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1.
Cationic cell wall-bound peroxidase (CWPO-C) has the capability to oxidize sinapyl alcohol, ferrocytochrome c, and synthetic lignin polymers, unlike most peroxidases that have been characterized in flowering plants, such as horseradish peroxidase and Arabidopsis thaliana peroxidase A2. It has been suggested that the oxidation site is located on the CWPO-C surface, and homology modeling and chemically modified CWPO-C studies suggest that Tyr74 and/or Tyr177 are possible participants in the catalytic site. The present study clarifies the importance of these Tyr residues for substrate oxidation, using recombinant CWPO-C and recombinant mutant CWPO-C with phenylalanine substitution(s) for tyrosine. Such recombinant proteins, produced in Escherichia coli as inclusion bodies, were successfully refolded to yield the active form, and purified recombinant protein solutions exhibited typical spectra of high-spin ferric protein and displayed H(2) O(2) -dependent oxidation of guaiacol, 2,6-dimethoxyphenol, and syringaldazine. Measurement of peroxidase activity with these guaiacyl and syringyl compounds as reducing substrates indicated that a single mutation, Y74F or Y177F, resulted in substantial loss of oxidation activity (~ 40-60% and 82%, respectively). Also, over 95% of the oxidation activity was lost with a double mutation, Y74F/Y177F. These results indicated that Tyr74 and Tyr177, rather than the heme pocket, play a central role in the oxidation of these substrates. This is the first report of active residues on an enzyme surface being identified in a plant peroxidase. This study also suggests that sinapyl alcohol incorporation into lignin is performed by a peroxidase that generates Tyr radicals on its surface. 相似文献
2.
A. Ros Barceló 《Protoplasma》1995,186(1-2):41-44
Summary The post-exponential growth phase of lupin (Lupinus albus cv. Multolupa) hypocotyls is characterized by a strong deposition of lignins in the primary and secondary walls of the xylem vessels. Coinciding with this phenomenon, there is a clearly peroxidatic activity in both the primary cell walls and the outer-most layers of the secondary thickening of the xylem vessels, as demonstrated by 3,3-diaminobenzidine cytochemistry. This activity was completely inhibited by KCN and the removal of H2O2 and was not due to laccase since this enzyme shows an almost total inability to oxidize 3,3-diaminobenzidine both in the presence and in the absence of H2O2. The absence of laccase-like activities in cell walls of vascular cells was supported by the fact that cell wall proteins from vascular cells were only capable of oxidizing 3,3-diaminobenzidine and coniferyl alcohol in the presence of H2O2. These results support the idea of an exclusive role of peroxidase (and exclude any role for laccase) in lignin formation in the secondary thickening of xylem vessels inLupinus. 相似文献
3.
Cell suspension cultures of Populus alba L. (original cells) require at least 10 M boron for appropriate growth. Using original cells we established a cell line, T-5B, which can grow in a medium containing low levels of boron (5 M). The level of boron localized in the cell walls of T-5B cells was one-half that found in the cell walls of original cells maintained in medium containing 100 M boron, and the level of the rhamnogalacturonan II dimer, cross-linked by a borate ester, also decreased in the former. The sugar composition of whole cell walls of the T-5B cell line was similar that of the original cells, however pectic polysaccharides composed of arabinose or galacturonic acid were easily extracted from T-5B cell walls with 50 mM trans-1,2-cyclohexanediamine-N,N,N,N-tetraacetic acid. Our results suggest that boron deficiency causes a weakening of the interaction among pectic polysaccharides due to a decrease in boron-rhamnogalacturonanII cross-linkage. 相似文献
4.
It was previously reported that an unique peroxidase isoenzyme, cationic cell-wall-bound peroxidase (CWPO-C), from poplar callus oxidizes sinapyl alcohol, ferrocytochrome c and synthetic lignin polymers, unlike other plant peroxidases. Here, the catalytic mechanism of CWPO-C was investigated using chemical modification and homology modeling. The simulated CWPO-C structure predicts that the entrance to the heme pocket of CWPO-C is the same size as those of other plant peroxidases, suggesting that ferrocytochrome c and synthetic lignin polymers cannot interact with the heme of CWPO-C. Since Trp and Tyr residues are redox-active, such residues located on the protein surface were predicted to be active sites for CWPO-C. Modification of CWPO-C Trp residues did not suppress its oxidation activities toward guaiacol and syringaldazine. On the other hand, modification of CWPO-C Tyr residues using tetranitromethane strongly suppressed its oxidation activities toward syringaldazine and 2,6-dimethoxyphenol by 90%, respectively, and also suppressed its guaiacol oxidation activity to a lesser extent. Ferrocytochrome c was not oxidized by Tyr-modified CWPO-C. These results indicate that the Tyr residues in CWPO-C mediate its oxidation of syringyl compounds and high-molecular-weight substrates. Homology modeling indicates that Tyr-177 and Tyr-74 are located near the heme and exposed on the protein surface of CWPO-C. These results suggest that Tyr residues on the protein surface are considered to be important for the oxidation activities of CWPO-C with a wide range of substrates, and potentially unique oxidation sites for the plant peroxidase family. 相似文献
5.
M. Schmidt A. M. Schwartzberg P. N. Perera A. Weber-Bargioni A. Carroll P. Sarkar E. Bosneaga J. J. Urban J. Song M. Y. Balakshin E. A. Capanema M. Auer P. D. Adams V. L. Chiang P. James Schuck 《Planta》2009,230(3):589-597
Chemical imaging by confocal Raman microscopy has been used for the visualization of the cellulose and lignin distribution
in wood cell walls. Lignin reduction in wood can be achieved by, for example, transgenic suppression of a monolignol biosynthesis
gene encoding 4-coumarate-CoA ligase (4CL). Here, we use confocal Raman microscopy to compare lignification in wild type and
lignin-reduced 4CL transgenic Populus trichocarpa stem wood with spatial resolution that is sub-μm. Analyzing the lignin Raman bands in the spectral region between 1,600 and
1,700 cm−1, differences in lignin signal intensity and localization are mapped in situ. Transgenic reduction of lignin is particularly
pronounced in the S2 wall layer of fibers, suggesting that such transgenic approach may help overcome cell wall recalcitrance
to wood saccharification. Spatial heterogeneity in the lignin composition, in particular with regard to ethylenic residues,
is observed in both samples.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
6.
Summary During the early development of mungbean seedlings, treatment with L--aminooxy--phenylpropionic acid (AOPP), a potent specific inhibitor of phenylalanine ammonia-lyase, results in an inhibition of anthocyanin and lignin synthesis. The xylem vessels of the hypocotyl and root of AOPP treated seedlings collapse, and the cellulose microfibrils of the unlignified secondary wall are separated from one another and lie disorganized in the lumen of the mature xylem cell. The differentiation of the secondary cell wall appears unaffected by AOPP treatment, as does the ultrastructure of the wall of the mature phloem fibers of the root which is also lignified in untreated tissue. The results are discussed in the light of current thinking on the role and development of lignification in the xylem vessel.Abbreviation AOPP
L-aminooxy--phenylpropionic acid 相似文献
7.
We have localized two cell-wall-matrix polysaccharides, the main pectic polysaccharide, rhamnogalacturonan I (RG-I), and the hemicellulose, xyloglucan (XG), in root-tip and leaf tissues of red clover (Trifolium pratense L.) using immunoelectron microscopy. Our micrographs show that in both leaf and root tissues RG-I is restricted to the middle lamella, with 80–90% of the label associated with the expanded regions of the middle lamella at the corner junctions between cells. Xyloglucan, however, is nearly exclusively located in the cellulose-microfibril-containing region of the cell wall. Thus, these cell-wall-matrix polysaccharides are present in distinct and complementary regions of the cell wall. Our results further show that during cell expansion both RG-I and XG are present within Golgi cisternae and vesicles, thus confirming that the Golgi apparatus is the main site of synthesis of the non-cellulosic cell-wall polysaccharides. No label is seen over the endoplasmic reticulum, indicating that synthesis of these complex polysaccharides is restricted to the Golgi. The distribution of RG-I and XG in root-tip cells undergoing cell division was also examined, and it was found that while XG is present in the Golgi stacks and cell plate during cytokinesis, RG-I is virtually absent from the forming cell plate.Abbreviations ER
endoplasmic reticulum
- RG-I
rhamnogalacturonan I
- XG
xyloglucan 相似文献
8.
The effect of a short-term low temperature on cellular characteristics of a frost ring in radiata pine (Pinus radiata) secondary xylem was investigated using various microscopic techniques. Cell walls in the frost ring, that formed in the
earlywood due to an abrupt drop in the temperature one night in the Spring, were poorly developed, lacking in the proper thickness
and the proportion of wall constituents. In majority of the cases, the cell walls were highly convoluted and the secondary
walls developed poorly and incompletely. Judging by irregular deposition of lignin, it appears that the control mechanism
ensuring an orderly deposition of monolignols failed to function properly. The highly porous texture of some secondary walls
indicated that cellulosic and hemicellulosic framework was affected, which would explain irregular lignification of cell walls.
Thus the frost ring constitutes a serious defect in the timber, being a zone of weakness along which the wood is likely to
split during processing, such as drying. 相似文献
9.
The frequency of plasmodesmata increases in the shoot apical meristem of plants of Sinapis alba L. induced to flower by exposure to a single long day. This increase is observed within all cell layers (L1, L2, L3) as well
as at the interfaces between these layers, and it occurs in both the central and peripheral zones of the shoot apical meristem.
The extra plasmodesmata are formed only transiently, from 28 to 48 h after the start of the long day, and acropetally since
they are detectable in L3 4 h before they are seen in L1 and L2. These observations indicate that (i) in the Sinapis shoot apical meristem at floral transition, there is an unfolding of a single field with increased plasmodesmatal connectivity,
and (ii) this event is an early effect of the arrival at this meristem of the floral stimulus of leaf origin. Since (i) the
wave of increased frequency of plasmodesmata is 12 h later than the wave of increased mitotic frequency (A. Jacqmard et al.
1998, Plant cell proliferation and its regulation in growth and development, pp. 67–78; Wiley), and (ii) the increase in frequency
of plasmodesmata is observed in all cell walls, including in walls not deriving from recent divisions (periclinal walls separating
the cell layers), it is concluded that the extra plasmodesmata seen at floral transition do not arise in the forming cell
plate during mitosis and are thus of secondary origin.
Received: 4 October 1999 / Accepted: 23 December 1999 相似文献
10.
11.
Thomas Wemmer Helgard Kaufmann Hans-Hubert Kirch Katharina Schneider Friedrich Lottspeich Richard D. Thompson 《Planta》1994,194(2):264-273
An abundant, pistil-specific basic protein has been purified and characterized from potato (Solanum tuberosum L.). A polymerase chain reaction (PCR) probe was generated for the corresponding gene using oligonucleotides based on internal peptide sequences of the protein, and the PCR probe was further employed to isolate cDNA and genomic clones. The sequence of the gene exhibits up to 70% similarity to previously described endochitinase class 1a protein sequences, and the purified protein possesses chitinase {poly[1, 4-(N-acetyl--D-glucosaminide)] glucanohydrolase, EC 3.2.1.14} activity. The protein, termed SK2, has been located by immunocytochemistry to the intercellular matrix of the stylar transmitting tract. Immunoblot analysis has shown SK2 to be distinct from the wound-induced chitinases of potato. The SK2-class of chitinase is restricted in its distribution within the Solanaceae to the sub-family Solanoidae, which includes cultivated tomato and potato species. It was absent from the Cestroidae species tested (Petunia hybrida, Nicotiana tabacum). A role for SK2 endochitinase in protecting the ovary against pollen-tubemediated pathogen ingress is proposed.Abbreviations FPLC
fast protein liquid chromatography
- IEF
isoelectric focussing
- PCR
polymerase chain reaction
We are indebted to Drs. E. Kombrink, J. Logemann, J. Schmidt and Mr. G. Jach (MPI für Züchtungsforschung, Köln, Germany) for advice on chitinase assays. The technical assistance of Ms. U. Seul and Mrs. B. Piegeler is gratefully acknowledged. Electron microscopy was carried out under the supervision of Drs. Brian Wells and Keith Roberts, (John Innes Centre for Plant Science Research, Norwich, UK). This research was supported by the Deutsche Forschungsgemeinschaft SPP Mechanisms of Hybrid Breeding, and the EC BRIDGE programme. 相似文献
12.
Summary A chemostat study was conducted to investigate the influence of water quality parameters related to acidification processes on the decomposition of floating leaves of Nymphaea alba L. HCO
inf3
sup–
and total Al concentration and pH influenced the decay rate. The activity of four cell-wall decaying exoenzymes was measured in the detritus. The activity of two types of pectic enzyme and xylanase was low under acid conditions. Cellulase activity was little affected. The exoenzyme activity seemed to be influenced by the pH of the water within the detritus. Inhibition of pectic enzymes under acid conditions may be an important factor causing the slow decay of macrophyte remains in acid waters. 相似文献
13.
Elsholtzia splendens is a Cu-tolerant plant growing in copper mine areas in the south of China. In this study, X-ray absorption spectroscopy (XAS)
was used to investigate the Cu speciation and biotransformation in E. splendens with 300 μM Cu treatment from 10 days to 60 days. The results showed that 300 μM Cu was phytotoxic to E. spendens. The Cu K-edge X-ray absorption near edge structure (XANES) revealed that most copper in roots, stems and leaves exists as
divalent Cu. Cu speciation changed depending on the treatment time, but there was no unidirectional trend in roots, stems,
and leaves. The percentages of potential Cu ligands in all samples were estimated by fitting the XANES spectra with linear
combinations. Most Cu in roots, stems and leaves was bound with cell wall and histidine (His)-like ligands, while a minor
proportion of the Cu was bound to oxalate and glutathione-like ligands. The fitting results of Cu K-edge extended X-ray absorption
fine structure (EAXFS) showed that nitrogen/oxygen (N/O) ligands were dominant in roots, stems and leaves of the plant, while
S ligands were rare. All these results suggest that Cu bound by N/O ligands plays a key role in Cu detoxification of E. splendens, and a role for classical metal-detoxifying S ligands, such as metallothioneins and phytochelatins, in Cu detoxification
of E. splendens is not supported in the present study. Due to the phytotoxicity of 300 μM Cu to E. splendens, the question of whether S ligands play a significant role in Cu detoxification in E. splendens exposed to lower levels of Cu should be further studied. 相似文献
14.
Taizo Hogetsu 《Planta》1991,185(2):190-200
Arrangements of microfibrils (MFs) and microtubules (MTs) were examined in tracheary elements (TEs) of Pisum sativum L. and Commelina communis L. by production of replicas of cryo-sections, and by immunofluorescence microscopy, respectively. The secondary wall thickenings of TEs of Pisum and Commelina roots have pitted and latticed patterns, respectively. Most MFs in the pitted thickening of Pisum TEs retain a parallel alignment as they pass around the periphery of pits. However, some groups of MFs grow into the pits but then terminate at the edge of the thickening, indicating that cellulose-synthase complexes are inactivated in the plasma membrane under the pit. Microtubules of TEs of both Pisum and Commelina are localized under the secondary thickening and few MTs are detected in the areas between wall thickenings. In the presence of the MT-disrupting agent, amiprophosmethyl, cellulose and hemicellulose, which is specific to secondary thickening, are deposited in deformed patterns in TEs of Pisum roots, Pisum epicotyls and Commelina roots. This indicates that the localized deposition of hemicellulose as well as cellulose involves MTs. The deformed, but heterogeneous pattern of secondary thickening is still visible, indicating that MTs are involved in determining and maintaining the regular patterns of the secondary thickening but not the spatial heterogeneous pattern of the wall deposition. A working hypothesis for the formation of the secondary thickening is proposed.Abbreviations APM
amiprophosmethyl
- DMSO
dimethyl sulfoxide
- F-WGA
fluorescein-conjugated wheat-germ agglutinin
- M F
microfibril
- MT
microtubule
- PEG
polyethyleneglycol
- TE
tracheary element
I thank Ms. Aiko Hirata (Institute of Applied Microbiology, University of Tokyo, Japan) for help in taking stereomicrographs. This work was supported in part by a Grant-in-Aid from the Ministry of Education, Science and Culture of Japan. 相似文献
15.
Abstract: We have used monolayers of control 3T3 fibroblasts and 3T3 fibroblasts expressing transfected cell adhesion molecules (CAMs)—NCAM, N-cadherin, and L1—as a culture substrate for cerebellar neurones. The transfected CAMs promote neurite outgrowth by activating a second messenger pathway that culminates in calcium influx into neurones through N-and l -type calcium channels. We show that the same neurite outgrowth response can be directly induced by arachidonic acid (10 μ M ) and that this response can be inhibited by N-and l -type calcium channel antagonists. In cells, arachidonic acid can be generated by phospholipase A2 or by the sequential activities of a phospholipase C (to generate diacylglycerol) and diacylglycerol lipase. In the present study we show the neurite outgrowth stimulated by CAMs (but not by various other agents) can be abolished by an inhibitor of diacylglycerol lipase acting at a site upstream from calcium channel activation. The results suggest that arachidonic acid and/or one of its metabolites is the second messenger that activates calcium channels in the CAM signalling pathway leading to axonal growth, and this is supported by recent evidence that shows the same concentrations of arachidonic acid can increase voltage-dependent calcium currents in cardiac myocytes. 相似文献
16.
M. SOTTOMAYOR M. C. de PINTO R. SALEMA F. DiCOSMO M. A. PEDREÕO A. ROS BARCELO 《Plant, cell & environment》1996,19(6):761-767
Partially purified protein extracts of Catharanthus roseus leaves were able to couple catharanthine and vindoline to produce α-3′,4′-anhydrovinblastine (AVLB) in a reaction strictly dependent on H2O2. This result, and the co-purification of peroxidase with AVLB synthetase activity, strongly suggest a peroxidase-like nature for the coupling enzyme. Only one peroxidase isoenzyme was detected in C. roseus leaves, and it was shown that this isoenzyme consists of a molecularly-heterogeneous basic peroxidase (EC 1-11-1-7) mainly located in the vacuole. These results suggest that a basic peroxidase located in the vacuole may be the main enzyme responsible for AVLB synthesis in C. roseus leaves. This isoenzyme was also found in cell walls where a peroxidase inhibitor was detected. 相似文献