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The ability of some synthetically prepared analogues of Streptococcus peptidoglycan subunits (dipeptide, tetrapeptide, glycodipeptide and glycotetrapeptide) to cause fever in rabbits and lysis of rabbit blood platelets was studied. While di- and tetrapeptides did not exhibit these activities, glycodipeptides and glycotetrapeptides displayed pyrogenic and thrombocytolytic activities comparable with those of natural peptidoglycans.  相似文献   

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Cell-free extracts of human lymphocytes activated by PHA contain a cytotoxin that kills mouse L cells. Such cells elaborate two different kinds of toxins into the culture supernatant fluids, called α- and β-lymphotoxin (-LT), which differ in size, stability, and antigenicity. The amount of intracellular toxin is 1 to 24% of that found in supernatants of different tonsil donors. Equal amounts of intracellular toxin appear in both microsomal fraction (100,000g pellet) and soluble supernatant fractions of the cell-free extracts (CFE). The toxin can be solubilized from the membrane by digestion with papain or extraction with a nonionic detergent, but not by repeated sonication. The molecular weight of both the microsomal and soluble cellular cytotoxin is 45,000 ± 5000. The intracellular toxin differs from the extracellular toxins secreted by the same cells in two major characteristics: one, although its size approximates that of supernatant β-LT (and is smaller than the 76,000 Mr α-LT), antibody-inhibiting α-LT but not β-LT inhibits both the microsomal and soluble CFE-LT. Two, the intracellular LT does not display the charge heterogeneity so characteristic of supernatant α-LT. Supernatant α-LT and CFE-LT are similar in their patterns of inactivation by heating to 80 °C and treatments with sodium dodecylsulfate (SDS), guanidine, proteases, and heavy metal ions, and are similarly unaffected by treatment with 8 M urea, N-ethylmaleimide, and sodium periodate. These results suggest that the single polypeptide intracellular LT is the precursor of the more complex secreted α-LT molecule.  相似文献   

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Seventy-six 2-phenylbenzimidazole derivatives were synthesized and evaluated in cell-based assays for cytotoxicity and antiviral activity against a panel of 10 RNA and DNA viruses. The most commonly affected viruses were, in decreasing order, CVB-2, BVDV, Sb-1, HSV-1, and YFV, while HIV-1 and VSV were not affected, and RSV, VV and Reo-1 were only susceptible to a few compounds. Thirty-nine compounds exhibited high activity (EC50 = 0.1–10 μM) against at least one virus, and four of them were outstanding for their high and selective activity against VV (24, EC50 = 0.1 μM) and BVDV (50, 51, and 53 with EC50 = 1.5, 0.8, and 1.0 μM, respectively). The last compounds inhibited at low micromolar concentrations the NS5B RdRp of BVDV and also of HCV, the latter sharing structural similarity with the former. The considered compounds represent attractive leads for the development of antiviral agents against poxviruses, pestiviruses and even HCV, which are important human and veterinary pathogens.  相似文献   

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Bactericidal activity of peroxynitrite.   总被引:17,自引:0,他引:17  
Peroxynitrite is a strong oxidant formed by macrophages and potentially by other cells that produce nitric oxide and superoxide. Peroxynitrite was highly bactericidal, killing Escherichia coli in direct proportion to its concentration with an LD50 of 250 microM at 37 degrees C in potassium phosphate, pH 7.4. The apparent bactericidal activity of a given concentration peroxynitrite at acidic pH was less than that at neutral and alkaline pH. However, after taking the rapid pH-dependent decomposition of peroxynitrite into account, the rate of the killing was not significantly different at pH 5 compared to pH 7.4. Metal chelators did not decrease peroxynitrite-mediated killing, indicating that exogenous transition metals were not required for toxicity. The hydroxyl radical scavengers mannitol, ethanol, and benzoate did not significantly affect toxicity while dimethyl sulfoxide enhanced peroxynitrite-mediated killing. Dimethyl sulfoxide is a more efficient hydroxyl radical scavenger than the other three scavengers and increased the formation of nitrogen dioxide from peroxynitrite. In the presence of 100 mM dimethyl sulfoxide, 60.0 +/- 0.3 microM nitrogen dioxide was formed from 250 microM peroxynitrite as compared to 2.0 +/- 0.1 microM in buffer alone. Thus, formation of nitrogen dioxide may have enhanced the toxicity of peroxynitrite decomposing in the presence of dimethyl sulfoxide.  相似文献   

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A Shiraishi  T Arai 《Sabouraudia》1979,17(1):79-83
Inhibitory effects of transferrin on fungal growth were successfully estimated by measuring fungal ATP content. By this method, it was demonstrated that both human and rabbit transferrin possessed the inhibitory effect in the absence of any other factor on yeast-like and filamentous fungi. However, rabbit stimulation factor enhanced the inhibitory effect. The inhibitory effect of transferrin was nonspecific and correlated with unsaturated iron binding capacity (UIBC) of transferrin. Human transferrin was more inhibitory than rabbit transferrin.  相似文献   

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Chitinase and proteinase activities were found in aphroproteins excreted by larvae of the cicada Aphrophora costalis Mats; this accounts for their fungicidal effect. Aphroproteins did not show DNase or RNase activities and did not exhibit properties of proteinase inhibitors. The data suggest that larval foam protects the larva and host plant from entomogenous and phytopathogenic fungi.  相似文献   

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Chaperone activity of DsbC.   总被引:7,自引:0,他引:7  
DsbC, a periplasmic disulfide isomerase of Gram-negative bacteria, displays about 30% of the activities of eukaryotic protein disulfide isomerase (PDI) as isomerase and as thiol-protein oxidoreductase. However, DsbC shows more pronounced chaperone activity than does PDI in promoting the in vitro reactivation and suppressing aggregation of denatured D-glyceraldehyde-3-phosphate dehydrogenase (GAPDH) during refolding. Carboxymethylation of DsbC at Cys98 decreases its intrinsic fluorescence, deprives of its enzyme activities, but lowers only partly its chaperone activity in assisting GAPDH reactivation. Simultaneous presence of DsbC and PDI in the refolding buffer shows an additive effect on the reactivation of GAPDH. The assisted reactivation of GAPDH and the protein disulfide oxidoreductase activity of DsbC can both be inhibited by scrambled and S-carboxymethylated RNases, but not by shorter peptides, including synthetic 10- and 14-mer peptides and S-carboxymethylated insulin A chain. In contrast, all the three peptides and the two nonnative RNases inhibit PDI-assisted GAPDH reactivation and the reductase activity of PDI. DsbC assists refolding of denatured and reduced lysozyme to a higher level than does PDI in phosphate buffer and does not show anti-chaperone activity in HEPES buffer. Like PDI, DsbC is also a disulfide isomerase with chaperone activity but may recognize different folding intermediates as does PDI.  相似文献   

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It has been found that the bovine vitreous--humour did not digest in vitro collagen at physiological and acidic pH. A proteolytic activity against haemoglobin in acid pH was found both in bovine and human vitreous-humours. The activity of human vitreous-humour increased significantly in endophtalmitis and glaucoma. In all pathological conditions studied the pH optima were at more acidic values than in control.  相似文献   

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Equinatoxin, a highly basic protein extracted from Actinia equina, causes an increase in the survival time of mice bearing the ascitic form of Ehrlich carcinoma, whereas it has no effect on L1210 leukaemia. When tested for in vitro cytotoxicity by the dye exclusion test, it shows a potent activity on both tumour cell lines, with ED50 of a few ng/ml. Higher concentrations produce an extensive lysis of the cells. The cytotoxic effects of Equinatoxin are inhibited by phospholipids, thus suggesting that its mechanism of action may be related to interactions with lipids or other charged components of cell membrane. The observed lack of in vivo activity against L1210 leukaemia presumably is due to poor systemic absorption of the protein and/or neutralization by serum factors.  相似文献   

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Regulation of osteoclast activity.   总被引:27,自引:0,他引:27  
E M Greenfield  Y Bi  A Miyauchi 《Life sciences》1999,65(11):1087-1102
Osteoclasts are the primary cell type responsible for bone resorption. This paper reviews many of the known regulators of osteoclast activity, including hormones, cytokines, ions, and arachidonic acid metabolites. Most of the hormones and cytokines that inhibit osteoclast activity act directly on the osteoclasts. In contrast, most of the hormones and cytokines that stimulate osteoclast activity act indirectly through osteoblasts. Particularly interesting in this regard are agents that directly inhibit activity of highly purified osteoclasts yet stimulate activity of osteoclasts that are co-cultured with osteoblasts. Recent studies have demonstrated that the primary mechanism by which bone resorptive agents stimulate osteoclast activity indirectly is likely to be up-regulation of production of osteoclast differentiation factor/osteoprotegerin ligand (ODF/OPGL) by the osteoblasts. In addition to discussing regulators of osteoclast activity per se, this paper also reviews the role of osteoclast apoptosis to limit the extent of bone resorption.  相似文献   

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Thermal responses to prazosin (0.75 mg/kg, i.v. as a bolus injection or 3 h infusion) were investigated in febrile rabbits (treated with E. coli lipopolysaccharide, PLPS) at 3 ambient temperatures (Ta) of 5, 19, 28 degrees C. The drug produced antipyresis which increased with the simultaneous drop of Ta. This antipyretic activity was accompanied by an inhibition of heat production or enhanced elimination of heat, depending on Ta. It is suggested that antipyresis produced by prazosin is mainly due to the effector part of the thermoregulatory system.  相似文献   

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Antiviral activity of interferons.   总被引:9,自引:1,他引:8       下载免费PDF全文
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A biologic assay system, based on complement (C′) inhibition, is described to unravel structural differences among polynucleotides. The C′ system appears particularly suitable to distinguish (1) homo- from copoly-ribonucleotides, (2) deoxyribo- from 2′-OH and other 2′-modified polynucleotides, and (3) single homopolynucleotides from double- or triple-stranded complexes.From these studies a number of polynucleotides emerged with potent anti-C′ activities, worthy of further investigation. The most active polymers were (G)n (polyguanylic acid), (dCc1)n [poly(2′-chloro-2′deoxycytidylic acid)] and (dUz)n [poly(2′-azido-2′-deoxyuridylic acid)].  相似文献   

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