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51.
52.
Binding of dodecyloctaethyleneglycol monoether (C12E3) and purified Triton X-100 to various integral membrane proteins was studied by chromatographic procedures. Binding capacity decreased in the following order: bovine rhodopsin greater than photochemical reaction center greater than sarcoplasmic reticulum Ca2+-ATPase. The detergents were bound in different amounts to the proteins and less than corresponding to the aggregation number of the pure micelles. Appreciable binding of C12E8 to Ca2+-ATPase was observed far below the critical micelle concentration, consistent with interaction of the membrane protein with non-micellar detergent. Model calculations indicate that the detergents cannot combine with the membrane proteins, forming an oblate ring similar to that of pure detergent micelles, such as has been previously proposed for e.g. cytochrome b5 [Robinson and Tanford (1975) Biochemistry, 14, 365-378]. Other arrangements (prolate and monolayer rings), in which all detergent molecules are in contact with the protein, are considered as alternatives for covering the hydrophobic surface of the membrane protein with a continuous layer of detergent. 相似文献
53.
Ion movement through gramicidin A channels. Studies on the diffusion-controlled association step 总被引:14,自引:7,他引:7
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O S Andersen 《Biophysical journal》1983,41(2):147-165
The permeability characteristics of gramicidin A channels are generally considered to reflect accurately the intrinsic properties of the channels themselves; i.e., the aqueous convergence regions are assumed to be negligible barriers for ion movement through the channels. The validity of this assumption has been examined by an analysis of gramicidin A single-channel current-voltage characteristics up to very high potentials (500 mV). At low permeant ion concentrations the currents approach a voltage-independent limiting value, whose magnitude is proportional to the permeant ion concentration. The magnitude of this current is decreased by experimental maneuvers that decrease the aqueous diffusion coefficient of the ions. It is concluded that the magnitude of this limiting current is determined by the diffusive ion movement through the aqueous convergence regions up to the channel entrance. It is further shown that the small-signal (ohmic) permeability properties also reflect the existence of the aqueous diffusion limitation. These results have considerable consequences for the construction of kinetic models for ion movement through gramicidin A channels. It is shown that the simple two-site-three-barrier model commonly used to interpret gramicidin A permeability data may lead to erroneous conclusions, as biionic potentials will be concentration dependent even when the channel is occupied by at most one ion. The aqueous diffusion limitation must be considered explicitly in the analysis of gramicidin A permeability characteristics. Some implications for understanding the properties of ion-conducting channels in biological membranes will be considered. 相似文献
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Wie aus Elektrophorese- und spektralphotometrischen Untersuchungen hervorgeht, liegt der kationische Farbstoff Chrysoidin G, je nach dem pH-Wert der wäßrigen Farblösungen, als I-, II-, III- und IV-wertiges Kation und elektroneutrales Farbbasenmolekül vor. Von physiologischer Bedeutung ist nur das I-wertige Kation und das Farbbasenmolekül. Die Unabhängigkeit der Absorptionsmaxima wäßriger Farbstofflösungen mit konstantem pH-Wert von der Farbstoffkonzentration deutet darauf hin, daß Chrysoidin keine Assoziate bildet. In organischen Lösungsmitteln ergibt Chrysoidin G je nach dem Grad der Polarität des Solvens und dem pH-Wert der wäßrigen Phase bei Ausschüttelungs-versuchen unterschiedliche Absorptionskurven. Natriumnucleinat bedingt eine negative Metachromasie; die jeweilige Lage des Maximums wird von der Natriumnucleinatkonzentration bestimmt. Rutin übt keinen wahrnehmbaren Einfluß auf das Absorptionsspektrum aus. Nach einer Vitalfärbung von Oberepidermiszellen der Schuppenblätter von Allium cepa mit Chrysoidin G zeigen das diffus gefärbte Plasma und die darin auftretenden gelben Kugeln übereinstimmende Absorptionsspektren mit einem breiten Bandenmaximum bei ? 420 nm. Der lebende Zellkern färbt sich nicht. Der gefärbte volle Zellsaft der Unterepidermis besitzt ein Maximum bei ? 448 nm. Aus der Lage der Absorptionsmaxima und dem Verlauf der Absorptionskurven kann geschlossen werden, daß die Färbung des lebenden Plasmas auf eine Anreicherung des einwertigen Kations und des Farbbasenmoleküls in polaren Lipoiden beruht, während es sich bei der Färbung des fixierten Zellkerns um eine Bindung des Chrysoidins an Nucleinsäuren handelt. Die Vitalfärbung des vollen Zellsaftes mit Chrysoidin G ist nicht auf den Gehalt der Vakuolen an Flavonolen zurückzuführen, sondern hängt vermutlich vom pH-Wert des Zellsaftes ab. 相似文献
56.
Growth of Mycobacterium lepraemurium in Cultures of Mouse Peritoneal Macrophages 总被引:8,自引:2,他引:6
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Successful growth of Mycobacterium lepraemurium was observed in cultures of mouse peritoneal macrophages. The optimal host cell maintenance medium was composed of 40% horse serum, 50% of the chemically defined medium NCTC 109, and 10% of a 1:5 dilution of beef embryo extract, supplemented with both liver extract and ferric nitrate. Multiplication of the bacilli was observed in 1 week and maximal growth in 6 to 7 weeks. All macrophages were filled with tens to hundreds of the organisms in cultures showing maximal growth. Glycerol caused an increase in the normal length of M. lepraemurium, without a corresponding increase in the number of the bacilli. Elongation of M. lepraemurium was observed 3 or 4 days after infection. Rapid and uniform growth of M. lepraemurium was achieved in serially transferred cultures (subcultures). The cumulative increase of the number of intracellular bacilli was 1.4 x 10(20)-fold in 14 transfers over a period of 68 weeks in one series, and 10(17)-fold in 12 transfers over a period of 56 weeks in another series. The generation time of M. lepraemurium was 7 days, a growth rate which approximates the fastest growth of the organisms in vivo. Organisms harvested from cultures at various stages of growth produced murine leprosy in mice, but showed no growth in bacteriological media. The present model offers an opportunity for studies on the host-parasite relationship without the complication of extracellular growth of the parasites. 相似文献
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A unique agar drum sampler is described which indicates, continuously, the number of viable, bacterial particles per unit volume of air at the time and point of sampling. By selection of the timer and the sampling rate the sampler is suitable for quite a wide range of concentration and time. An impaction line of 484 in. greatly increases the capacity of this device over slit samplers and other instruments designed to give time-concentration data for viable airborne particles. This sampler should prove useful for: (i) monitoring airborne bacteria in hospitals, public places, and food and industrial plants; (ii) decay rate studies of bacterial aerosols; (iii) evaluation of aerial germicides; (iv) determination of effectiveness of air conditioning systems in removing airborne bacteria; and (v) many other studies in aerobiology. 相似文献
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60.
Division competence in Tetrahymena: determination of minimum cell volume and rate of nutrient uptake
Cell volume and doubling time have been determined for exponentially growing Tetrahymena pyriformis cells in broth medium with and without glucose and in media made from these media by dilution with water. The cells tolerate media with dry weights from 105 down to 0.06 g/L. In the diluted media the cells have small volumes and the doubling time is increased. When the cell volume increase per time per cell in a given medium is expressed as a function of the cell volume in this same medium, a direct proportionality is found. From this equation the minimum cell volume of division competence (MVDC) can be found. It is 2,100 microns 3 for T. pyriformis at 28 degrees C. The lag period resulting from an upshift of exponentially growing cells from diluted media to more concentrated media is a function of the initial and resulting cell volumes and MVDC. The increase in cell volume per unit of time for a given cell depends on the dry weight of the medium. This parameter can be transformed to mass increase per cell surface area per time, which represents rate of nutrient uptake. When plotted against the dry weight of the media, a Michaelis-Menten-like curve is obtained with two Km values of 3.8 and 0.08 g/L with corresponding Vmax values of 20 and 4 ng/cm2.s. The low Km value (0.08 g/L) indicates that Tetrahymena is able to take up nutrients from highly diluted media. The high value of Vmax (20 ng/cm2.s) increases the ability of growth in more concentrated media.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献