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121.
Rita Barr  C. J. Arntzen 《Plant physiology》1969,44(4):591-593,595,597-598
δ-Tocopherylquinone (δTQ) content was determined in tobacco and yellow maple leaves, green ivy leaves and cactus tissues. It was found that the concentration of δ-TQ was highest in mature or senescent tissues, such as white tobacco leaves (0.02 μmole/g dry wt) while its detection was uncertain in young, green leaves from the apex of tobacco plants. Fractionation by centrifugation of senescent tobacco leaves showed that the osmiophilic globule fraction was enriched in δ-TQ. Electron microscope studies of young, mature and senescent tobacco tissues showed progressive changes in the size and number of osmiophilic globules. After chloroplast breakdown in senescent tobacco leaves, these globules became the predominant constituents of the organelle. δ-TQ which is associated with osmiophilic globules may play a role in the development of plants, particularly during senescence.  相似文献   
122.
Extracts of Acanthamoeba castellanii (Neff) contain alpha- and beta-glucosidase, beta-galactosidase, beta-N-acetylglucosaminidase, amylase, and peptidase. All of these activities are optimal between pH 3 and 4. These extracts also were found to clarify suspensions of cell walls from nine different gram-positive bacteria, including Micrococcus lysodeikticus. The pH optimum for the lytic activity was between 3 and 4. The extent of lysis of the various cell walls did not correlate with the release of free amino groups and of free N-acetylated sugars from the walls during digestion with these extracts. Suspensions of cell walls of Escherichia coli (a gram-negative bacterium), Cordiceps militaris (a fungus), and Acanthamoeba cysts, as well as of colloidal chitin, were not clarified by incubation with these extracts, although reducing sugars were released from each of these materials. Exhaustive digestion of M. lysodeikticus walls by lysozyme released no free N-acetylglucosamine. The products of exhaustive digestion of this cell wall with Acanthamoeba extracts were free N-acetylglucosamine, free N-acetylmuramic acid, glycine, alanine, glutamic acid, lysine, and N-acetylmuramic acid peptide fragments. These results suggest that the amoeba extracts contain endo- and exo-hexosaminidases, in addition to beta-hexosaminidase and peptide hydrolases.  相似文献   
123.
Zusammenfassung Der neu isolierte Stamm W von Bdellovibio bacteriovorus infiziert und lysiert Rhodospirillum rubrum F und alle anderen untersuchten Athiorhodaceae, nicht aber Pseudomonas aeruginosa und Spirillum serpens. Er befällt auch zahlreiche Enterobacteriaceae und von den grampositiven Bakterien Streptococcus faecalis und Lactobacillus plantarum.Nach dem Festheften an der Zellwand wird diese in 3–20 min durchdrungen. In 10–60 min ist Bdellovibrio vollständig in die Zelle eingedrungen und hat sich im Raum zwischen Zellwand und cytoplasmatischer Membran angesiedelt.In 3–5 Std wird der gesamte Zellinhalt bis auf die Membranen aufgelöst. In dieser Phase erfolgt die Vermehrung von Bdellovibrio. In den ghosts sind die Parasiten in lebhafter Bewegung. Die Geißel hat einen Gesamtdurchmesser von 29 m und eine Länge von etwa 3 . Sie ist von einer Geißelscheide umgeben, die in Verbindung zur Zellwand steht. Der Durchmesser der Geißel ohne Scheide beträgt etwa 18 m. Bdellovibrio kann oberhalb eines Sauerstoffpartialdruckes von 4–5 mm Hg infizieren und sich vermehren. Der Titer von Bdellovibrio nimmt bei Aufbewahrung in lysierten Kulturen in 36 Tagen von 108 auf 101 pfu (plaque forming units) je ml ab. Bei Aufbewahrung in Nährkultur sinkt der Titer nur auf 104 pfu/ml ab. Die Zahl der Plaques im Verhältnis zum Titer der Impfsuspension von Bdellovibrio schwankt in Abhängigkeit vom Wirtsstamm. Wenn man die Plaque-Bildungsrate bei R. rubrum gleich 1 setzt, beträgt sie bei Serratia marcescens 0,0001, bei Proteus vulgaris 10. Bd. bacteriovorus, Stamm W wächst nicht in synthetischer Nährlösung oder Lysaten. Ein geringes Wachstum ohne Zellteilung findet in Zellextrakten von R. rubrum statt. Der Stamm vermehrt sich jedoch in hitzeinaktiviertem R. rubrum. Die Plaque-Bildungsrate ist unter diesen Bedingungen aber sehr niedrig.In Lysaten treten encystierte Dauerformen von Bdellovibrio bacteriovorus auf.
The host range and the infectious cycle of a new isolated, on gram-positive and gram-negative bacteria parasiting Bdellovibrio bacteriovorus strain
Summary Rhodospirillum rubrum and all other investigated Athiorhodaceae are infected and lysed by the new isolated strain W of Bdellovibrio bacteriovorus. This strain W parasites on numerous Enterobacteriaceae and the gram-positive bacteria Streptococcus faecalis and Lactobacillus plantarum, but not on Pseudomonas aeruginosa and Spirillum serpens.After attachment of Bdellovibrio to the host, the cell wall is penetrated in 3 to 20 min. In 10 to 60 min Bdellovibrio has completely entered the host cell. He remains in the space between cell wall and cytoplasmic membrane of the host.The host cell is completely lysed within 3 to 5 hours. During this phase the size and cell number of Bdellovibrio are increased and a new flagellum is likely to be formed. In the ghosts of the host cell a strong movement is observed. The single polar flagellum of Bdellovibrio has a diameter of 29 m. The flagellum consists of an inner core ( 18 m) and an outer sheath which is continued into the cell wall. Bdellovibrio is able to grow and to infect only under aerobic or semiaerobic conditions (oxygen partial pressure 4 to 5 mm Hg and more). The titer of Bdellovibrio is gradually decreased from 108 to 101 plaque forming units (pfu) per ml, when kept in the lysate for 36 days. In a synthetic medium there is a diminution of 104 pfu/ml only. The plating efficiency is dependent of the host strain. If the plating efficiency of Bdellovibrio with Rhodospirillum rubrum is 1.0, the rate varies from 0.0001 with Serratia marcescens to 10 with Proteus vulgaris. Bdellovibrio bacteriovorus strain W does not grow in a synthetic medium. However, it grows but does not multiply in cell free extracts of Rhodospirillum rubrum. The parasite is also able to infect and lyse heat inactivated R. rubrum. But the plating efficiency in this case is very low.It has been observed that in lysed cells of R. rubrum certain amount of Bdellovibrio is encysted. The morphology and fine structure of these cells is quite different from the normal virulent type.
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124.
The Contractile and Control Sites of Natural Actomyosin   总被引:2,自引:2,他引:0  
The various contractile and control sites of natural actomyosin gel were studied by comparing the kinetics of ATP hydrolysis with those of gel contraction, measured as an increase in turbidity. Contraction of actomyosin gel seems to require the cooperative reaction of ATP (with Mg) at two different sites. One of these sites catalyzes the hydrolysis of ATP and most probably contributes the driving force for contraction; the binding of ATP to the other site appears to break certain links that retard movement of the gel components. At limiting concentrations of ATP, the rate of contraction seems to depend on the rate of breaking these links as well as on the rate of ATP hydrolysis. But when both sites are saturated, the rate of contraction appears to be limited only by the rate of ATP hydrolysis. In addition to these two contractile sites, there are also two different control sites. At one, the relaxing site, the binding of ATP with Mg inhibits ATP hydrolysis and gel contraction. At the other, the binding of calcium activates contraction by overcoming the inhibitory action of Mg and ATP at the relaxing site. This control system—inhibition by substrate and disinhibition by calcium—can be selectively inactivated by heat and reactivated by dithiothreitol, a disulfide-reducing agent. These observations on the isolated contractile system are discussed in relation to the contraction and relaxation of muscle.  相似文献   
125.
Protein synthesis by microsomal particles from regenerating rat liver   总被引:12,自引:12,他引:0  
1. Washed microsome particles from regenerating liver were shown to incorporate [(14)C]leucine into protein more actively than similar preparations from normal liver. 2. The total incorporation in the preparations from regenerating liver increased linearly with the amount of protein incubated, whereas this was not so with preparations from normal liver. 3. The greater activity of regenerating-liver microsomes appeared to be associated with the bound polysomes. 4. The size distribution of polysomes obtained after removal of membrane with deoxycholate was the same in normal and regenerating liver. 5. In general the activity of polysome preparations from normal and regenerating liver was similar. 6. It is concluded that the greater activity of the particles in the microsome fraction from regenerating liver is to be attributed to the ribosomes bound to membrane and that their activity is controlled by factors present in the membrane.  相似文献   
126.
The effect of temperature on the potential and current thresholds of the squid giant axon membrane was measured with gross external electrodes. A central segment of the axon, 0.8 mm long and in sea water, was isolated by flowing low conductance, isoosmotic sucrose solution on each side; both ends were depolarized in isoosmotic KCl. Measured biphasic square wave currents at five cycles per second were applied between one end of the nerve and the membrane of the central segment. The membrane potential was recorded between the central sea water and the other depolarized end. The recorded potentials are developed only across the membrane impedance. Threshold current values ranged from 3.2 µa at 267deg;C to 1 µa at 7.5°C. Threshold potential values ranged from 50 mv at 26°C to 6 mv at 7.5°C. The mean Q10 of threshold current was 2.3 (SD = 0.2), while the Q10 for threshold potentials was 2.0 (SD = 0.1).  相似文献   
127.
128.
129.
PMS was injected thrice weekly for four weeks into first winter and second winter canaries during the following periods: September-October, November-December, January-February and February-March. Measures were made of ovary and oviduct weight, brood-patch development (defeathering, vascularity and sensitivity changes), nest-building and egg-laying. PMS caused overy growth in all months: this was greatest in the second year birds in February. Both control and treated ovaries increased in size towards the breeding season. Oviduct growth depends mainly on the size of the treated ovary. Defeathering was produced by PMS in all months: its rate and extent increased towards the breeding season. Vascularity was also produced by PMS. It was least in November-December but after that the rate at which it appeared increased towards the breeding season. By contrast, the effect of PMS on brood-patch skin sensitivity was greater in the autumn group than subsequently. Nest-building occurred in September-October, but was then very slight until February-March, which is the beginning of the breeding season. Eggs were laid in most months; fewer injections were needed to produce egg-laying as the breeding season approached.  相似文献   
130.
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