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931.
932.
Yeo Dennis; Abe Tomoko; Abe Hiroshi; Sakurai Akira; Takio Koji; Dohmae Naoshi; Takahashi Nobutaka; Yoshida Shigeo 《Plant & cell physiology》1996,37(7):935-940
Asparagus officinalis seedlings treated with either thiocarbamatesor carbamates are induced to flower within 2-3 weeks of application.SDS-PAGE and 2-D PAGE resolutions of total soluble proteinsof treated seedlings showed the accumulation of an acidic 17kDa polypeptide. Partialmino acid sequence of the acidic proteinshowed homology to the wound-responsive A. officinalisPR 1,AoPRl. We named this protein EFP, early flowering protein, owingto its advanced appearance during the early transition fromvegetative to floral phase. Carbamates and thiocarbamates thatinduced more than 80% flowering rates corresponded with increasedlevel of EFP while compounds that are weak flower inducers showedreduced amount of EFP. The observation thus denned the correlationshipof EFP to variable flowering rates. (Received May 27, 1996; Accepted July 11, 1996) 相似文献
933.
We report here a new type of cell-to-cell communication. Wenoticed that a characean cell can transmit its action potentialsto one or more cells which lie parallel to it separately inartificial pond water without any special connection betweenthe cells. Two experimental facts proved this transmission notchemical but electrical. No transmission was observed firstwhen an Ag-AgCl wire was placed between two cells, and secondwhen the whole length of the first cell was stimulated so thatnon-propagated action potential was induced. The results showthat the traveling electrical field strength might be the fundamentalfactor in the jumping transmission. (Received November 10, 1989; Accepted December 22, 1989) 相似文献
934.
935.
The hyperthermophilic archaeon Thermococcus kodakaraensis harbors a type III ribulose 1,5-bisphosphate carboxylase/oxygenase (Rbc(Tk)). It has previously been shown that Rbc(Tk) is capable of supporting photoautotrophic and photoheterotrophic growth in a mesophilic host cell, Rhodopseudomonas palustris Delta3, whose three native Rubisco genes had been disrupted. Here, we have examined the enzymatic properties of Rbc(Tk) at 25 degrees C and have constructed mutant proteins in order to enhance its performance in mesophilic host cells. Initial sites for mutagenesis were selected by focusing on sequence differences in the loop 6 and alpha-helix 6 regions among Rbc(Tk) and the enzymes from spinach (mutant proteins SP1 to SP7), Galdieria partita (GP1 and GP2), and Rhodospirillum rubrum (RR1). Loop 6 of Rbc(Tk) is one residue longer than those found in the spinach and G. partita enzymes, and replacing Rbc(Tk) loop 6 with these regions led to dramatic decreases in activity. Six mutant enzymes retaining significant levels of Rubisco activity were selected, and their genes were introduced into R. palustris Delta3. Cells harboring mutant protein SP6 displayed a 31% increase in the specific growth rate under photoheterotrophic conditions compared to cells harboring wild-type Rbc(Tk). SP6 corresponds to a complete substitution of the original alpha-helix 6 of Rbc(Tk) with that of the spinach enzyme. Compared to wild-type Rbc(Tk), the purified SP6 mutant protein exhibited a 30% increase in turnover number (k(cat)) of the carboxylase activity and a 17% increase in the k(cat)/K(m) value. Based on these results, seven further mutant proteins were designed and examined. The results confirmed the importance of the length of loop 6 in Rbc(Tk) and also led to the identification of specific residue changes that resulted in an increase in the turnover number of Rbc(Tk) at ambient temperatures. 相似文献
936.
Hahnke K Jacobsen M Gruetzkau A Gruen JR Koch M Emoto M Meyer TF Walduck A Kaufmann SH Mollenkopf HJ 《Journal of biotechnology》2007,128(1):1-13
Microarrays have rapidly become an indispensable tool for gene analysis. Microarray experiments can be cost prohibitive, however, largely due to the price of the arrays themselves. Whilst different methods for stripping filter arrays on membranes have been established, only very few protocols are published for thermal and chemical stripping of microarrays on glass. Most of these protocols for stripping microarrays on glass were developed in combination with specific surface chemistry and different coatings for covalently immobilizing presynthesized DNA in a deposition process. We have developed a method for stripping commercial in situ microarrays using a multi-step procedure. We present a method that uses mild chemical degradation complemented by enzymatic treatment. We took advantage of the differences in biochemical properties of covalently linked DNA oligonucleotides on in situ synthesized microarrays and the antisense cRNA hybridization probes. The success of stripping protocols for microarrays on glass was critically dependent on the type of arrays, the nature of sample used for hybridization, as well as hybridization and washing conditions. The protocol employs alkali hydrolysis of the cRNA, several enzymatic degradation steps using RNAses and Proteinase K, combined with appropriate washing steps. Stripped arrays were rehybridized using the same protocols as for new microarrays. The stripping method was validated with microarrays from different suppliers and rehybridization of stripped in situ arrays yielded comparable results to hybridizations done on unused, new arrays with no significant loss in precision or accuracy. We show that stripping of commercial in situ arrays is feasible and that reuse of stripped arrays gave similar results compared to unused ones. This was true even for biological samples that show only slight differences in their expression profiles. Our analyses indicate that the stripping procedure does not significantly influence data quality derived from post-primary hybridizations. The method is robust, easy to perform, inexpensive, and results after reuse are of comparable accuracy to new arrays. 相似文献
937.
938.
Yoshida A Nishimura T Kawaguchi H Inui M Yukawa H 《Applied microbiology and biotechnology》2007,74(4):754-760
A three-step biohydrogen production process characterized by efficient anaerobic induction of the formate hydrogen lyase (FHL)
of aerobically grown Escherichia coli was established. Using E. coli strain SR13 (fhlA
++, ΔhycA) at a cell density of 8.2 g/l medium in this process, a specific hydrogen productivity (28.0 ± 5.0 mmol h−1 g−1 dry cell) of one order of magnitude lower than we previously reported was realized after 8 h of anaerobic incubation. The
reduced productivity was attributed partly to the inhibitory effects of accumulated metabolites on FHL induction. To avoid
this inhibition, strain SR14 (SR13 ΔldhA ΔfrdBC) was constructed and used to the effect that specific hydrogen productivity increased 1.3-fold to 37.4 ± 6.9 mmol h−1 g−1. Furthermore, a maximum hydrogen production rate of 144.2 mmol h−1 g−1 was realized when a metabolite excretion system that achieved a dilution rate of 2.0 h−1 was implemented. These results demonstrate that by avoiding anaerobic cultivation altogether, more economical harvesting
of hydrogen-producing cells for use in our biohydrogen process was made possible. 相似文献
939.
Yoshida K Obata S Ono M Esaki M Maejima T Sawada H 《European journal of cell biology》2007,86(8):461-471
The 5F9A cell, which is a mesenchymal stem cell-like clone established from rat bone marrow substrate adherent cells, can differentiate into adipocytes and osteoblasts in vitro under the appropriate conditions. Multinucleated cells could be also induced by 12-O-tetradecanoylphorbol 13-acetate (TPA) in 5F9A cells. This effect was mediated by protein kinase C. Possible mechanisms of multinucleation by TPA were hypothesized to be either karyokinesis without cytokinesis or cell-cell fusion. By observation using time-lapse phase-contrast microscopy, we determined that the multinucleated cells were generated mainly by karyokinesis without cytokinesis. Cell fusion was studied using time-lapse photography, and confocal laser scanning microscopy using two differentially labeled cells. These techniques demonstrated that multinucleated 5F9A cells could be produced by cell fusion, albeit at a low frequency. We conclude that multinucleated 5F9A cells are formed primarily by karyokinesis without cytokinesis, although some cells are also formed by cell-cell fusion. 相似文献
940.
Yoshida K Yoshioka D Inoue K Takaichi S Maeda I 《Applied microbiology and biotechnology》2007,76(5):1043-1050
The change in carotenoid-based bacterial color from yellow to red can be applied to whole-cell biosensors. We generated several
green mutants to emphasize the color change in such biosensors. The blue-green crtI-deleted mutant, Rhodopseudomonas palustris no.711, accumulated the colorless carotenoid precursor, phytoene. Green Rhodovulum sulfidophilum M31 accumulated neurosporene, a downstream product of phytoene. Another green mutant, Rhodobacter sphaeroides Ga, accumulated neurosporene and chloroxanthin, which are both downstream products of phytoene. All green mutants accumulated
bacteriochlorophyll a. Photosynthetic membrane obtained from the green mutants all exhibited decreased absorption of wavelength range at 510–570 nm.
Therefore, these indicate that the greenish bacterial colors were mainly caused by the existence of bacteriochlorophyll a and the changes in carotenoid composition in photosynthetic membrane. The colors of the green mutants and their wild-type
strains were plotted in the CIE-L*a*b* color space, and the color difference (ΔE*ab) values between a green mutant and its
wild type were calculated. ΔE*ab values were higher in the green mutants than in Rdv. sulfidophilum CDM2, the yellowish host strain of reported biosensors. These data indicate that change in bacterial color from green to
red is more distinguishable than that from yellow to red as a reporter signal of carotenoid-based whole-cell biosensors. 相似文献