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rRNA expansion segments mediate ribosome dimerization as a conserved stress response.

Inhibition of messenger RNA translation is a common feature in proteostatic stress cellular responses. Puromycin, a widely used compound for studying translation, disrupts protein synthesis by mimicking the 3' end of aminoacyl-transfer RNAs. Despite its extensive use as a research tool to probe the connection between translation activity and various physiological and pathological states, the cellular response associated with puromycin-induced translation stress remains incompletely understood. Here, we used electron tomography and topology analysis to define the effects of puromycin on the translation machinery in situ. We show that puromycin-treated neuronal cells exhibit an accumulation of eIF5A-bound ribosomes in a translationally inactive "idle" state, and thereby defining a broader role of eIF5A in ribosome homeostasis. Additionally, the idle ribosomes formed dimeric complexes mediated by ribosomal RNA expansion segments, suggesting an evolved mechanism involving these regions in translational hibernating and protecting idle ribosomes. We further show that the hibernating disome formation is not unique to puromycin administration but represents a conserved mechanism as a response to different cellular stressors including endoplasmic reticulum stress and amino acid depletion. Collectively, our findings illuminate distinct states of mammalian ribosome hibernation and dimerization, providing new insights into the relationship of cellular stress and the dynamic regulation of ribosomal activity.

Ribosomes

Membranous glomerulonephritis in congenital syphilis.

The glomerulonephritis of congenital syphilis is thought to be immune-complex mediated. We describe a case of C. S. in whom the only manifestation was a glomerulonephritis. Immunopathogenic studies allowed the identification of treponemal antigen in glomeruli. The elution of immunoglobulins from renal tissue showed that glomerular deposits contained antitreponemal antibodies. Cryoglobulins with antitreponemal activity were also isolated from the patient's serum.

Antibodies, Bacterial

Pharmacological aspects of immune reactions.

"Immunopharmacology" evolved as a field of research in its own right when it was appreciated that pharmacological methods can contribute to the understanding of immune mechanisms on the one hand or can be used to influence or even control immune reactions at all stages and levels. The best studied subjects of immunopharmacology are release and effects of the chemical mediator substances which are responsible for the reactions of effector cells thus causing the clinical symptoms in allergic or inflammatory diseases. In the type I allergic (anaphylactic) reactions the primary target cells are tissue mast cells or basophil granulocytes which discharge their granular contents upon interaction of immunoglobulin E fixed to their surface with the specific antigen or--in the anaphylactoid reaction--upon stimulation with an appropriate chemical substance (so-called histamine-liberator). In both cases the stimulus leads to an influx or intracellular shift from one compartment to another of calcium ions, which in turn trigger membrane fusion and degranulation. This process can vary from a physiological secretion (in the case of IgE-antigen-interaction) to a pathological cytolysis (in the case of high concentrations of activated complement components or other chemical histamine releasers). As long as it is secretory it is subject to vegetative and hormonal modulation and regulation, mainly by catecholamines and other substances which increase cellular cAMP levels or inhibit calcium fluxes. Although cholinergic stimuli under certain circumstances induce mast cell degranulation and histamine release no definite role has yet been established for cholinergic mechanisms in type I allergies. Type II (Cytotoxic) and type III (immune complex mediated) allergies share the complement requirement. As far as mast cells and basophils are involved in such reactions their sensitivity towards pharmacological modulators is comparable to reactions induced by chemical histamine releasers. Otherwise these types of allergic reactions are dominated by phenomena of general inflammation. In those mainly cytotoxic effects of lipases and hydrolases are involved. cAMP active agents have, therefore, only limited modulating effects and steroid hormones are more effective in inhibiting the acute lesions in type II and III allergies. Only during the last decade the involvement of chemical mediators in type IV (cellular immunity) allergic reactions has been appreciated. 26 different factors called lymphokines have been discovered and classified as mediators of cellular immune reactions. However, rather little is yet known about their chemical nature and about the influence of drugs on their production or action.

Allergens

A Golgi and electron microscopic study of a dysplastic gangliocytoma of the cerebellum.

The fine structure of a dysplastic gangliocytoma of the cerebellum is studied by means of the Golgi method and electron microscopic examination. Thick proximally unbranched dendrites with terminal arborizations and varicose inflorescences in the form of a basket are stained with the Golgi method. Axons are always descendant to the inner myelinated layer of the redistributed cerebellar cortex, while ascendant collaterals are observed at the level of the outer myelinated layer. Clear and dense-core vesicles and synapses are common in the cellular profiles under electron microscopic examination. From these data and because of the lack of putative connections through the white matter, an organized, self-regulated, catecholamine-mediated complex may be postulated.

Axons

Model-driven analysis reveals oxidative stress adaptation enabling efficient energy utilization in a Crabtree-negative Saccharomyces cerevisiae.

Although abolishing the Crabtree effect in Saccharomyces cerevisiae through a pyruvate dehydrogenase bypass eliminates carbon loss through ethanol overflow metabolism, it compromises growth rates. While the Crabtree effect has been a valuable natural adaptation, it is energetically inferior to respiration and is generally undesirable in cell factories engineered to produce assimilatory compounds. Restoring growth efficiency in Crabtree-negative strains remains a central challenge. Through adaptive laboratory evolution of the engineered strain (sZJD23) and subsequent reverse engineering, a variant (sZJD28) with markedly improved growth was identified. This improvement is driven primarily by a mutation in MED2 (encoding a Mediator complex subunit) and, to a lesser extent, a mutation in GPD1 (encoding glycerol-3-phosphate dehydrogenase). By integrating quantitative proteomics with enzyme-constrained genome-scale modelling, we demonstrate that these mutations jointly enable a more efficient mode of oxidative stress adaptation and energy utilization. The GPD1 mutation suppresses a protein-costly, suboptimal NAD⁺-recycling strategy reliant on glycerol synthesis, while the MED2 mutation reshapes the oxidative stress response towards peroxisomal detoxification. Collectively, these adjustments optimize metabolic flux distribution and reduce protein costs in energy metabolism, thereby increasing ATP availability. Our findings reveal how coordinated mutations in regulatory and metabolic genes restore growth fitness in engineered Crabtree-negative yeast.

Saccharomyces cerevisiae

Compensatory evolution to DNA replication stress is robust to nutrient availability.

Evolutionary repair refers to the compensatory evolution that follows perturbations in cellular processes. While evolutionary trajectories are often reproducible, other studies suggest they are shaped by genotype-by-environment (GxE) interactions. Here, we test the predictability of evolutionary repair in response to DNA replication stress-a severe perturbation impairing the conserved mechanisms of DNA synthesis, resulting in genetic instability. We conducted high-throughput experimental evolution on Saccharomyces cerevisiae experiencing constitutive replication stress, grown under different glucose availability. We found that glucose levels impact the physiology and adaptation rate of replication stress mutants. However, the genetics of adaptation show remarkable robustness across environments. Recurrent mutations collectively recapitulated the fitness of evolved lines and are advantageous across macronutrient availability. We also identified a novel role of the mediator complex of RNA polymerase II in adaptation to replicative stress. Our results highlight the robustness and predictability of evolutionary repair mechanisms to DNA replication stress and provide new insights into the evolutionary aspects of genome stability, with potential implications for understanding cancer development.

DNA Replication

The amplitude and the time course of the end-plate current at various pH levels in the frog sartorius muscle.

1. The amplitude and the time course of the end-plate current are dependent on the pH of the bathing solution. 2. When pH is changed from 5.4 to 9.4 the amplitude of the end-plate current is increased and its decay is speeded up. 3. The change in the amplitude seems to be a result of a variation of quantal content. 4. The change in the time course of the end-plate current is explained by assuming that the rate constants which determine the dissociation of the receptor-mediator complex are affected by a change in pH. 5. This speculation is supported by the finding that the effect of membrane potential on amplitude and time course of the end-plate current are dependent on pH of the bathing solution.

Acetylcholine

Neuropsychological dysfunction in acute viral hepatitis.

Neuropsychological dysfunction may precede, occur simultaneously with, or follow the icteric phase of viral hepatitis. Encephalitic and meningitic involvement appears to precede the onset of clinical hepatitis while the tremor syndrome usually follows the onset of illness. The Guillain-Barré syndrome, peripheral nerve disorders, and behavioral abnormalities may occur at any stage of the disease. Neuropsychological alterations noted during the prodrome of viral hepatitis usually clear without sequelae but abnormalities which follow the onset of jaundice may persist during the convalescent phase for prolonged periods. Neither occurrence, type, nor severity of neuropsychological dysfunction appear to be related to specific hepatitis viruses since both type B and non-B infections have been implicated. Furthermore, neuropsychological dysfunction does not appear to be related to the severity of the hepatitis as assessed by clinical or histological features. Although direct viral invasion of nervous tissue and immune complex-mediated damage have been postulated, the mechanism(s) of neuropsychological abnormalities remains to be determined.

Acute Disease

Impaired Glycolysis Leads to Defective Efferocytosis and Impaired Plaque Resolution in Tet2 Clonal Hematopoiesis.

BACKGROUND: Clonal hematopoiesis (CH) arising from mutations in hematopoietic genes has been identified as an important risk factor for atherosclerotic cardiovascular disease. Despite the established role of some CH mutations in promoting atherosclerosis progression, their role in clinically relevant LDL (low-density lipoprotein) lowering-induced plaque remodeling or regression has not been extensively studied. METHODS: To assess the effects of TET2 (tet methylcytosine dioxygenase 2) CH on plaque resolution, we prepared control or chimeric Tet2+/- CH mice with conditional deletion of Tet2 in hematopoietic stem cells during LDL lowering-induced plaque remodeling. After establishing atherosclerosis by Western diet feeding for 12 weeks in Ldlr-/- mice, Tet2 was deleted by tamoxifen injection, and hypercholesterolemia was either normalized to simulate clinical lipid management, or mice were continued on the Western diet. RESULTS: Unlike control mice, Tet2+/- CH mice failed to significantly reduce necrotic core area or increase fibrous cap thickness and showed impaired macrophage efferocytosis during LDL lowering. Single-cell RNA sequencing and gene set enrichment analysis of aortic cell populations revealed that Tet2 deficient monocyte/macrophage populations were defective in glycolysis, phagocytosis, and actin polymerization. Tet2-deficient bone marrow-derived macrophages and Tet2+/- induced pluripotent stem cell-derived human macrophages showed defective ability to sustain continuing rounds of efferocytosis. Bone marrow-derived macrophages displayed reduced apoptotic cell binding and internalization and impaired activity of Wiskott-Aldrich syndrome protein and SCAR (suppressor of cyclic AMP receptor) homolog complex mediated actin polymerization. We linked these defects to reduced anaerobic glycolysis and lactate levels and rescued them by lactate supplementation or by treatment with the HIF-1α (hypoxia-inducible factor 1α) activator molidustat. Molidustat treatment reversed the defects in necrotic core and fibrous cap formation during LDL lowering-induced plaque remodeling in Tet2+/- CH mice. Reduced plasma lactate levels were also shown in TET2 clonal hematopoiesis of indeterminate potential carriers in the UK Biobank. CONCLUSIONS: Our data identify impaired efferocytosis and glycolysis-lactate-actin polymerization pathways in advanced atherosclerosis as potential therapeutic targets to induce proresolving restructuring of the plaque immune cells and to promote beneficial atherosclerosis remodeling in subjects with TET2 CH.

LDL lowering

Taste profiles from single human taste papillae.

Earlier psychophysical research on single human fungiform taste papillae employed a procedure which limited subjects to selecting only one taste to describe the sensations they experienced. That procedure precludes the possibility of determining whether single papillae can mediate complex tastes, i.e., tastes consisting of more than one sensation experienced simultaneously. By using highly trained subjects and allowing them freedom to describe all sensations simultaneously elicited by a given taste stimulus, single papilla taste profiles were obtained. It is suggested that obtaining taste profiles may increase the utility of single papillae as models for study of the taste system.

Adult

Immune-related renal vein thrombosis in a renal allograft.

A patient developed a renal venous thrombosis 15 months after renal transplantation. In contrast to other cases described in the literature, the thrombosis was not related to vascular surgical trauma, but was immune-complex mediated. The patient's renal function stabilized and the nephrotic syndrome improved over 18 months follow-up during continuous oral anticoagulant therapy.

Adult

The spectrum of vasculitis: clinical, pathologic, immunologic and therapeutic considerations.

Vasculitis is a clinicopathologic process characterized by inflammation and necrosis of blood vessels. Certain disorders have vasculitis as the predominant and most obvious manifestation, whereas others have various degrees of vasculitis in association with other primary disorders. Within the entire spectrum of vasculitis virtually any size or type of blood vessel in any organ system can be involved. Most of the vasculitides can be associated directly or indirectly with immunopathogenic mechanisms. In this regard, immune complex mediation is being increasingly recognized as the underlying mechanism in several of the vasculitides. With clinical, pathologic, and immunologic criteria, certain vasculitic disorders can be clearly recognized and categorized as distinct entities, whereas in others there is an overlap of different diseases within a broader category. In recent years, several of the more serious vasculitides, such as Wegener's granulomatosis and the systemic necrotizing vasculitides of the polyarteritis nodosa group, which formerly had extremely poor prognoses, have been shown to be extraordinarily responsive to chronic low-dose cytotoxic therapy, particularly cyclophosphamide.

Adult

Infectious mononucleosis and mononucleosis syndromes.

Infectious mononucleosis (IM) and cytomegalovirus (CMV) mononucleosis are caused by a primary infection with related viruses, Epstein-Barr virus (EBV) and CMV. Despite the similarity of clinical manifestations, basic differences exist: (1) The heterophil antibody (HA) response is absent in CMV mononucleosis, whereas it is present in IM. (2) In IM atypical lymphocytosis reflects proliferation of B cells early and of T cells later in the disease course; in CMV mononucleosis the situation appears complex. (3) In blood, EBV is restricted to B lymphocytes, whereas CMV is found in polymorphonuclear and mononuclear leukocytes. (4) Complications of CMV mononucleosis such as hepatitis and pneumonitis may be due to virus cytopathic effect in target organs. Prominent tonsillopharyngitis with adenopathy, and visceral complications of IM are related to lymphoproliferation which is self-limited except in males with a rare familial defect in defense against EBV. Immune complex-mediated pathology may occur in both diseases. (5) CMV is frequently transmitted to a fetus in utero or to an infant during or after birth, and this occasionally leads to severe cytomegalic inclusion disease; vertical transmission of EBV appears to be exceptional. (6) Secondary EBV infections are associated with certain malignancies whereas such an association has not been recognized in the case of CMV. Toxoplasma gondii is another cause of HA-negative mononucleosis. Its complications in the heart, in skeletal muscle and in the central nervous system are related to direct invasion by the parasite. Cellular immunity plays an important role in defense against all three agents.

Cytomegalovirus Infections

Membranous nephropathy. Its association with multicentric angiofollicular lymph node hyperplasia.

Multicentric angiofollicular lymph node hyperplasia of the plasma cell type with systemic manifestations developed in a 51-year-old man. One year later, the nephrotic syndrome due to typical immune complex mediated membranous nephropathy developed. Elevated titers to Epstein-Barr viral antigens suggesting reactivation of a latent infection were present. The patient has required conservative medical management only. The association of membranous nephropathy with angiofollicular lymph node hyperplasia lends further evidence to the postulate that the disorder is a manifestation of chronic immune stimulation by a foreign antigen.

Antigens, Viral

A child with the nephrotic syndrome associated with endemic syphilis.

A 21-month old infant with endemic syphilis who presented with nephrotic syndrome is described. Clinically, the features correlated well with those of renal disease associated with secondary syphilis. The onset of renal disease in association with syphilis after early infancy may be a valuable aid in drawing attention to the possibility of endemic syphilis. Morphologically the features were those of an immune complex-mediated glomerulonephritis. We regard the presence of a large number of immature-looking glomeruli as a retrogressive phenomenon.

Humans

Studies on the pathogenesis of chronic inflammatory liver diseases. I. Membrane-fixed IgG on isolated hepatocytes from patients.

Membrane-fixed IgG on isolated hepatocytes from biopsy material could be demonstrated by direct immunofluorescence in nine of thirty-four patients with acute virus-B hepatitis and in seventeen of forty-nine cases with chronic active hepatitis (CAH). Patients with acute virus-A hepatitis, chronic persistent hepatitis (CPH) or metabolic liver diseases did not show this phenomenon. Cases with CAH and IgG on the hepatocytes-HBsAg-positive as well as HBsAg-negative-had high inflammatory activity. Antibodies against HBsAg were not present in any serum. Autoimmune phenomena (antibodies against smooth muscle, mitochondria and nuclei) were only rarely demonstrable. The findings suggest that an antibody- or immune complex-mediated lymphocyte cytotoxicity may be involved in the pathogenesis of chronic liver diseases.

Antibodies

Pathogenesis of acute avian malaria. III. Antigen and antibody complexes as a mediator of anemia in acute Plasmodium gallinaceum infections of chickens.

In a study of antigens and antibodies found in malarious chicken blood, antigen activity was found in plasma, and in hypertonic saline eluates of blood cells. A soluble antigen was extracted from parasites liberated from erythrocytes. Two classes of antigen were differentiated, one a globulin associated "serum antigen" which was found to show identity with a serum antigen from blood of rats with acute Babesia rodhaini infection, and another that was associated with the Plasmodium gallinaceum parasite. The plasma also contained antibody to both classes of antigen. Study of blood cells from normal chickens made anemic by injections of autohemagglutinin-free malarious plasma indicated that both serum antigen and its antibody were present in eluates of the washed blood cells. Direct immunofluorescent tests of these cells with conjugated antibody to serum antigen, and with conjugated antibody to P. gallinaceum parasite antigen showed that they reacted with the antibody to serum antigen but gave no reaction with antibody to parasite antigen. From this information it is suggested that soluble complexes of serum antigen and its antibody combined with the erythrocytes, and that these complexes acted as opsonin to cause the cells to be sequestered and destroyed in the spleen, or may have fixed complement to cause intravascular hemolysis. The serologic identity of serum antigen from malarious chickens and from rats with babesiosis, and its distinction from parasite antigen, led to the speculation that it might be an autoantigenic macroglobulin.

Anemia, Hemolytic, Autoimmune