritoneal dialysate are stored for future typing should the patient develop repeated episodes of peritonitis, to aid in the diagnosis and management of such patients.

Autoradiography↗