An expression of calpain and caspase-1 as well as the concomitant ultrastructural alterations were investigated during necrosis of the mouse Ehrlich ascites carcinoma. The calpain expression was registered at 0 h and 1 h although caspase-1 did not induce any signals during these time periods. The rise of the cytoplasmic lytic zones contacted by calpain antibodies was identified as a morphologic event corresponding to the expression of calpain. Lytic zone's distribution followed by the appearance of the calpain/caspase-1 clusters assigned for lysis of the Golgi vesicles and ER. Also, the microapocrine secretion of the vesicles containing the calpain/caspase-1 clusters was detected. Further, the lysis of the plasma membrane occurred due to progression of intracellular lysis. Rupture of the plasma membrane resulted in the termination of secretion and dissemination of cell contents. The nuclei still had their normal shape. Nuclear lysis continued to rise with intranuclear lytic zones, of which the progression was accompanied with the presence of calpain/caspase-1 clusters. The data contribute to the concept of the initial role of calpain for tumor cell destruction, provide first evidence of the calpain/caspase-1 pathway in tumor cells, and highlight microapocrine secretion as a possible tumor cell death signalling mechanism.
It was shown that tobacco leaf treatment with 100 mM H2O2 increased their content of endogenous H2O2 and activities of catalase and hydrolases (acid phosphatase, proteases, and RNase) and also caused various changes in the cell structure. In this case, programmed cell death (PCD) occurred in some cells, which was observed as chromatin condensation, cytoplasm collapse, etc. In the meantime, many cells displayed organelle activation rather than PCD. It is suggested that cells that undergo H2O2-dependent PCD release signaling molecules inducing protective mechanisms against oxidative stress in neighboring cells not exhibiting PCD.
It was shown that tobacco leaf treatment with 100 mM H₂0₂ increased their content ofendogenous H₂0₂ and activities of catalase and hydrolases (acid phosphatase, proteases, and RNase) and also caused'various chang- es in the cell structure. In this case, programmed cell death (PCD) occurred in some cells, which was ob- served as chromatin condensation, cytoplasm collapse, etc. In the meantime, many cells displayed organelle activation rather than PCD. It is suggested that cells that undergo H₂0₂-dependent PCD release signaling molecules inducing protective mechanisms against oxidative stress in neighboring cells not exhibiting PCD.
The present work reveals the effect of kappa-, lambda- and kappa/beta-carrageenans on the immune modulation and supramolecular structure of lipopolysaccharide (LPS). The kappa/beta carrageenan was able to increase the synthesis of anti-inflammatory interleukin-10 (IL-10) in vitro, and at low concentrations, their activity in the mixture with LPS was higher than that of LPS alone. Kappa-carrageenan significantly inhibited LPS-induced upregulation of reactive oxygen species (ROS). The activation of cells by kappa-carrageenan occurs through TLR4 receptor specific for LPS. Carrageenans reduced (kappa-) or completely inhibited (lambda-) collagen-induced platelet aggregation and decreased their aggregation activity caused by cooperative effect of LPS and collagen. The transformation of ultrastructure of LPS by action of kappa- and kappa/beta-carrageenans is observed. Moreover, carrageenans changed both the sizes and ζ- potentials of the LPS.
The effect of chitosan on the development of infection caused by Tobacco mosaic virus (TMV) in leaves of Nicotiana tabacum L. cv. Samsun has been studied. It was shown that the infectivity and viral coat protein content in leaves inoculated with a mixture of TMV (2 μg/mL) and chitosan (1 mg/mL) were lower in the early period of infection (3 days after inoculation), by 63% and 66% respectively, than in leaves inoculated with TMV only. Treatment of leaves with chitosan 24 h before inoculation with TMV also caused the antiviral effects, but these were less apparent than when the virus and polysaccharide were applied simultaneously. The inhibitory effects of the agent decreased as the infection progressed. Inoculation of leaves with TMV together with chitosan considerably enhanced the activity of hydrolases (proteases, RNases) in the leaves, in comparison with leaves inoculated with TMV alone. Electron microscope assays of phosphotungstic acid (PTA)-stained suspensions from infected tobacco leaves showed that, in addition to the normal TMV particles (18 nm in diameter, 300 nm long), these suspensions contained abnormal (swollen, "thin" and "short") virions. The highest number of abnormal virions was found in suspensions from leaves inoculated with a mixture of TMV and chitosan. Immuno-electron microscopy showed that "thin" virus particles, in contrast to the particles of normal diameter, lost the ability to bind to specific antiserum. It seems that the chitosan-induced activation of hydrolases stimulates the intracellular degradation of TMV particles and hence hydrolase activation may be considered to be one of the polysaccharide-mediated cellular defense mechanisms that limit virus accumulation in cells.
The effect of 20 cyclopentane β,β′-triketones and their sodium salts on the development of infections caused by tobacco mosaic virus (TMV) in leaves of tobacco (Nicotiana tabacum L. cv. Xanthi-nc) has been studied. It has been shown that the strongest antiviral effect is produced by sodium salts of 2-acetyl-4,7-dithio-2,3,4,5,6,7-hexahydro-1H-inden-1,3-dione, 2-acetyl-4-oxa-7-thio-2,3,4,5,6,7-hexahydro-1H-inden-1,3-dione, and 2-acetyl-4,5-didodecylthiocyclopent-4-en-1,3-dione. These compounds at a concentration of 2 mg/mL decrease the number of local TMV-induced necroses formed on inoculated tobacco leaves by 98% and have no toxic effect on leaf tissues.
The physicochemical properties and morphology of κ, κ/β, κ/ι, and λ-carrageenans from red algae of the families Gigartinaceae and Tichocarpaceae were analyzed and compared. The highest molecular weights (527 kDa) and negative electrokinetic potentials (–36.4 mV) were obtained for x -carrageenan, which had the conformation of a disordered coil whereas fine threads of κ and κ/β-carrageenans formed long fibrils of width up to 16 nm that were more heterogeneous in the latter instance whereas κ/ι-carrageenan formed a fibrous network structure.
The activity of hydrolases (protease, RNase) in uninfected and tobacco mosaic virus-infected tobacco leaves of the Samsun variety, untreated and treated with disodium salt of 2-acetyl-4-hydroxycarbonyl-methylthio-5-chlorocyclopent-4-en-1,3-dione (DS), was determined. It was shown that treatment of leaves with this compound significantly increased the activity of hydrolases in them compared to untreated leaves. In infected leaves treated with DS one day before infection, along with an increased level of hydrolases, one revealed more viral particles exposed to destructive changes in infected, rather than untreated, leaves. It is assumed that the DS-caused activation of hydrolases promotes the destruction of viral particles and is therefore one of the cell defense mechanisms induced by this compound that prevents the intracellular accumulation of virus.
In young systemically infected leaves of Datura stramonium L., a severe strain of Potato virus X (PVX) accumulated to a lower degree than a mild strain. Infected leaves had increased protease and RNase activities in comparison with those of healthy controls. The highest hydrolase activities were found in leaves infected with the severe strain. Negative-staining electron microscopy of dips from the infected leaves indicated that PVX virions underwent destructive changes, which resulted in the appearance of abnormal (swollen and thin') particles. Immuno-electron microscopic assays showed that thin PVX particles, in contrast to those of normal diameter, lost the ability to bind with specific antiserum. The relative number of thin virions in leaves infected with the severe PVX strain was considerably higher than in leaves infected with the mild strain. This shows that a correlation exists between increased protease activity and intracellular destruction of virions. In abnormal virions, the viral RNA appears to be available for RNase attack. Therefore, it seems that high RNase activity together with increased generation of abnormal virions in the leaves infected with the severe strain promote inactivation of the viral RNA with RNase. We suppose that the enhanced hydrolase activities in the leaves infected with severe PVX strain, on the one hand, limit viral accumulation and thus play a defensive role and, on the other hand, cause considerable intracellular pathological changes resulting in severe symptoms.
The mesophyll ultrastructure and hydrolase activity in leaves of tobacco cv. Samsun exposed to chitosan were studied. It was shown that, in many cells, chitosan treatment stimulated the protein-synthesizing apparatus (nucleolus size and amount of both mitochondria and membranes of rough endoplasmic reticulum increased). At the same time, we observed activation of the lytic compartment displayed as stimulated production of dictyosomes, smooth ER elements, and cytoplasmic vacuoles, which are prominent constituents of this compartment. Biochemical experiments showed that, in the leaves, chitosan substantially enhanced activity of hydrolases (acid phosphatase, RNase, proteases) as compared to untreated leaves. In some cells, chitosan treatment caused considerable destructive changes (condensation of nuclear chromatin, collapse of cytoplasm, etc.) that can be classified as development of programmed cell death.
The activity of hydrolases (protease, RNase) in uninfected and tobacco mosaic virus-infected tobacco leaves of the Samsun variety, untreated and treated with disodium salt of 2-acetyl-4-hydroxycarbonyl-methylthio-5-chlorocyclopent-4-en-1,3-dione (DS), was determined. It was shown that treatment of leaves with this compound significantly increased the activity of hydrolases in them compared to untreated leaves. In infected leaves treated with DS one day before infection, along with an increased level of hydrolases, one revealed more viral particles exposed to destructive changes in infected, rather than untreated, leaves. It is assumed that the DS-caused activation of hydrolases promotes the destruction of viral particles and is therefore one of the cell defense mechanisms induced by this compound that prevents the intracellular accumulation of virus.
Effect of chitosan on the mesophyll cell ultrastucture and activity of hydrolases in leaves of tobacco cv. Samsun was studied. It was shown that, in many cells, chitosan treatment stimulated the protein-synthesizing apparatus (nucleolus dimension and amount of both mitochondria and rough endoplasmic reticulum membranes increased) and, at the same time, caused some activation of lytic compartment expressed in the stimulation of the formation of dictyosomes, smooth ER elements and cytoplasmic vacuoles, which are all prominent constituents of this compartment. In biochemical experiments, it was established that chitosan substantially enhanced activity of hydrolases (acid phosphatase, RNase, proteases) in the leaves as compared to untreated leaves. In some cells chitosan treatment caused considerable destructive changes (condensation of nuclear chromatin, collapse of cytoplasm and so on) that can be classified as a result of programmed cell death development.
The effect of chitosan on the accumulation and state of tobacco mosaic virus (TMV) in mesophyll cells of Nicotiana tabacum L. var. Samsun leaves is studied in the early stage of the development of the infection (3 days after infection of leaves). In the cells of leaves treated with chitosan 24 h before infection, the virus accumulated to a lesser degree than in the control. With the use of chitosan, TMV-specific granular inclusions were often observed in infected cells, the presence of which is ascribed to the early stages of virus reproduction, whereas the control cells contained mainly tubular inclusions formed from granular inclusions at the late stages of the infectious processes. This shows that chitosan delays the development of the infection. In the phosphotungstic acid-treated juice preparation made from infected leaves, abnormal (swollen and thin), as well as normal, TMV particles were observed. The appearance of abnormal viral particles seems to result from the virus-induced activation of intracellular lytic processes. In chitosan-treated infected cells, the lytic activity was the highest and the number of abnormal viral particles increased compared to the control. It is suggested that the chitosan-mediated stimulation of lytic processes that cause the destruction of TMV particles may be one of the protective mechanisms that limit the accumulation of the virus in cells.
The carbohydrate-containing polymer 1,3;1,6-beta-D-glucan was obtained by transformation of laminaran from the alga Laminaria cichorioides with endo-beta-1,3-glucanase from marine mollusks. In electron microscope observations of phosphotungstic acid-stained preparations from Nicotiana tabacum cv. Samsun leaves inoculated with a mixture of Tobacco mosaic virus (TMV) (1 mu g/ml) and glucan (1 mg/ml) or with TMV alone, we found that such preparations contained, along with virus particles of normal diameter (about 18 nm), abnormal (swollen and thinner) particles. The highest number of thin viral particles was found in dips from leaves inoculated with TMV together with glucan. It is suggested that this may be caused by a glucan-mediated increase of TMV particle proteolysis in infected leaves.
Ultrastructural examination of tobacco mosaic virus-induced local lesions growing in Datura stramonium leaves is carried out. It is demonstrated that, in the central area of the lesions, the cell response to viral invasion is not uniform. Most cells exhibited an acute hypersensitive reaction (HR) and underwent rapid and complete necrosis. However, some cells, despite considerable virus accumulation and immediate contact with completely collapsed cells, maintained a certain degree of structural integrity. Analysis performed showed that the proportion of collapsed and uncollapsed cells in the lesion centre 3 to 5 days after infection essentially did not change. These data suggest that the absence of HR in some cells in the lesion centre is not due to an early stage of infection but is likely caused by cell tolerance of the virus.
The activities of hydrolases (acid phosphatase, RNase, and proteases) in healthy and tobacco mosaic virus-infected leaves of Nicotiana tabacum L. var. Samsun, both untreated and treated with polysaccharides (PS) (1,3;1,6-β-D-glucan, fucoidan, and κ/β-carrageenan), were determined. The PS lead to substantial increase in the hydrolase level. The percentage of viral particles undergoing destructive change also increases in leaves treated with PS 24 h before infection. We suppose that the PS-mediated hydrolase activation promotes intracellular destruction of the viral particles and, thus, comprises one of the PS-induced protective mechanisms limiting intracellular viral accumulation.
The effect of disodium salt of 2-acetyl-4-hydroxycarbonylmethylthio-5-chlorocyclopent-4-en-1,3-dione on development of the infection caused by tobacco mosaic virus in the leaves of two Nicotiana tabacum L. cultivars—an hypersensitive cultivar Xanthi-nc and systemically affected Samsun—was studied. The results suggest that this compound interferes with reproduction of the virus. This antiviral effect displayed the highest activity when applied in a mixture with the virus, presumably due to its action on both the plant and the virus.