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1.
Z.G. Weinberg G. Ashbell K.K. Bolsen G. Pahlow Yaira Hen A. Azriell 《Journal of applied microbiology》1995,78(4):430-436
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Promotion and inhibition of vesicle fusion by polylysine 总被引:1,自引:0,他引:1
Polylysine induced rapid aggregation of large unilamellar vesicles composed of phosphatidylcholine-cardiolipin (1:1 molar ratio) but not their fusion. Application of the terbium-dipicolinic acid fusion assay showed that addition of polylysine at nanomolar concentrations enabled a significant lowering of the Ca2+ threshold concentration for vesicle fusion from 9 to 1 mM. Analysis of the kinetics of fusion with a mass-action kinetic model showed that polylysine enhanced significantly the rate of aggregation but affected only slightly the rate of fusion per se. Maximal enhancement of overall fusion rates occurred at a charge ratio (polylysine/cardiolipin) of about 0.5. At larger polylysine concentrations, e.g., at charge ratios greater than 3, polylysine inhibited vesicle fusion. 相似文献
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Processing of 45 s nucleolar RNA 总被引:29,自引:0,他引:29
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Seth H. Weinberg 《PloS one》2013,8(11)
High-frequency (HF) stimulation has been shown to block conduction in excitable cells including neurons and cardiac myocytes. However, the precise mechanisms underlying conduction block are unclear. Using a multi-scale method, the influence of HF stimulation is investigated in the simplified FitzhHugh-Nagumo and biophysically-detailed Hodgkin-Huxley models. In both models, HF stimulation alters the amplitude and frequency of repetitive firing in response to a constant applied current and increases the threshold to evoke a single action potential in response to a brief applied current pulse. Further, the excitable cells cannot evoke a single action potential or fire repetitively above critical values for the HF stimulation amplitude. Analytical expressions for the critical values and thresholds are determined in the FitzHugh-Nagumo model. In the Hodgkin-Huxley model, it is shown that HF stimulation alters the dynamics of ionic current gating, shifting the steady-state activation, inactivation, and time constant curves, suggesting several possible mechanisms for conduction block. Finally, we demonstrate that HF stimulation of a network of neurons reduces the electrical activity firing rate, increases network synchronization, and for a sufficiently large HF stimulation, leads to complete electrical quiescence. In this study, we demonstrate a novel approach to investigate HF stimulation in biophysically-detailed ionic models of excitable cells, demonstrate possible mechanisms for HF stimulation conduction block in neurons, and provide insight into the influence of HF stimulation on neural networks. 相似文献
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The retinoblastoma gene and cell growth control 总被引:12,自引:0,他引:12
R A Weinberg 《Trends in biochemical sciences》1990,15(5):199-202
Rare diseases often provide unique and fascinating insights into the workings of biological machinery. Retinoblastoma is a good example. This hereditary disease occurs rarely (in only one out of 20,000 children), yet it opens a 'window' into the mechanisms that sit at the very center of growth control in cells throughout the body. Children who survive bilateral retinoblastoma often have offspring who are similarly affected. Indeed, transmission of the disease suggests the actions of a simple dominant Mendelian allele of high penetrance. Three years ago the wild-type allele of this gene (termed Rb) was isolated by molecular cloning. With this success has come a rich harvest of information on tumor pathogenesis and the molecular biology of cellular growth control. 相似文献
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E D Weinberg 《Microbiological reviews》1978,42(1):45-66
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D. Weinberg 《Folia microbiologica》1978,23(6):496-504
Secondary metabolism and cellular differentiation occur within a range of concentrations of phosphate and, in specific taxonomic
groups, of zinc, manganese, and/or iron that is much narrower than that permittee for primary metabolism. Possible molecular
sites of action of the four elements are reviewed. 相似文献