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The effect of the electrical potential on the H+-ATPase of Rhodospirillum rubrum is examined. It is shown that the forward reaction rate (ATP synthesis) is increased by a factor of 10 during illumination while the reversed rate is only slightly decreased. This indicates that the electrical potential across the membrane affects the rate constants mainly by increasing the forward rate constants rather than decreasing the reversed rate constants in order to go from net hydrolysis to net synthesis. 相似文献
104.
Improved yield of apple leaf protoplasts from in vitro cultured shoots by using very young leaves and adding L-methionine to the shoot medium 总被引:3,自引:0,他引:3
Protoplast isolation from apple leaf tissue of in-vitro cultured shoots is possible if very young leaves from buds are used. Digestible leaves are found in apple shoots of the subculture kerö 14 days after transferring the shoot and of M26 some days later.The yield of protoplasts is considerably improved if the apple shoots are cultured in a medium containing L-methionine (0.5 mM). 相似文献
105.
Margareta Blennow Patrick Olin Marta Granstr?m Roger H Bernier 《BMJ (Clinical research ed.)》1988,296(6636):1570-1572
A trial of the efficacy of a plain whole cell pertussis vaccine was conducted in Sweden. In this non-blinded trial 525 infants aged 2 months who were born on days with an even number received three doses of vaccine one month apart and 615 infants of the same age who were born on days with an odd number were enrolled as controls. During the 18 months of follow up there were 55 cases of pertussis. The attack rate was 1·5% (8/525) among the vaccinated children and 7·6% (47/615) among the unvaccinated children (p<0·001). The estimated efficacy of the vaccine was 80% (95% confidence interval 58 to 90).The estimated efficacy of pertussis vaccine was similar to that observed in British trials over 30 years ago. 相似文献
106.
Protochlorophyllide transformations and chlorophyll accumulation in epicotyls of pea (Pisum sativum) 总被引:1,自引:0,他引:1
Béla Böddi Ivar Evertsson Margareta Ryberg Christer Sundqvist 《Physiologia plantarum》1996,96(4):706-713
Low-temperature fluorescence emission spectra of epicotyls of 6.5-day-old dark-grown seedlings of pea ( Pisum sativum L.) showed the dominance of short-wavelength protoch lorophyllide forms with emission maxima at 629 and 636 nm, respectively. The presence of long-wavelength protochlorophyllide with emission maxima around 650 nm was just detectable. Accordingly, irradiation with millisecond flashes gave a minute formation of chlorophyllide. The chlorophyll(ide) formation varied along the epicotyl. Irradiation with continuous light for 1.5 h resulted in an evident accumulation of chlorophyll(ide) in the upper part of the epicotyl. Only small amounts accumulated in the middle section. The conversion of protochlorophyllide to chlorophyllide was temperature dependent and almost arrested at 0°C. The chlorophyll(ide) formed had one dominating fluorescence peak at 681 nm. Irradiation for 24 h gave almost 100 times more chlorophyll in the upper part of the epicotyl than in the lower part. Electron micrographs from the upper part of the epicotyl irradiated for 6 h showed plastids with several developing thylakoids, while the plastids in the lower part of the epicotyl had only a few thylakoids. The dominance of short-wavelength protochlorophyllide forms indicated the presence of protochlorophyllide not bound to the active site of NADPH-protochlorophyllide oxidoreductase (EC 1.3.1.33). The inability of the short-wavelength form to transform into chlorophyllide with flash light denotes a dislocation from the active site. The time and temperature dependence of the chlorophyll(ide) formation in continuous light indicates that a relocation is required of the short-wavelength protochlorophyllide before chlorophyllide formation can occur. 相似文献
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Inactivation of the replication-termination system affects the replication mode and causes unstable maintenance of plasmid R1 总被引:3,自引:2,他引:1
Margareta Krabbe Jan Zabielski Rolf Bernander & Kurt Nordström 《Molecular microbiology》1997,24(4):723-735
Two so-called Ter sites, which bind the Escherichia coli Tus protein, are located near the replication origin of plasmid R1. Inactivation of the tus gene caused a large decrease in the stability of maintenance of the R1 mini-derivative pOU47 despite the presence of a functional partition system on the plasmid. Deletion of the right Ter site caused a drop in stability similar to that observed after inactivation of the tus gene. Substitution of 2 bp required for Tus binding also caused unstable plasmid maintenance, whereas no effects on stability were observed when the left Ter site was deleted. Inactivation of the tus gene was coupled to an increased occurrence of multimeric plasmid forms as shown by gel electrophoresis of pOU47 DNA. Inactivation of the recA gene did not increase plasmid stability, suggesting that the multimerization was not mediated by RecA. Plasmid DNA was isolated from the tus strain carrying plasmid pOU47 and from a wild-type strain carrying pOU47 in which the right Ter site had been inactivated; in both cases, electron microscopy revealed the presence of multimers as well as rolling-circle structures with double-stranded tails. Thus, the right Ter site in plasmid R1 appears to stabilize the plasmid by preventing multimerization and shifts from theta to rolling-circle replication. 相似文献
110.
Vladimir Maksimov Miyuki Nakamura Thomas Wildhaber Paolo Nanni Margareta Ramström Jonas Bergquist Lars Hennig 《The Plant journal : for cell and molecular biology》2016,88(3):425-436
Histones are abundant cellular proteins but, if not incorporated into chromatin, they are usually bound by histone chaperones. Here, we identify Arabidopsis NASP as a chaperone for histones H3.1 and H3.3. NASP interacts in vitro with monomeric H3.1 and H3.3 as well as with histone H3.1–H4 and H3.3–H4 dimers. However, NASP does not bind to monomeric H4. NASP shifts the equilibrium between histone dimers and tetramers towards tetramers but does not interact with tetramers in vitro. Arabidopsis NASP promotes [H3–H4]2 tetrasome formation, possibly by providing preassembled histone tetramers. However, NASP does not promote disassembly of in vitro preassembled tetrasomes. In contrast to its mammalian homolog, Arabidopsis NASP is a predominantly nuclear protein. In vivo, NASP binds mainly monomeric H3.1 and H3.3. Pulldown experiments indicated that NASP may also interact with the histone chaperone MSI1 and a HSC70 heat shock protein. 相似文献