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Age-dependent changes in tolerizability with rabbit gamma-globulin in the Biozzi high and low-responder lines of mice.

The antibody response to rabbit gamma-globulin (RGG) of high-responder, but not of low-responder Biozzi mice decreased with age. Injection with aggregate-freed RGG reduced the response of high-responder but not of low-responder mice to subsequent injections with aggregated RGG. This reduction in the antibody response, formed by high-responder mice, decreased with increasing age; aggregate-freed RGG appeared to sensitize 6-month-old low-responder mice to a subsequent injection with aggregated RGG. When animals, not pretreated with aggregate-freed RGG, were immunized with RGG and lipopolysaccharide (LPS), the immune response was greatly enhanced. The response of both pretreated low and high responders was substantially smaller than that of corresponding animals which were not given aggregate-freed RGG, prior to immunization. LPS revealed an inhibitory effect on low-responder mice of aggregate-freed RGG, which was not detected upon immunization with heat-aggregated RGG alone. The involvement of nonspecific suppressor cells and of B cell tolerance in low-responder mice is discussed.

Aging

Tolerance induction as an index of age-related changes.

Tolerance to rabbit gamma globulin RGG) can be induced in newborn or three week old mice of all strains tested. In six week old SJL or NZB mice there is marked resistance against tolerance induction to RGG. This resistance increases with increasing age and is completed by the age of 12 weeks. Resistance to tolerance can be observed in 3 week old SJL animals when human IgG3 but not when human IgG1 or RGG is employed as tolerogen. Using IgG3, resistance to tolerance induction can be demonstrated in 28-34 week old A/J, C57BL/6J and DBA1/J mice. Thus resistance to tolerance induction seems to be a concomitant of aging; SJL and NZB differ from other strains only by the age at which this change is apparent. By the 6th week of age, SJL and NZB mice develop marked resistance to tolerance induction with RGG, and so do hybrids between these two strains; there is no complementation with respect to resistance against tolerance induction. Aggregate-freed iodinated rabbit gamma globulin (125I-RGG) but not mouse immunoglobulin is eliminated much more rapidly from the body of normal 6 week old SJL and NZB mice than from the body of hybrids. Complementation in the hybrids might occur and prevent a response to small quantities of aggregate-freed RGG.

Aging

A cell-mediated reaction against glomerular-bound immune complexes.

Lewis rats were given a single i.v. injection of soluble immune complexes containing human serum albumin (HSA) and rabbit anti-HSA antibodies, prepared in antigen excess. This resulted in localization of HSA and rabbit gamma globulin (RGG) in glomerular mesangial regions without producing definite histologic changes. 24 h after the injection of immune complexes, groups of these rats received lymph node cells or T-cell preparations from syngeneic donors sensitized to RGG, HSA, or ovalbumin; another group received no cells. All of these groups and a group of normal control rats were given injections of [3H]thymidine at 18, 27, and 44 h. The animals were killed 48 h after the time of cell transfer. In histologic sections, glomerular abnormalities were found only in some of the animals that had received immune complexes and lymph node cells or T-cell populations from donors sensitized to HSA or RGG; the lesions were characterized by focal and segmental increase in cells in mesangial regions. Autoradiographs revealed significantly greater numbers of labeled cells in mesangial regions and glomerular capillaries in the groups that had received immune complexes and cells from HSA- or RGG-sensitized donors than in any of the other groups. Electronmicroscopic studies suggested that the increase in cellularity in mesangial regions resulted from an influx of mononuclear phagocytes. The findings indicate that cell-mediated reactions can be initiated by the interaction between sensitized T lymphocytes and antigens present in immune complexes within mesangial regions.

Animals

RRNPP quorum-sensing repertoires in the salivarius group genomes: overrepresentation and synchronous activation of SHP/Rgg systems in Streptococcus thermophilus.

UNLABELLED: In Bacillota, quorum sensing can be mediated by RRNPP regulators that are activated by autoinducing peptides (AIPs). In this study, we derived a hidden Markov model profile from a 3D-informed alignment to establish RRNPP repertoires for 527 genomes of streptococci in the salivarius group and identified probable AIPs. The salivarius group encompasses Streptococcus salivarius and Streptococcus vestibularis, which are part of the normal human oral microflora, and Streptococcus thermophilus, one of the most widely used bacteria in the dairy industry. We observed a large amount of plasticity in these repertoires, as well as profound differences among species. Notably, S. salivarius displayed an accumulation of ComR regulators, while S. thermophilus displayed an accumulation of Rgg regulators. The latter family included SHP-associated Rgg regulators, systems in which SHPs serve as AIPs; most of these regulators control the production of post-translationally modified peptides (RaS-RiPPs). Their level of richness contrasts with the genome reduction that accompanied S. thermophilus' adaptation to milk. We then used liquid chromatography-high resolution tandem mass spectrometry to analyze the activity of the eight most common SHP/Rgg systems by characterizing the SHPs and RaS-RiPPs found in the supernatants. We detected four SHPs and one RaS-RiPP that have never been seen before in S. thermophilus, and we showed that seven of the eight SHP/Rgg systems were functional. Finally, by simultaneously monitoring the amounts of both the SHPs and RaS-RiPPs, we demonstrated that the fates of these two peptide types differed during growth. SHP presence in the supernatant was transient, a pattern likely related to the peptides' signaling role. IMPORTANCE: Streptococcus thermophilus possesses an unusually high number of Rgg regulators, which are activated by SHP pheromones that control the production of RaS-RiPPs, peptides with cyclization motifs and growth inhibition properties. We conducted an in silico analysis of regulator repertoires across a wide range of strains; a subsequent experimental study revealed that the majority of the SHP/Rgg systems were functional. Employing an optimized liquid chromatography-high resolution tandem mass spectrometry protocol, we were able to better detect and follow SHP and RaS-RiPP accumulation. While RaS-RiPPs accumulated during growth, SHPs were only transiently present in the extracellular environment. This observation suggests that we could manipulate quorum sensing by adding SHPs to the growth medium and highlights the need to study the functions of the RaS-RiPPs.

Streptococcus thermophilus

Evidence for a pathogenic role of a cell-mediated immune mechanism in experimental glomerulonephritis.

Lewis rats were injected intravenously with rabbit anti-rat glomerular basement membrane (GBM) antisera in doses that were sufficient to cause glomerular fixation of rabbit gamma globulin (RGG) detectable by immunofluorescence, but which failed to induce histologically detectable lesions. 24 h later, groups of rats received lymph node cells or serum from syngeneic donors that had been immunized with either RGG or ovalbumin; they were injected with [3H]thymidine three times during the next 2 days, and sacrificed 48 or 96 h after transfer. Only the rats given anti-GBM antiserum plus lymph node cells from donors sensitized to RGG showed histological glomerular lesions, in the form of segmental hypercellularly and necrosis. Autoradiographs revealed the greatest number of labeled cells in glomeruli in the same group. In analogous experiments, it was shown that T-cell-enriched populations could induce hypercellular glomerular reactions. On the basis of electronmicroscopic and autoradiographic observations, it appears that the glomerular hypercellularity resulted from both infiltration of mononuclear cells and proliferation of endothelial cells. The findings indicate that interaction of specifically sensitized lymphocytes with glomerular-bound antigen can induce a cell-mediated (delayed-type) reaction in glomeruli.

Animals

An Intrinsically Disordered RNA Binding Protein Modulates mRNA Translation and Storage.

Proteins with intrinsically disordered regions (IDR) play diverse functions in regulating gene expression in the cell. Many of these proteins interact with cytoplasmic ribosomes. However, the molecular functions related to the interactions are largely unclear. In this study, using an abundant RNA-binding protein, Sbp1, with a structurally well-defined RNA recognition motif and an intrinsically disordered RGG domain as a model system, we investigated how an RNA binding protein with IDR modulates mRNA storage and translation. Using genomic and molecular approaches, we show that Sbp1 slows ribosome movement on cellular mRNAs and promotes polysome stacking or aggregation. Sbp1-associated polysomes display a ring-shaped structure in addition to a beads-on-string morphology visualized under the electron microscope, likely to be an intermediate slow translation state between actively translating polysomes and the translation-sequestered RNA granule. Moreover, the binding of Sbp1 to the 5'UTRs of mRNAs represses both cap-dependent and cap-independent translation initiation of proteins, many are functionally important for general protein synthesis in the cell. Finally, post-translational modifications at the arginine in the RGG motif change the Sbp1 protein interactome and play important roles in directing cellular mRNAs to either translation or storage. Taken together, our study demonstrates that under physiological conditions, intrinsically disordered RNA binding proteins promote polysome aggregation and regulate mRNA translation and storage using multiple distinctive mechanisms. This research also establishes a framework with which functions of other IDR-containing proteins can be investigated and defined.

RNA-Binding Proteins

Delayed hypersensitivity and granulomatous response after immunization with protein antigens associated with a mycobacterial glycolipid and oil droplets.

A myocardial glycolipid (P3) mixed with protein antigens in oil-in-water emulsion induced lasting delayed hypersensitivity (DH) and granulomatous inflammation after intradermal injection into guinea pigs. This did not occur when P3 and bovine serum albumin (BSA) were given in Freund's incomplete adjuvant. The oil-in-water emulsions consisted of microscopic oil droplets suspended in aqueous medium. By separating oil and aqueous phases from BSA + P3 emulsion it was shown that antigen retained with oil droplets led to DH and granuloma formation. The association of antigen with oil droplets was P3 dependent and was quantitated with 125I-labeled BSA. The same phenomenon occurred with 125I-labeled rabbit gamma-globulin (RGG) + P3 emulsion. Fluorescein-conjugated RGG was observed in a particulate state within or on oil droplets in emulsion containing P3. These physical characteristics of antigen + P3 emulsion appeared to be important for immunogenicity.

Animals

Metabolism of homologous and heterologous serum proteins in garter snakes (Thamnophis ordinoides).

The half life (T1/2) of serum immunoglobulin (Ig) and albumin from snakes and mammals were determined in both garter snakes (Thamnophis ordinoides) and mice (Mus musculus). Metabolism of serum proteins in snakes was similar to mammalian protein metabolism in that homologous serum albumin had shorter T1/2 (16 days) than IgG (38 days). Also, reptilian and mammalian serum proteins had a relatively longer T1/2 when injected into closely related species. Thus mammalian serum Ig (rabbit gamma globulin (RGG)) had a shorter T1/2 (6.3 days) in snake than did homologous snake IgG (38 days), whereas in mice, RGG had a longer T1/2 (3.8 days) than snake Ig (0.9 days). Differences between metabolism of homologous and heterologous albumins were apparent only in snakes in which the T1/2 of homologous albumin was approximately 8-fold greater than mammalian albumin. These results indicate that metabolism of both Ig and albumin in snakes is regulated by specific receptors whereas albumin receptors have been difficult to demonstrate in mammals. The results of this study suggest that one of the factors determining the metabolism of a protein is its foreignness to the host perhaps because of receptor cross reactions.

Animals

Replication of IPN virus: a cytochemical and biochemical study in SWT cells.

Although IPN virus failed to multiply at 30 degrees, it replicated at 16 degrees and 22 degrees in SWT cells. At 22 degrees the viral eclipse period lasted nearly 6 hr with maximal virion titers attained by 24 hr, whereas replication at 16 degrees was much slower. The replication of the virion was inhibited by 0.05 mug/ml of AD which did not interfere with the production of reovirus. Biochemical studies revealed that cellular DNA synthesis was markedly reduced (greater than 50%) soon after infection whereas total RNA synthesis was enhanced. The period of rapid increase in RNA synthesis paralleled the exponential production of infectious virus. Viral inclusion bodies, revealed by acridine orange-staining of virus-infected cells (SWT and RGG-2) late in the infectious cycle, were found to contain single-stranded RNA on the basis of their staining characteristics and sensitivity to RNase.

Acridines

Fractionation of antigen reactive cells from immunized mice on columns coated with antigen or anti-immunoglobulin sera.

Immunocompetent cells obtained from NIP-RGG immunized mice were fractionated on bead columns coated with antigen or anti-immunoglobulin serum. The separated cell fractions were examined for their capacity to be stimulated by the antigen in short term culture, to produce antigen specific antibodies in the plaque assay and to bind radioactive labeled antigen. Cells which produce hapten specific antibodies or bind radioactive labeled hapten are removed from the cell population passed through a hapten-carrier complex coated column. Cells stimulated by the antigen to an increased DNA-synthesis are also retained by columns coated with the hapten-carrier-complex or the carrier alone; the fractionation seems to be carrier specific. The fractionation of cells is blocked by free antigen in the columnar fluid. However, the fractionation patterns of cells passed through anti-Ig-serum coated columns are different when antibody producing cells and cells stimulated by the antigen are compared. Whereas antibody producing cells and antigen binding cells are almost completely retained by anti-Ig-serum coated columns the cells which are stimulated by the hapten carrier complex are not removed from the passed cells. Studies to characterize the fractionated cell populations according to their sensitivity to anti-theta-serum, to the presence of Ig-receptors and to the phytohemagglutinin stimulation indicate that the antibody producing cells and the antigen binding cells have to be attributed to B-cells whereas the question whether the antigen stimulated cells are T- or B-cells cannot be definitely answered.

Animals