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Transfer of phospholipids between mesosomes and protoplasts from Bacillus subtilis.

1. Phospholipids were more intensively labelled from ammonium [1-14C]glycerophosphate in mesosomes than in protoplasts isolated from Bacillus subtilis. 2. When mesosomes, containing phospholipids labelled from sodium-[32P] phosphate were incubated with non radioactive protoplasts, labelled phospholipids were recovered in protoplasts after incubation. 3. This transfer of phospholipids from mesosomes toward protoplasts is time-dependent. 4. Soluble proteins obtained from Bacillus subtilis after ammonium sulphate precipitation were separated on a Sephadex G-100 column. 5. The two main fractions were able to accelerate the transfer of phospholipids from mesosomes toward protoplasts. 6. The first peak stimulated more actively the transfer of phosphatidylethanolamine whereas the second one preferentially accelerated the transfer of phosphatidylglycerol and diphosphatidylglycerol.

Bacillus subtilis↗

Rapid release of protoplasts from Eremothecium ashbyii in comparison with Trichoderma reesei and Penicillium chrysogenum using novozyme and funcelase.

Protoplast release in Eremothecium ashbyii, Trichoderma reesei, and Penicillium chrysogenum was achieved using commercially available enzymes, Novozyme 234 and Funcelase. A rapid release of protoplasts was observed in E. ashbyii, yielding nearly 4.0 x 10(7) protoplasts ml-1 in 10-35 min. The regeneration frequency of protoplasts from T. reesei, P. chrysogenum, and E. ashbyii using Funcelase was 51.77, 28.32, and 7.64%, respectively, and was higher in comparison with Novozyme-derived protoplasts.

Biotechnology↗

Selection and enrichment of differentially labeled plant protoplasts.

A fast and efficient method for the selection of plasmamembrane-marked protoplasts via magnetic-associated cell separation (MACS) was developed. Isolated mesophyll protoplasts from sunflower (Helianthus annuus L.) were covalently labeled at their plasma membrane with fluoresceine isothiocyanate (FITC) with an efficiency of greater than 95%. They were subsequently coupled to specific monoclonal antibodies against FITC, which were conjugated to magnetic beads, and mixed with unlabeled hypocotyl protoplasts. About 95% of the marked mesophyll protoplasts were separated by the MACS system with a purity of greater than 80%. Protoplasts embedded in agarose showed normal dividing activities.

Antibodies, Monoclonal↗

Structural and functional organisation of regenerated plant protoplasts exposed to microgravity on Biokosmos 9.

Preparatory experiments for the IML-1 mission using plant protoplasts, were flown on a 14-day flight on Biokosmos 9 in September 1989. Thirty-six hours before launch of the biosatellite, protoplasts were isolated from hypocotyl cells of rapeseed (Brassica napus) and suspension cultures of carrot (Daucus carota). Ultrastructural and fluorescence analysis of cell aggregates from these protoplasts, cultured under microgravity conditions, have been performed. In the flight samples as well as in the ground controls, a portion of the total number of protoplasts regenerated cell walls. The processes of cell differentiation and proliferation under micro-g did not differ significantly from those under normal gravity conditions. However, in micro-g differences were observed in the ultrastructure of some organelles such as plastids and mitochondria. There was also an increase in the frequency of the occurrence of folds formed by the plasmalemma together with an increase in the degree of complexity of these folds. In cell cultures developed under micro-g conditions, the calcium content tends to decrease, compared to the ground control. Different aspects of using isolated protoplasts for clarifying the mechanisms of biological effects of microgravity are discussed.

Brassica↗

Protein synthesis stimulated in sonicated sugar beet cells and protoplasts.

Sugar beet suspension cells and protoplasts were exposed to 20 kHz ultrasound and the amount of 35S-methionine incorporated into cellular protein was determined after 2 days of culture. The incorporation of 35S-methionine in cells was enhanced up to 90% after sonication for 220-770 ms at 1.2-3.5 W/cm2 which reduced viability 5-11% and decreased the average size of cell aggregates. In protoplasts, the 35S-methionine incorporation was increased up to 31% after sonication for 220-550 ms at 0.3-1.0 W/cm2 with a concomitant reduction in viability of 10-16%. At higher ultrasonic energies, 35S-methionine incorporation declined proportionally to the reduction in protoplast viability. At concentrations up to 30 mM, cystamine and cysteamine did not affect 35S-methionine incorporation or viability of the sonicated protoplasts. These results show that mild ultrasonic irradiation can stimulate protein synthesis in plant cells and protoplasts significantly.

Plant Cells↗

Translocation and nuclear accumulation of monomer and dimer of HIV-1 Tat basic domain in triticale mesophyll protoplasts.

Cellular internalization of cell-penetrating peptide HIV-1 Tat basic domain (RKKRRQRRR) was studied in Triticale cv AC Alta mesophyll protoplasts. Fluorescently labeled monomer (Tat) and dimer (Tat(2)) of Tat basic domain efficiently translocated through the plasma membrane of mesophyll protoplast and showed distinct nuclear accumulation within 10 min of incubation. Substitution of first arginine residue with alanine in Tat basic domain (M-Tat) severely reduced cellular uptake of the peptide (3.8 times less than Tat). Tat(2) showed greater cellular internalization than Tat (1.6 times higher). However, characteristics of cellular uptake remained same for Tat and Tat(2). Cellular internalization of Tat and Tat(2) was concentration dependent and non-saturable whereas no significant change in cellular uptake was observed even at higher concentrations of M-Tat. Low temperature (4 degrees C) remarkably increased cellular internalization of Tat as well as Tat(2) but M-Tat showed no enhanced uptake. Viability test showed that peptide treatment had no cytotoxic effect on protoplasts further indicating involvement of a common mechanism of peptide uptake at all the temperatures. Endocytic inhibitors nocodazole (10 muM), chloroquine (100 muM) and sodium azide (5 mM) did not show any significant inhibitory effect on cellular internalization of either Tat or Tat(2). These results along with stimulated cellular uptake at low temperature indicate that Tat peptide is internalized in the plant protoplasts in a non-endocytic and energy-independent manner. Competition experiments showed that non-labeled peptide did not inhibit or alter nuclear accumulation of fluorescent Tat or Tat(2) suggesting active transport to the nucleus was not involved. Studies in mesophyll protoplasts show that internalization pattern of Tat peptide is apparently similar to that observed in mammalian cell lines.

Cell Nucleus↗

Use of protoplasts from paired heterogenic bacterial species to detect tin contaminants: prospects for biosensor development.

Two different bacteria gave different respiratory responses to the test analytes, tributyl tin (TBT) and cadmium as expressed by positive sigmoid responses by Halomonas sp. (slope, +1.71 [TBT]; +1.76 [Cd]) and negative sigmoid responses by Bacillus pumilis (slope, -1.06 [TBT]; -0.59 [Cd]). The EC50 values determined from Hill plots for the response of Halomonas sp. to the TBT and Cd were 1 and 8.5 mM, respectively, which were lower by a factor of 10 than the corresponding values for B. pumilis. With protoplasts of B. pumilis there was a major shift in the signal from sigmoid negative to positive with TBT (+1.35) but not Cd (-0.5), while the signals with the remaining protoplast-analyte combinations remained unchanged. For all four protoplast-analyte combinations the EC50 values were in the order of 10-100-fold lower than those for their whole cell counterparts. When other analytes were tested the protoplasts gave a similar response to tin as for TBT, but detected copper and 2,4-dichlorophenol with similar signal profiles to Cd and with lower sensitivity. The difference in signal and higher sensitivity of the two species protoplast system towards TBT/tin compared to the other analytes tested, suggests that it may feasible to develop this approach for the detection of tin residues.

Bacillus↗

Quantum dot-mediated detection of gamma-aminobutyric acid binding sites on the surface of living pollen protoplasts in tobacco.

gamma-Aminobutyric acid (GABA) is an inhibitory transmitter in the central nervous system of mammals. Recent investigations showed that it also plays an important role in regulating pollen tube growth and orientation in plants. To determine whether GABA receptors are also present on the membrane of pollen protoplasts, a fluorescence probe of quantum dots (QDs) was constructed and applied. The water-soluble CdSe-ZnS (core-shell) QDs were first synthesized and verified to possess good optical properties. GABA was then bioconjugated to the QDs in the presence of 1-ethyl-3-(3)-dimethylaminopropyl carbodiimide (EDC) and N-hydroxysuccinimide (NHS) to make the fluorescence probe. Using the probe, GABA binding sites were detected on the protoplast membrane of both pollen and somatic cells. Both the fluorescent signals on the surface of the protoplasts and the Ca(2+) oscillation assayed via the Ca(2+) probe Fluo-3/AM inside the protoplasts provided evidence that the potential GABA(B) receptors are present on the plant protoplast membrane.

Aniline Compounds↗

Protoplast isolation of callus in Echinacea augustifolia.

Preparations from Echinacea are among the most widely used herbal medicines. Most uses of Echinacea are based on the reported immunological properties. In this paper, we used callus of Echinacea augustifolia for isolation and researched the factors influencing the process of protoplasts preparation, the result indicated it was easy to isolate protoplast from buff-green Callus in E. augustifolia which was looked like granule with symmetrical character. The result showed that the best enzyme solution concentration is composed of cellulase 2.0% (w/v), pectinase1.0% (w/v), hemicellulase 0.5% (w/v), 0.7 mol/L mannitol and 50.0 x 10(4) gFW(-1) protoplasts were obtained after 8 h later. The yield of protoplasts was significantly influenced by cellulase concentration and incubation time. Finally, we summarized an integrated approach including callus induction, callus culture, isolation, purification, identification and calculation of protoplasts.

Echinacea↗

Squash xylem sap has activities that inhibit proliferation and promote the elongation of tobacco BY-2 cell protoplasts.

To elucidate the physiological functions of the substances in xylem sap, we analyzed the biological activities of xylem sap from squash (Cucurbita maxima Duch.) root using tobacco BY-2 (Nicotiana tabacum L. cv. Bright Yellow 2) cell protoplasts. When BY-2 cell protoplasts were cultivated with the total substance of squash xylem sap, the protoplasts elongated remarkably, and cell division was inhibited. Although trans-zeatin riboside (ZR), the most abundant cytokinin in squash xylem sap, had a concentration-dependent effect similar to that of total squash xylem sap, ZR concentrations several orders of magnitude greater than those found endogenously in squash xylem sap (i.e. 2 x 10(-8) M) were required to affect the growth of BY-2 cell protoplasts. The ability to stimulate cell elongation and inhibit cell division in BY-2 cell protoplasts was observed for the ethyl acetate phase fraction (pH 2) of squash xylem sap and an acetonitrile-eluate fraction from reverse-phase chromatography. The xylem sap also showed inhibitory activity for auxin-induced elongation of excised cucumber hypocotyls. These results suggest that an organic substance other than ZR is produced in the root and transported to above-ground organs through the xylem via the transpiration stream, where it is involved in regulating cell proliferation and elongation in the shoot, possibly as an auxin antagonist.

Adenosine↗

Growth-related gene expression in Nicotiana tabacum mesophyll protoplasts.

Eight cDNAs whose genes are more strongly expressed in suspension cells in growth phase than in stationary phase and at a low level in mature leaves have been isolated. The corresponding mRNAs are abundantly accumulated in young plant organs and in germinating seeds but are almost undetectable in mature plant tissues and dry seeds. Six of these cDNAs were characterized by comparison of nucleotide and protein sequences to the EMBL and SWISSPROT databanks. These eight growth-related genes are expressed in protoplasts isolated from Nicotiana tabacum mesophyll cells shortly after preparation (4 h). Two of them are expressed in freshly isolated protoplasts (early genes), while the other six are detected after 4 h of culture (late genes). Seven are more abundantly expressed in protoplasts than in growing plant organs while one growth-related gene is weakly expressed in protoplasts, as is the histone H4 gene. They seem to be induced in protoplasts by a synergistic effect of wounding and maceration. Sustained expression of the early genes is dependent on the presence of sucrose in the culture medium.

Amino Acid Isomerases↗

Isolation of an auxin-regulated gene cDNA expressed during the transition from G0 to S phase in tobacco mesophyll protoplasts.

A cDNA clone for an auxin-regulated gene was isolated from a tobacco mesophyll protoplast cDNA library by differential screening. Nucleotide, sequence analysis showed that the deduced product of the gene, which we have designated par, is hydrophilic and is composed of 220 amino acids. No significant homology to other known proteins was detected. The mRNA of the par gene is approximately 900 bases long and its accumulation was detected in cultured mesophyll protoplasts as early as 30 min after the addition of 2,4-dichlorophenoxyacetic acid to the culture medium. The par mRNA was not detected in leaves or freshly prepared protoplasts or in protoplasts in the absence of 2,4-dichlorophenoxyacetic acid. Expression of the par gene was detected at a low level in actively dividing BY-2 tobacco suspension culture cells. The conspicuous accumulation of par mRNA before the initiation of DNA synthesis in tobacco mesophyll protoplasts suggests that the par gene product could play a role in the initiation of meristematic activity in differentiated mesophyll cells.

Amino Acid Sequence↗

Selective osmotic effect on diffusion of plasma membrane lipids in maize protoplasts.

Osmotic levels in the range typically used during plant protoplast isolation and incubation were investigated with regard to effects on the lateral diffusion of lipid probes in the plasma membrane. The lateral diffusion coefficient of a fluorescent sterol probe in the plasma membrane of maize (Zea mays L.) root protoplasts in a medium containing 0.45 M mannitol was 4 times faster than when the medium contained 0.9 M mannitol. The lateral diffusion coefficient of a fluorescent phospholipid probe, however, did not change over this range of mannitol concentrations. Similar diffusion characteristics were observed when the medium contained trehalose instead of mannitol. Slower lateral diffusion of the sterol probe at higher osmolality was also observed when KCl/CaCl2-based osmotic media were used with protoplasts isolated by a mechanical, rather than by an enzymic, method. Extraction and quantitation of total lipids from protoplasts showed that both the phospholipid and sterol contents per protoplast decreased with increasing osmolality, while the sterol/phospholipid ratio increased. These results demonstrate that osmotic stress induces selective changes in both the composition and biophysical properties of plant membranes.

Cell Membrane↗

Marked changes in volume of mesophyll protoplasts of pea (Pisum sativum) on exposure to growth hormones.

The present study reports quick and significant changes induced by plant hormones in the volume of mesophyll protoplasts of pea (Pisum sativum). Four plant hormones: gibberellic acid (GA3), indole 3-acetic acid (IAA), abscisic acid (ABA)(+/-) and methyl jasmonate (MJ), caused marked changes in the volume of mesophyll protoplasts. GA3 and IAA increased the volume of the protoplasts (up to 90%) whereas the ABA and MJ decreased (by about 40%) the volume. Aquaporins or water channels appear to play an important role in swelling/shrinkage of the protoplasts as indicated by the suppression of volume changes by HgCl2 and reversal by mercaptoethanol. The possible role of secondary messengers in volume changes induced by GA3 was investigated by using selected pharmacological reagents. The GA3 induced swelling was restricted by GDP-beta-S (G-protein antagonist), U73122 (phospholipase C inhibitor), and TFP (calmodulin antagonist), but was not affected by 1-butanol (phospholipase D inhibitor), GTP-gamma-S (G-protein agonist), or verapamil (calcium channel blocker). The results suggest that the mesophyll protoplasts can be a simple and useful system for further studies on volume changes in plant tissues.

Abscisic Acid↗

Vacuolar membrane lesions induced by a freeze-thaw cycle in protoplasts isolated from deacclimated tubers of Jerusalem artichoke (Helianthus tuberosus L.).

The processes of freezing injury in Jerusalem artichoke (Helianthus tuberosus L.) tubers were studied using protoplasts isolated from cold-acclimated and deacclimated tubers. Prior to freezing, protoplasts were preloaded with 10 microM fluorescein diacetate (FDA) in an isotonic sorbitol solution. After freeze-thawing at various temperatures, cell viability was evaluated under a fluorescence microscope. In cold-acclimated tubers, more than 80% of protoplasts survived freezing to -20 degrees C. By contrast, in deacclimated tubers, the cell survival abruptly declined after freezing to temperatures below -5 degrees C. Thus, freezing tolerance differed significantly between protoplasts isolated from cold-acclimated and deacclimated tubers. Two distinct types of cell injury, which were caused by either damage to plasma membrane (cell-lysis type) or by damage to the vacuolar membrane (abnormal-staining type), were observed, depending on the cold hardiness and freezing temperature. In the cells of the abnormal-staining type, shrinkage of the central vacuolar space and simultaneous acidification of the cytoplasmic space were characteristically observed immediately before complete cell-rehydration during thawing. The decrease in freezing tolerance of protoplasts after deacclimation was suggested to be due mainly to destabilization of the vacuolar membrane by freeze-induced dehydration stress.

Freezing↗

Isolation and characterization of a cytokinin up-regulated gene from tobacco mesophyll protoplasts.

We have isolated a cytokinin up-regulated cDNA clone, H13, from an early stage of cultured tobacco mesophyll protoplasts by a differential display method. The expression of this gene was specifically induced by natural and synthetic cytokinins including N-(2-chloro-4-pyridyl)-N'-phenylurea (4PU30), a diphenylurea-type cytokinin, although the simultaneous presence of auxin was also required. It seems that the preceding treatment of the tobacco mesophyll protoplasts by auxin is necessary for the gene to respond to cytokinin. The addition of a cytokinin antagonist, compound 182, which suppressed the induction of cell division in tobacco mesophyll protoplasts, completely abolished the expression of this gene. Though the predicted gene product of H13 did not suggest us any sequences of defined functions, two domains of the predicted sequence had significant homology to several reported sequences in the data base. The gene product of H13 is proposed to have a role in regenerating cell wall in cultured protoplasts, since a cDNA clone E6, from cotton fiber cells, which has the most closely related structure to H13, has been isolated from cells which showed active cellulose synthesis. This supposition is supported by the evidence that in the absence of cytokinin, cell wall regeneration was significantly suppressed, resulting in failure of the induction of cell division. Thus, the gene product of H13 is supposed to have a role in regenerating cell walls and facilitating the progression of the cell cycle, resulting in the sustained cell division of tobacco mesophyll protoplasts.

Amino Acid Sequence↗

A proteomic approach to apoplastic proteins involved in cell wall regeneration in protoplasts of Arabidopsis suspension-cultured cells.

To clarify the mechanisms of cell wall construction, we used a proteomic approach to investigate the proteins secreted into cell wall spaces during cell wall regeneration from the protoplasts of Arabidopsis suspension-cultured cells. We focused on cell wall proteins loosely bound to the cell wall architecture and extractable with 1 M KCl solutions from: (i) native suspension cultured cells; (ii) protoplasts that had been allowed to regenerate their cell walls for 1 h; and (iii) protoplasts allowed to regenerate their cell walls for 3 h. We adopted a non-destructive extraction procedure without disrupting cellular integrity, thereby avoiding contamination from cytoplasmic proteins. Using two-dimensional polyacrylamide gel electrophoresis (2-D PAGE) and matrix-assisted laser desorption ionization-time-of-flight/mass spectrometry (MALDI-TOF/MS), we separated, mapped and identified 71 proteins derived from the native cell wall, and 175 and 212 proteins derived from the 1 and 3 h regenerated protoplasts, respectively. Quite different sets of proteins with differing status of their post-translational modifications, including phosphorylation and glycosylation, were identified in the three protein fractions. This indicated dynamic in muro changes in the cell wall proteins during cell wall regeneration in the protoplasts. The analysis revealed a set of enzymes specifically involved in cell wall expansion and construction in suspension-cultured cells. This approach has also determined a set of cell wall proteins that had not been predicted to be localized in cell wall spaces.

Arabidopsis↗

Electrotransfection of turnip yellow mosaic virus RNA into Brassica leaf protoplasts and detection of viral RNA products with a non-radioactive probe.

We describe here a convenient and efficient system for studying turnip yellow mosaic virus (TYMV) replication in leaf protoplasts. Inoculation of rapeseed (Brassica napus) or Chinese cabbage (B. sinensis) protoplasts was achieved via electroporation, and sensitive detection of viral RNA products was performed by Northern blot analyses using a non-radioactive digoxigenin-labelled cDNA probe. Virus replication was detected when 1.5 x 10(6) rapeseed protoplasts were inoculated with 20 ng of TYMV RNA. Electrotransfection of TYMV RNA was more efficient in rapeseed than in Chinese cabbage protoplasts, and gave somewhat higher signals than those of TYMV virions. TYMV RNA appeared to replicate equally well whether the protoplasts were incubated in the dark or under constant light.

Blotting, Northern↗