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71.
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Summary Plasmalemmal ionic currents from enzymatically-isolated protoplasts of suspension-cultured carrot cells were investigated by patch-clamp techniques. Among other currents, a novel hyperpolarization-activated, inwardly-rectifying, whole-cell current was observed. The activation of this current was fast in onset, and for large hyperpolarizations a characteristic, rapid voltage-dependent inactivation was seen. Ion substitution experiments indicate that this inward current was due mainly to efflux of chloride ions. No dependence on either internal or external calcium was found, and internal MgATP was not necessary. Surprisingly, zinc did not block this current. In hyperpolarized outside-out patches, inward single-channel chloride currents having an elementary conductance of ca. 100 pS were observed. The open probability increased with hyperpolarization. Similar single-channel currents were activated by slight negative pressure applied to the pipette. These chloride currents could contribute both to the control of membrane potential and in the regulation of osmotic balance in carrot cells.Abbreviations BAPTA
1,2-bis (2-aminophenoxy)ethane-N,N,N,N-tetraacetic acid
- 2,4-D
2,4-dichlorophenoxyacetic acid
- Ex
Nernst equilibrium potential for ion x
- NMDG
N-methyl-D-glucamine
- PMSF
phenylmethylsulfonyl fluoride 相似文献
74.
Relationship between osmoprotection and the structure and intracellular accumulation of betaines by Escherichia coli 总被引:2,自引:0,他引:2
Barbara A. Peddie Michael Lever Colin M. Hayman Kelly Randall Stephen T. Chambers 《FEMS microbiology letters》1994,120(1-2):125-131
Abstract Naturally occuring betaines, especially glycine betaine and proline betaine, were accumulated by Escherichia coli from urine. In synthetic hyperosmotic medium, with an homologous series of added betaines, (CH3 )3 N+ -(CH2 ) n -COO− , osmoprotective activity and intracellular accumulation decreased monotonically as n increased from 1 to 5. In contrast, α -substituted glycine betaines were accumulated in a similar manner to glycine betaine, but with different osmoprotective activities. Arsenobetaine, with a quaternary arsonium group, was also accumulated but amino acids which can become negatively charged in a chemically basic environment were not. 相似文献
75.
The oxidative stress response in Bacillus subtilis 总被引:9,自引:0,他引:9
Barbara C.A. Dowds 《FEMS microbiology letters》1994,124(3):255-263
Abstract Bacillus subtilis undergoes a typical bacterial stress response when exposed to low concentrations (0.1 mM) of hydrogen peroxide. Protection is thereby induced against otherwise lethal, challenge concentrations (10 mM) of this oxidant and a number of proteins are induced including the scavenging enzymes, catalase and alkyl hydroperoxide reductase, and a putative DNA binding and protecting protein. Induced protection against higher concentrations (10–30 mM) of hydrogen peroxide is eliminated in a catalase-deficient mutant. Both RecA and Spo0A influence the basal but not the induced resistance to hydrogen peroxide. A regulatory mutation has been characterized that affects the inducible phenotype and is constitutively resistant to high concentrations of hydrogen peroxide. This mutant constitutively overexpresses the proteins induced by hydrogen peroxide in the wild-type. The resistance of spores to hydrogen peroxide is partly attributable to binding of small acid soluble proteins by the spore DNA and partly to a second step which coincides with the depletion of the NADH pool, which may inhibit the generation of hydroxyl radicals from hydrogen peroxide. 相似文献
76.
Kumar B. Reddy Barbara A. Hocevar Philip H. Howe 《Journal of cellular biochemistry》1994,56(3):418-425
Transforming growth factor β1 (TGFβ1) inhibits epithelial cell proliferation late in the G1 phase of the cell cycle. We examined the effect of TGFβ1 on known late G1 cell cycle regulators in an attempt to determine the molecular mechanism of growth inhibition by this physiological inhibitor. The results demonstrate the TGFβ1 inhibits the late G1 and S phase specific histone H1 kinase activity of p33cdk2. This inhibitiion is not dur to TGFβ1's effect on p33cdk2 synthesis, but rather due to its negative effect on the late G1 phosphorylation of p33cdk2. It is also shown that TGFβ1 inhibits both late G1 cyclin A and cyclin E associated histon H1 kinase activities. The inhibitor has no effects on the synthesis of cyclin E but to inhibit the synthesis of cyclin A protein in a cell cycle dependent manner. If TGFβ1 is added to cells which have progressed futher than 8 hours into G1, then it is without inhibitory effect on cyclin A synthesis. These effect on TGFβ1 on late G1 cell cycle regulators correlate well with its inhibitory effects on cellular growth and suggest that these G1 cyclin dependent kinases might serve as targets for TGFβ1-mediated growth arrest. 相似文献
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M L Brandi G Weber A Svensson A Falchetti F Tonelli R Castello L Furlani S Scappaticci M Fraccaro C Larsson 《American journal of human genetics》1993,53(6):1167-1172
Families in which both parents are heterozygotes for the same autosomal dominant neoplasia syndrome are extremely unusual. Recently, we had the unique opportunity to evaluate three symptomatic siblings from the union between two unrelated individuals affected by multiple endocrine neoplasia type 1 (MEN1). When the three siblings and their parents and relatives were genotyped for 12 markers tightly linked to the MEN1 locus, at 11q13, two of the siblings were found to be homozygotes, and one a heterozygote, for MEN1. With regard to the MEN1 syndrome, no phenotypic differences were observed between the two homozygotes and the heterozygotes. However, the two homozygotes showed unexplained infertility, which was not the case for any of the heterozygotes. Thus, MEN1 appears to be a disease with complete dominance, and the presence of two MEN1 alleles with mutations of the type that occur constitutionally may be insufficient for tumor development. 相似文献
79.
80.
Zusammenfassung EinAesculus-Baum, der sich im Frühling alljährlich vorzeitig belaubt, entlaubt sich im Herbst auffallend spät. Die Knospen dieses Baumes haben eine sehr kurze freiwillige Winterruhe, bei günstigen Temperaturen treiben sie bereits Mitte Dezember aus, ein Warmbad verzögert das Austreiben. Die frühtreibenden Kastanien sind durch Spätfröste, ja selbst durch Winterfröste gefährdet, denn ihre vorzeitig in Saft stehenden Knospen und Triebe fallen dem Frost leichter zum Opfer als diejenigen der länger ruhenden Bäume.Herrn Prof. Dr. H. v.Guttenberg zum 80. Geburtstag gewidmet. 相似文献