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Effects of moderate (42 degrees C, 1 hour) and strong (44 degrees C, 1 hour) heat shocks on resting (TR) and phytohemagglutinin stimulated human T-cells (TP) were studied. Both treatments were shown to cause in the latter considerable fall of the level of protein synthesis, as compared to resting cells. Mitogen-stimulated cells stopped their proliferation irreversibly and part of them (approx: 40%) died after even mild shock (at 42 degrees C). Following heat treatment in both the cell types the synthesis of heat shock 70 and 90 kDa proteins was induced which was much more pronounced in TR. These and earlier results of the authors allow a conclusion that involvement of cells in active proliferation may decrease their resistance to stress, and that this phenomenon coincides with the diminishing in synthesis and accumulation of stress proteins. 相似文献
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Microbial communities 总被引:19,自引:0,他引:19
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C de los Santos M Cosman B E Hingerty V Ibanez L A Margulis N E Geacintov S Broyde D J Patel 《Biochemistry》1992,31(23):5245-5252
Benzo[a]pyrene (BP) is an environmental genotoxin, which, following metabolic activation to 7,8-diol 9,10-epoxide (BPDE) derivatives, forms covalent adducts with cellular DNA. A major fraction of adducts are derived from the binding of N2 of guanine to the C10 position of BPDE. The mutagenic and carcinogenic potentials of these adducts are strongly dependent on the chirality at the four asymmetric benzylic carbon atoms. We report below on the combined NMR-energy minimization refinement characterization of the solution conformation of (-)-trans-anti-[BP]G positioned opposite C and flanked by G.C base pairs in the d(C1-C2-A3-T4-C5-[BP]G6-C7-T8-A9-C10-C11).d(G12-G13-T14++ +-A15-G16-C17- G18-A19-T20-G21-G22) duplex. Two-dimensional NMR techniques were applied to assign the exchangeable and non-exchangeable protons of the benzo[a]pyrenyl moiety and the nucleic acid in the modified duplex. These results establish Watson-Crick base pair alignment at the [BP]G6.C17 modification site, as well as the flanking C5.G18 and C7.G16 pairs within a regular right-handed helix. The solution structure of the (-)-trans-anti-[BP]G.C 11-mer duplex has been determined by incorporating intramolecular and intermolecular proton-proton distances defined by lower and upper bounds deduced from NOE buildup curves as constraints in energy minimization computations. The BP ring spans both strands of the duplex in the minor groove and is directed toward the 3'-end of the modified strand in the refined structure. One face of the BP ring of [BP]G6 stacks over the C17 residue across from it on the partner strand while the other face is exposed to solvent.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献
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Delay in migration of symbiotic algae in Hydra viridis by inhibitors of microtubule protein polymerization 总被引:1,自引:0,他引:1
An English strain of the fresh water symbiotic coelenterate Hydra viridis was experimentally "bleached" of its Chlorella algae and maintained indefinitely by feeding. The algal symbiosis could be re-established by injecting other symbiotic algae into aposymbionts. Although algal uptake and recognition were not affected by microtubule protein polymerization inhibitors, these compounds i.e., podophyllotoxin, beta-peltatin and vinblastine had delaying effects on the migration of the algae through the host digestive cells. Picropodophyllotoxin did not delay migration. The rates, the reversibility and the sensitivity of algal migration to low concentrations of drugs known to bind tubulin suggests the symbionts migrate somehow via labile polymerization of host hydra tubulin into microtubules. 相似文献
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Lynn Margulis Peter Mazur Elso S. Barghoorn Harlyn O. Halvorson Thomas H. Jukes Isaac R. Kaplan 《Journal of molecular evolution》1979,14(1-3):223-232
Summary The results of the Viking Biology experiments are best explained by non-biological phenomena: The interaction of the reagents with the materials comprising the regolith. Conditions of water activity, temperature, availability of carbon sources and others in most regions of the planet are too extreme for survival and growth of any known Earth microorganisms. Although the possibility persists that some very unusual form of life is somewhere on that planet the evidence is best interpreted as negative. Even though there is no evidence for current life on Mars, whether or not life ever originated there is not known. 相似文献
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