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Virus-specific proteins in the plasma membrane of cells lytically infected or transformed by pol-oma virus.

Antisera, raised in rats, containing specificities directed against tumor antigen of polyoma virus also react with several proteins present in the plasma membrane of mouse cells infected with the virus. The main component has an apparent molecular weight of 55,000. The appearance of this protein after infection with early temperature-sensitive A mutants was temperature-dependent like tumor antigen itself. Pulse and chase isotope experiments suggest that this protein originates from a precursor, perhaps by cleavage; its production appears to be facilitated by the A mutation. Two other components with apparent molecular weights of 61,000 and 28,000 were also present but were more variable from experiment to experiment. All proteins were absent from the plasma membranes of cells infected with a transformation-defective mutant, NG-18. Up to four virus-specific proteins could be isolated from the plasma membranes of rat, hamster, and mouse cells transformed by the virus. The possible role of the plasma membrane proteins in cell transformation is discussed.

Animals

A Multiepitope Intranasal Adenoviral Vaccine Induces Robust Mucosal Immunity and Protection against SARS‑CoV‑2.

BACKGROUND: Vaccination has been central to mitigating the COVID-19 pandemic; however, the continual emergence of SARS-CoV-2 variants of concern (VOCs) has reduced the effectiveness of current intramuscular vaccines that primarily target the Spike (S) protein. Although updated formulations are periodically introduced, there remains a critical need for next-generation vaccine platforms capable of inducing broad, variant-independent protection. Here we evaluate a heterologous intranasal (i.n.) prime-boost vaccination strategy using bovine adenoviral (BAd) and chimpanzee adenoviral (ChAd) vectors expressing the S1 subunit in combination with either full-length membrane (M) and nucleocapsid (N) proteins (Ad-S1 + N + M) or multiepitope constructs derived from M and N (Ad-S1 + Epi/N + Epi/M). The constructs were incorporated with the autophagy-inducing peptide C5 (AIP-C5) to enhance antigen-specific T-cell responses. RESULTS: In BALB/c mice, Ad-S1 + Epi/N + Epi/M vaccination induced robust S1-specific immunity while simultaneously inducing strong N- and M-specific humoral and cellular responses that were comparable to or greater than those induced by Ad-S1 + N + M. All S1-containing formulations generated high neutralizing antibody titers (~ 3.8 log₁₀) against Omicron B.1.1.529 and BA.2.86 variants, although titers against the ancestral Wuhan strain were approximately one log₁₀ lower. In K18-hACE2 mice, i.n. immunization with S1-expressing vectors provided near-complete protection against BA.2.86 challenge, with undetectable lung viral titers and viral genome copies. CONCLUSION: An i.n. multiepitope adenoviral vaccine incorporating conserved SARS-CoV-2 antigens induces robust mucosal, humoral, and cellular immune responses and confers significant protection following SARS-CoV-2 challenge.

Animals

Outer-membrane protein and lipopolysaccharide serotyping of Neisseria meningitidis by inhibition of a solid-phase radioimmunoassay.

A new procedure involving inhibition of a solid-phase radioimmunoassay was developed for specific determination of the outer-membrane protein and the lipopolysaccharide (LPS) serotypes of meningococci. Antigen was allowed to bind to the wells of a polyvinyl microtiter plate and then reacted with a limiting amount of homologous antibody which had been preincubated with buffer or a standard concentration of inhibiting antigen. The amount of antibody bound per well was quantitated by incubation with excess 125I-labeled goat anti-rabbit immunoglobulin. Typing sera for detecting eight LPS antigens and 18 protein antigens were made in rabbits by use of both the group C and group B bactericidal serotyping strains. Reactions between unabsorbed sera and purified LPS were inhibited in the LPS typing system, whereas reactions between absorbed sera and outer-membrane complex were inhibited in the protein typing system. Outer-membrane complex was used as the inhibiting antigen in both cases. Approximately 97% of the 80 group B and C strains tested were LPS typable, and 80% were protein typable. Of 51 group A strains tested, however, only 22% were LPS typable and 14% were protein typable. Several nonreciprocal correlations between the occurrence of particular LPS and protein serotype antigens on the same strain were observed, but in general the protein and LPS serotype antigens appeared to occur independently.

Antigens, Bacterial

Immunological analysis of plasma membranes of a T-strain of mycoplasma (Ureaplasma urealyticum).

The cell membranes of a T-strain of mycoplasma, obtained by ultrasonic disruption, were as effective as whole organisms in eliciting metabolism-inhibiting and complement-fixing antibodies. The soluble fraction separated from cell membranes by centrifugation at 35,000 X g showed a minor ability to elicit an antibody response as measured by metabolism inhibition and complement fixation tests. After a further centrifugation at 100,000 X g, the immunogenic activity of the soluble fraction was completely lost. Immunogenic determinants in mycoplasma membranes could also be demonstrated by adsorption tests; cell membranes were more effective than soluble fractions in adsorbing antibody capacity from the immune sera against whole cells. It has been shown by further experiments that cell membranes have at least two major antigenic determinants, which differ either in chemical nature or in capacity to adsorb and evoke antibodies, characterized by different serological behaviors.

Adsorption

Crossreacting determinants in variant-specific surface antigens of African trypanosomes.

A number of variant-specific surface antigens (VSSAs) were purified from clones of Trypanosoma brucei and T. congolense and tested for immunological crossreactivity. Anti-VSSA sera were clone-specific when tested by indirect immunofluorescence of living trypanosomes, but they were not clone-specific when tested by radioimmunoassay with purified 125I-labeled VSSAs. In this double-antibody radioimmunoassay every VSSA tested was precipitated by the homologous and all heterologous anti-VSSA sera. Any unlabeled VSSA could inhibit the heterologous precipitation reactions by 100%. The homologous precipitation reactions were effectively inhibited only by unlabeled homologous VSSA. Crossreactions between different VSSA molecules were also revealed by microcomplement fixation tests. The results confirm the presence, in VSSAs, of variable determinants specific to individual VSSAs and also show crossreacting determinants in all VSSAs tested, including those isolated from different species of trypanosomes. These results contrast with previous studies which failed to find evidence for immunological crossreactivity between different VSSA molecules. We suggest that the crossreacting determinants in VSSAs may represent common structural regions. The existence of such regions would have considerable implication for the development of theories and experiments concerning the mechanism of antigenic variation in African trypanosomes.

Animals

Immunoabsorption of membrane-specific antibodies for determination of exposed and hidden proteins in human erythrocyte membranes.

Human erythrocyte membrane proteins solubilized with the non-ionic detergent Berol EMU-043 have been characterized by crossed immunoelectrophoresis with rabbit antibodies raised against the membrane material. Three out of sixteen membrane-specific immunoprecipitates disappeared when the antisera were first absorbed with intact erythrocytes. This finding indicates that three antigens are exposed on the outside of the erythrocyte membrane. One of these antigens showed acetylcholinesterase activity, and another was the major glycoprotein (glycophorin) as shown by crossed-line immunoelectrophoresis. No antigenic determinants of the latter protein were detected within the membrane or on its inner surface. In crossed immunoelectrophoresis with antisera after absorption with washed, non-sealed membranes only one precipitate remained. This precipitate corresponded to albumin. Accordingly, several proteins seem to have antigenic determinants exposed on the inside of the membrane.

Antibodies

Properties of a basement membrane-related glycoprotein synthesized in culture by a mouse embryonal carcinoma-derived cell line.

Two glycoproteins, GP-1 and GP-2, have been isolated from an extracellular membrane synthesized in cell culture by an embryonal carcinoma-derived cell line. The amino acid and carbohydrate compositions have been determined. Both proteins are rich in half-cystine residues and contain approximately 12-15% carbohydrate. Antibodies have been obtained against one of the glycoproteins, GP-2, in rabbits. The antibody reacts with basement membranes from adult mouse and human kidney glomeruli and tubules, and all basement membranes tested from mouse embryonic tissues. The molecular properties of GP-2 are superficially similar to LETS protein; however, immunological and other criteria show that they are distinct proteins. The presence of LETS protein and GP-2 in basement membranes suggests that there are subtle interactions which are important in adhesion of epithelial cells to basement membranes.

Amino Acids

Specific cell-induced transformation of Paramecium surface antigens.

Paramecia may induce in other paramecia specific changes in the expression of genes determining surface protein synthesis, probably via cell-to-cell contact. Transformation from one antigenic type to a newly induced one is stimulated by the pretreatment of a cell with 5-fluorouracil. These observations are considered in terms of the regulation of the activity of genes in stable cells and in unstable cells which tend to transform spontaneously.

Animals

Analysis in deoxycholate of three antigenic specificities associated with the rat Thy-1 molecule.

Three antigens similar in tissue distribution can be identified on rat thymocytes; the Thy-1.1 antigen, a rat specific xenoantigen, and a rat-mouse cross-reacting xenoantigen. To determine if these three antigens were on the same molecule their behavior in detergent-solubilized extracts from thymocytes was studied. Membrane fragments containing Thy-1.1 activity were prepared by a rapid method involving the use of Tween-40 detergent, and were solubilized in deoxycholate. The 150 000 x g supernatant from this extract contained approximately 50% of the original Thy-1.1 and xenoantigen activity. The supernatant was chromatographed on Sephadex G-200, and subjected to zone sedimentation on sucrose gradients in H2O and 2H2O to determine the hydrodynamic properties of the antigens. The three antigens migrated in identical fashion in all cases, and behaved as a molecule of 28 000 daltons molecular weight. When the antigenically active fraction, recovered after chromatography on Sephadex G-200, was passed through an immunoabsorbent consisting of rabbit antibody to one of the xenoantigens, all three antigens were equally depleted compared with passage through a control column. The results of these experiments suggested that Thy-1.1 antigen and the two xenoantigens were closely associated and most probably all on the Thy-1 molecule.

Animals

Human B cell line deficient in the expression of B cell-specific glycoproteins (GP 27,35).

A human B lymphoid cell line, P3HR-1, expresses only low levels of the 27 000 and 35 000 mol.wt. B cell-specific glycoproteins (GP 27,35). Indirect antibody-binding and quantitative absorption tests with a xenoantiserum against the antigens showed that P3HR-1 cells have on their surface about 1% of the amount found on other human B lymphoblastoid cell lines. The deficit of the glycoproteins on the surface of P3HR-1 cells could be accounted for by a reduced rate of synthesis in these cells. A simple relationship between the reduced expression of GP 27,35 on P3HR-1 cells and their inability to bind Epstein-Barr virus (EBV) or express complement receptors was excluded because other B lymphoid cells which expressed neither virus-binding sites nor complement receptor had normal amounts of GP 27,35 on their surface. However, antibodies against GP 27,35 could block the absorption of EBV by EBV receptor-positive B cells.

B-Lymphocytes

Immunochemical studies on Staphylococcus aureus plasma membrane. 2. Antigenic properties.

Cytoplasma membrane and lipoteichoic acid (LTA) isolated from S. aureus Cowan I were examined serologically. LTA contains both alpha- and beta-glucosyl substituents at glycerol and most probably ester-linked alanine as well, all being antigenic determinants. In addition to LTA, the membrane contains a glycoprotein exhibiting antigenic determinant(s) in both the protein and sugar moieties.

Antigens, Bacterial

Detection of membrane-associated antigens on lymphoid cells by antibody coupled to staphylococcal protein A.

A simple technique is described for the detection of membrane-associated antigens on lymphoid cells. It is based on the observation that the protein A component of staphylococci binds to the Fc pieces of IgG molecules. Lymphocytes from various sources (mouse, rat, and human tissues) were incubated with hyperimmune antisera directed against surface determinants. Subsequent treatment with a suspension of staphylococci containing protein A permitted visualization of both the presence and distribution of determinants on the cell membrane. The method had comparable sensitivity to the fluorescent sandwich technique and could be used to detect a variety of membrane antigens on both T cells and B cells.

Animals

Does a bacterial elongation factor share a common evolutionary ancestor with actin?

Protein synthesis elongation factor Tu from E. coli shares several physical, chemical, and functional properties with actin-like proteins. Limited tryptic degradation indicates that the two polypeptides have a similar molecular architecture. These observations suggest that they could have evolved from a common ancestor, although more information will be necessary to prove or disprove this hypothesis. A partial sequence, comprising 22 aminoacid residues from the aminoterminal end of the large tryptic fragment of elongation factor Tu is presented.

Actins