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Studies of the mechanism of lymphocyte-mediated cytolysis. VII. Two stages in the T cell-mediated lytic cycle with distinct cation requirements.

The lysis of allogeneic cells by cytolytically active T lymphocytes has been shown to involve two stages, Each with distinct cation requirements. Cytolysis required the presence of Ca++ ions, but addition of Mg++ to Ca++ containing medium synergistically enhanced target cell destruction. This synergistic effect resulted form kinetically separable events mediated by these cations. Thus, optimal adhesions between killer and target cells necessitated the presence of Mg++; interactions also occurred, but less efficiently, in the presence of Ca++. Lymphocyte-target cell interactions resulting from the present of Mg++ did not lead to the lysis of the target cell, until Ca++ were added. A "late" stage of the establishment of a target cell lesion is thus uniquely served by Ca++.

Animals

Phytoplasma-plant interactions: effector-mediated host reprogramming, hormonal crosstalk, metabolic alterations and plant-mediated vector manipulation.

Phytoplasmas are wall-less, phloem-restricted bacterial pathogens that infect over 1,000 plant species, causing substantial losses in agriculture, horticulture, and forestry worldwide. Despite their reduced genomes and limited metabolic autonomy, these obligate parasites colonize diverse hosts through secreted effector proteins that extensively reprogram plant development, metabolism, immune signalling, and vector interactions. Advances in genomics, transcriptomics, proteomics, metabolomics, and functional studies have substantially clarified the molecular basis of phytoplasma pathogenicity and symptom development. This review synthesizes current understanding of phytoplasma-plant interactions, covering phytoplasma biology, genome evolution, and the infection cycle across plant and insect vector hosts. We examine the molecular functions of key effectors, SAP11, SAP54/PHYL1, SAP05, TENGU, SWP1, and recently identified virulence factors, focusing on how they target host transcription factors, phytohormone networks, protein degradation pathways, and immune responses to promote colonization and disease progression. We further discuss how phytoplasma infection disrupts phytohormone signalling, primary and secondary metabolism, and developmental programs to produce characteristic disease symptoms, with particular attention to pathogen-induced changes in host volatiles and nutritional quality that alter vector behaviour and enhance transmission. Finally, we summarize insights from multi-omics studies and emerging management strategies, including CRISPR-based genome editing, RNAi, rapid molecular diagnostics, resistant cultivars, microbiome-based approaches, and sustainable vector control, and highlight key knowledge gaps and priorities for developing effective, environmentally sustainable phytoplasma disease management.

Phytoplasma

Cell-mediated immunity to Moloney sarcoma virus in mice. II. Analysis of antigenic specificities involved in T lymphocyte-mediated in vivo rejection of murine sarcoma virus-induced tumors.

Sublethally irradiated BALB/c mice innoculated with Moloney sarcoma virus (MSVm) develop progressively growing tumors and die within 30 days of virus innoculation. These animals can be protected from tumor progression (and death) by innoculation of small numbers of MSV-immune T lymphocytes from MSV-M innoculated (but unirradiated) animals. T lymphocytes in these donor animals have been shown to express immunity to a variety of viral and virally-induced antigens. We have investigated whether immunity to any one of these antigens was critically important in leading to protection of the irradiated animals by sensitizing normal T lymphocytes in vitro to different viral antigens and examining the ability of these sensitized cells to protect the irradiated recipients. Data is presented to show that cells sensitized in vitro to MSV-transformed fibroblasts, and to purified antigens with group specificity, but not to viral envelope antigens, or whole virus, are capable of protecting the irradiated MS innoculated animals.

Animals

Excitation-mediating and inhibition-mediating dopamine-receptors: a new concept towards a better understanding of electrophysiological, biochemical, pharmacological, functional and clinical data.

A great number of earlier reported experimental data dealing with the role of dopamine in dopamine-loaded structures within the mammalian brain have raised questions concerning the concept of dopamine as an inhibitory agent acting on one type of receptor. A critical review of the anatomical, histochemical, electrophysiological, pharmacological and functional studies reveals that the dopamine-loaded structures are marked by an internal differentiation at various levels. It is attempted to demonstrate that this is due to a heterogeneous distribution of two distinct types of dopamine-receptors, each characterized by their own properties: DAe and DAi-receptors. Furthermore, the experimental and clinical implications are discussed in view of the hypothesis that balance between both types of receptors is essential for normal psychomotor functioning.

Amphetamines

Prostaglandin-mediated hyperemia and renin-mediated hypertension during acute ureteral obstruction.

Acute elevation of ureteral pressure to 100 mm Hg in anesthetized dogs (n=7) resulted in an increase (P less than 0.005) in systemic blood pressure form 151 +/- 7 to 163 +/- 7 mm Hg, a transient (approximately 15 min) increase (P less than 0.05) in renal blood flow from 413 +/- 27 to 465 +/- 27 ml/min and a rise (P less than 0.05) in plasma renin activity from 6.0 +/- 1.6 to 10.3 +/- 2.1 ng/ml/hr. Pretreatment with a competitive inhibitor of angiotensin II, i.e. sar1gly8AII, abolished the hypertensive response to acute ureteral obstruction, and pretreatment with 2 mg/kg of either indomethacin (n=6) or meclofenamate (n=3), 15 min before obstruction, prevented the hyperemic response. These results suggest that acute ureteral obstruction leads to hypertension via activation of the renin-angiotensin system and hyperemia via a prostaglandin-initiated mechanism.

Acute Disease

Cell-mediated immunity to herpes simplex virus in man. V. Antibody-mediated cell-dependent immune lysis of herpes virus-infected target cells.

Thirty-four patients, subject to recurrent herpes labialis, have been studied. They have all been shown to have high serum levels of an antibody to HSV1. This antibody has the property of sensitizing HSV1-infected target cells to lysis by nonimmune effector lymphocytes. Of 23 subjects who gave no history of herpes labialis, only four had antibody demonstrable by this technique. The level of antibody remains essentially unchanged despite recrudescenes of herpes labialis in the susceptible subjects. Effector cell activity was present in all of these and other subjects tested except for two who were suffering from chronic lymphatic leukemia. We have positive evidence that the effector cells in this system are neither T cells nor macrophages. Additional evidence suggests that the effector cells may be "null" cells.

Antibody Specificity

Ionophore-mediated cation translocation in artificial systems. I. A23187-mediated calcium translocation.

The inophore A23187 stimulates the translocation of calcium from an aqueous Hepes buffer into an organic immiscible phase. At saturating calcium concentrations, 2 molecules of ionophore seem to complex each atom of calcium. Consistent with such a stoichiometric behaviour, the apparent ratio of calcium-ionophore association to dissociation rate constants increases as the concentration of ionophore is raised. As a result, at low calcium concentrations, the amount of translocated calcium increases as a power function of A23187 concentration. When allowance is made for such a phenomenon, the relation between calcium translocation and concentration is characterized by usual substrate-receptor binding kinetics.

Anti-Bacterial Agents