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Biomedical subjects

G Russ

Publications and source records attributed to G Russ.

At least 19 recordsLinked to original sources

Use of Brefeldin A to localize block in intracellular transport of vesicular stomatitis virus G protein on interferon-treated cells.

Brefeldin A (BFA) induced a rapid redistribution of vesicular stomatitis virus G protein (VSV-G) to the endoplasmatic reticulum (ER) in interferon (IFN)-pretreated cells. This result is consistent with accumulation of VSV-G in the trans-Golgi (GC) complex in cells pretreated with IFN and implies that IFN does not interfere with the ability of BFA to induce redistribution of proteins from GC to ER.

Animals

Role of pulmonary blood flow in postpneumonectomy lung growth.

To study the influence of blood flow on postpneumonectomy lung growth, we banded the left caudal lobe pulmonary artery of eight ferrets in such a way that blood flow to the caudal lobe did not increase when the right lung was excised 1 wk later. The fraction of the cardiac output received by the right lung before pneumonectomy was therefore directed entirely to the left cranial lobe. Three weeks after pneumonectomy the weight, volume, and protein and DNA contents of the two lobes of the left lung were measured and compared with those of five unoperated animals and eight animals after right pneumonectomy alone. Although its perfusion did not increase after pneumonectomy, the left caudal lobe of banded animals participated in compensatory growth, increasing in weight and protein and DNA contents. Although the cranial lobe of banded animals received 25% more of the cardiac output than the same lobe in pneumonectomized animals, cranial lobe volume and protein and DNA contents in the two groups were similar. Caudal lobes were smaller in banded than in simple pneumonectomized animals and tended to contain less protein, whereas the cranial lobes tended to be heavier. We conclude that increased pulmonary perfusion is not necessary for compensatory lung growth in adult ferrets, but it may modify this response.

Animals

Reduced expression of HLA-DP antigens on PWM stimulated T lymphocytes in patients suffering from psoriasis vulgaris.

24 psoriasis vulgaris patients were investigated for the expression of class II HLA antigens on the surface of PWM-stimulated T lymphocytes. The percentage of the expression of HLA-DP antigens ranged from 50.1% to 82.6% compared to a 100% level in healthy controls (p less than 0.005). No significant differences in the expression of HLA-DR antigens were observed. A higher frequency of some HLA antigens was found in the group of patients studied: B13 - 23.1%/6.2%, B 17 - 15.4%/7.1%, and Dw7 - 59.4%/15.8%.

Concanavalin A

Influenza virus hemagglutinin trimers and monomers maintain distinct biochemical modifications and intracellular distribution in brefeldin A-treated cells.

Brefeldin A (BFA) induces the retrograde transport of proteins from the Golgi complex (GC) to the endoplasmic reticulum (ER). It is uncertain, however, whether the drug completely merges the ER with post-ER compartments, or whether some of their elements remain physically and functionally distinct. We investigated this question by the use of monoclonal antibodies specific for monomers and trimers of the influenza virus hemagglutinin (HA). In untreated influenza virus-infected cells, monomers and trimers almost exclusively partition into the ER and GC, respectively. In BFA-treated cells, both monomers and trimers are detected in the ER by immunofluorescence. Cell fractionation experiments indicate, however, that whereas HA monomers synthesized in the presence of BFA reside predominantly in vesicles with a characteristic density of the ER, HA trimers are primarily located in lighter vesicles characteristic of post-ER compartments. Biochemical experiments confirm that in BFA-treated cells, trimers are more extensively modified than monomers by GC-associated enzymes. Additional immunofluorescence experiments reveal that in BFA-treated cells, HA monomers can exist in an ER subcompartment less accessible to trimers and, conversely, that trimers are present in a vesicular compartment less accessible to monomers. These findings favor the existence of a post-ER compartment for which communication with the ER is maintained in the presence of BFA and suggest that trimers cycle between this compartment and the ER, but have access to only a portion of the ER.

Animals

Type-common and type-specific monoclonal antibodies to herpes simplex virus types 1 and 2.

Seventeen monoclonal antibodies (Mabs) reacting specifically with the cells infected with herpes simplex viruses type 1 (HSV-1) and type 2 (HSV-2) were characterized by a variety of immunological tests such as radioimmunoprecipitation, immunoblotting and virus-neutralization. The majority of Mabs was directed against glycoprotein B (anti-gB), six reacted with glycoprotein C (anti-gC) and one with glycoprotein G (anti-gG). Six anti-gB Mabs reacted with both types of HSV (anti-gB-1,2), two anti-gB and all the six anti-gC Mabs have been specific for HSV-1 (anti-gB-1 and anti-gC-1). The remaining two anti-gB Mabs and the anti-gG have been specific to HSV-2 (anti-gB-2 and anti-gG). Only three out of the seventeen examined Mabs neutralized the virus.

Animals

Antigenic glycopolypeptides HA1 and HA2 of influenza virus haemagglutinin. III. Reactivity with human convalescent sera.

The immune reactivity to both haemagglutinin glycopolypeptides HA1 and HA2 [prepared from bromelain-released haemagglutinin of influenza virus A/Dunedin/4/73 (H3N2)], was demonstrated by both gel double immundiffusion and radioimmunoassay in human convalescent sera obtained after natural infection during influenza epidemics in 1974/75 and 1976/77. In gel double immunodiffusion, the precipitin line(s) corresponding to glycopolypeptide HA1 were always more distinct than precipin line(s) corresponding to glycopolypeptide HA2. In radioimmunoassay, human convalescent sera revealed higher titres for binding of 125-I-labelled HA2 than for 125-I-labelled HA1. Characterization of human convalescent sera was completed by haemagglutination-inhibition test.

Antibodies, Viral

Antigenic glycopolypeptides HA1 and HA2 of influenza virus haemagglutinin. IV. Immunogenic properties of separated haemagglutinin glycopolypeptides.

Highly purified haemagglutinin glycopolypeptides HA1 and HA2 were effective in eliciting an antibody response. HA2 had a markedly greater immunogenic potential than HA1. In gel double immunodiffusion, sera from rabbits immunized with HA2 produced more distinct precipitin lines than sera obtained by immunization with HA1. Both kinds of rabbit sera gave precipitation with homologous antigen and with bromelain-released and purified haemagglutinin (B-HA). In radioimmunoassay, sera from rabbits immunized with HA2 revealed considerable titres for 125I-labelled HA2 binding and reacted preferentially with 125I-labelled HA2. In general, sera from rabbits immunized with HA1 exhibited low titres for 125I-labelled HA1 binding: usually they reacted also with 125I-labelled B-HA and 125I-labelled HA2. Only rabbits injected with a few doses of HA1 at short intervals revealed preferential binding for 125I-labelled HA1. Glycopolypeptides HA1 and HA2 failed to induce haemagglutination-inhibiting and virus neutralizing antibodies in rabbits.

Animals

Use of Staphylococcus aureus for rapid radioimmunoassay of influenza A virus haemagglutinin.

In a rapid method for the radioimmunoassay (RIA) of influenza A virus haemagglutinin, Staphylococcus aureus (strain Cowan I, Czechoslovak State Collection No Mau 55/64) was used for separation of bound and free antigens. With rabbit and human immune sera, the binding of antigen-antibody complexes to heat-killed, formalin-fixed staphylocci was comparable to the double antibody technique. The time required for the completion of binding reaction was about 10 min compared to 18--24 hr required for double antibody precipitation. S. aureus did not bind directly (i.e. in the absence of specific antibody) a significant amount of radiolabelled antigen.

Animals

Radioimmunoassay of influenza A virus haemagglutinin. I. Preparation and properties of radioactive 125I-labelled bromelain-released haemagglutinin.

Haemagglutinin released from influenza A virus recombinant MRC11 [antigenically identical to the strain A/Port Chalmers/1/73 (H3N2)] by bromelain treatment and purified by rate zonal centrifugation (further on B-HA) was examined for eventual contamination by neuraminidase. According to specific enzymatic activities corresponding to MRC11 virus and B-HA alone respectively, B-HA contained less than 0.1% of enzymatically active neuraminidase orginally present in the virus. Gel double diffusion tests, specifities of rabbit antisera induced by B-HA, as well as radioimmunoprecipitation experiments demonstrated that B-HA was devoid of any antigenically active neuraminidase. Precipitation of 125I-labelled B-HA with antisera to influenza virus recombinants with N2 neuraminidase has been evidently caused by antibodies to host antigenic determinaant(s) present in these sera. With respect to purity as well as radioimmunoprecipitation properties, B-HA is quite suitable for radioimmunoassay experiments.

Antibodies, Viral

Marked difference in electrophoretic migration rates between two influenza A viruses.

Comparative moving boundary electrophoresis revealed that influenza virus A/PR/8/34 (H0N1) has a 2.5 times higher electrophoretic migration rate at pH 7 than influenza virus A/Singpore/1/57 (H2N2). This difference was the same whether the compared viruses were purified first by either ammonium sulphate precipitation or adsorption onto and elution from red blood cells and then by density gradient centrifugation. The same electrophoretic methods was used for testing the homogeneity of influenza virus preparations purified by either method.

Centrifugation, Density Gradient

Antigenic glycopolypeptides HA1 and HA2 of influenza virus haemagglutinin. I. Gel filtration in 6 M guanidine hydrochloride.

Highly purified glycopolypeptides HA1 and HA2 were separated from bromelain-released haemagglutinin of influenza virus A/Dunedin/4/73 (H3N2) by gel filtration in 6 M guanidine hydrochloride under reducing conditions. The purity of both glycopolypeptides was proved by extensive studies. Despite the lack of C-terminal end, the isolated HA2 glycopolypeptide displayed some hydrophobic properties.

Chromatography, Gel

Improved detection by immunodiffusion of type-specific influenza antibody in avian sera.

Various solvents and kinds of agar and agarose as well as various ribonucleoprotein (RNP) antigen preparations were tested in a search for optimal conditions for the detection of low levels of type-specific influenza antibody in avian sera by gel double diffusion. The best results were obtained with one kind of agarose in a solvent with lowered ionic strength (approx. 0.075 M). A hypertonic solvent usually gave worse or negative results, with the exception of one kind of agarose. In general, agarose yielded better results than agar. The results of immuno-precipitation were affected by the strain of influenza virus used for the preparation of RNP antigen.

Animals

Antigenic glycopolypeptides HA1 and HA2 of influenza virus haemagglutinin. II. Reactivity with rabbit sera against intact virus and purified undissociated haemagglutinin.

Rabbit sera produced against either intact virus or purified undissociated haemagglutinin were examined for reactivity with highly purified haemagglutinin glycopolypeptides. Sensitive radioimmunoassay for 125I-labelled glycopolypeptides revealed antibody reactive with either glycopolypeptide HA1, or glycopolypeptide HA2. Antibodies against the carbohydrate moiety were responsible only for a part of the binding activity. Under the conditions employed, the binding activity for glycopolypeptide HA2 was much stronger than for glycopolypeptide HA1. Competition assays suggested that immune reactivities were due to distinct antibody populations (i.e. with a specifity for glycopolypeptide HA1 and glycopolypeptide HA2, respectively). The immune reactivity to both haemagglutinin constituents, glycopolypeptides HA1 and HA2, was also shown by gel double diffusion. The precipitin line(s) corresponding to glycopolypeptide HA1 was (were) usually more distinct than precipitin line(s) corresponding to glycopolypeptide HA2. The glycopolypeptides HA1 and HA2 showed the reaction of nonidentity in immunodiffusion analysis.

Animals

Evaluation of the effectiveness of receptor destroying enzyme preparations.

A procedure has been developed for testing receptor destroying enzyme (RDE) preparations used to remove nonspecific inhibitors before carrying out haemagglutination inhibition tests with influenza virus. Four criteria should be taken into account: (1) titre of RDE, usually used to indicate the activity of the preparation; (2) neuraminidase activity of the preparation, determined biochemically, which partially corresponds to the RDE titre; (3) direct demonstration of the complete removal of nonspecific inhibitors; and (4) determination that the RDE preparation does not affect specific antibody.

Antigens, Viral

A competitive-inhibition radioimmunoassay for influenza virus envelope antigens.

A double-antibody competitive-inhibition radioimmunoassay for influenza virus envelope antigens is described. A viral antigen preparation from influenza A virus recombinant MRC11 [antigenically identical to A/Port Chalmers/1/73 (H3N2)] consisting of haemagglutinin and neuraminidase was labelled with radioiodine. Rabbit antisera were allowed to react with the labelled antigen and the resultant antigen-antibody complexes were precipitated with the appropriate antiglobulin. The competitive-inhibition radioimmunoassay was very sensitive in elucidation of differences even among closely related influenza virus strains. Attempts have been made to eliminate neuraminidase from radioimmunoprecipitation in order to obtain a competitive-inhibition radioimmunoassay system for haemagglutinin alone.

Antigens, Viral

Electrophoretic separation and characterization of subunits released from influenza virus by detergents.

Subunits released from influenza A/Singapore/1/57 (H2N2) virus by either Triton-X-100 (T-X-100); or sodium lauryl sarcosinate (SLS) or ether were separated by electrophoresis in agarose suspension into a rapidly migrating fraction (I) and a slowly migrating fraction (II). Fraction I obtained after T-X-100 treatment contained the viral ribonucleoprotein (RNP) in a form indistinguishable from the obtained after ether treatment. SLS treatment of the virus resulted in a rapidly migrating fraction containing only the protein part of the viral RNP. Fraction II obtained after T-X-100 or SLS treatment contained both haemagglutinin (HA) and neuraminidase (NA), mostly dissociated from each other, in contrast to fraction II obtained after ether treatment which contained mixed aggregates of HA and NA. The yields of electrophoretically isolated RNP and HA-NA were essentially the same irrespective of whether T-X-100 or ether was used for virus disruption. Treatment of virus by T-X-100 and subsequent removal of the latter resulted in a 10-20-fold increase of the HA activity. After sodium dodecyl sulphate (SDS) treatment of the virus, the NA activity was found in a heterogeneous fraction with surprisingly high migration rate towards the anode, indicating that NA remained active despite its extensive SDS binding.

Electrophoresis, Polyacrylamide Gel