Formation of 13C-Enriched Cell-Wall DHP Using Isolated Soft Xylem from Picea abies

Holzforschung ◽  
2002 ◽  
Vol 56 (6) ◽  
pp. 585-591 ◽  
Author(s):  
J. Hafrén ◽  
U. Westermark ◽  
H. Lennholm ◽  
N. Terashima

Summary Cell-wall dehydrogenation polymers (CW-DHP) were prepared by incubating a mixture of soft xylem (differentiating xylem) from Picea abies, coniferin 13C-enriched at the side-chain β-carbon and unenriched coniferin, both with and without the addition of β-glucosidase and glucose oxidase, which causes an in situ polymerisation of the coniferyl alcohol in the cell wall. From difference solid state 13C-NMR spectra between 13C-enriched CW-DHP and unenriched CW-DHP, the bond frequencies involving specifically 13C-enriched carbon can be quantitatively determined. The sub-structures in CW-DHP prepared without the addition of β-glucosidase and glucose oxidase showed more similarity to protolignin than CW-DHP prepared with the addition of extraneous enzymes. The CW-DHP obtained without the addition of enzymes contained 36% β-O-4-derived sub-structures, 44% combined β-β, β-5 and β-1 sub-structures and 20% coniferyl alcohol/coniferaldehyd end groups. After acetone/water extraction of the CW-DHP, the content of β-β, β-5 and β-1 structures decreased by 4%, and the β-O-4 dominating peak increased by 4%. The 13C-enriched CW-DHP material can be used to study lignin reactions in a solid wood matrix, and is also a powerful system for detailed studies on in vivo lignification mechanisms and the effects on lignification conditions on lignin structure.

Author(s):  
D. Reis ◽  
B. Vian ◽  
J. C. Roland

Wall morphogenesis in higher plants is a problem still open to controversy. Until now the possibility of a transmembrane control and the involvement of microtubules were mostly envisaged. Self-assembly processes have been observed in the case of walls of Chlamydomonas and bacteria. Spontaneous gelling interactions between xanthan and galactomannan from Ceratonia have been analyzed very recently. The present work provides indications that some processes of spontaneous aggregation could occur in higher plants during the formation and expansion of cell wall.Observations were performed on hypocotyl of mung bean (Phaseolus aureus) for which growth characteristics and wall composition have been previously defined.In situ, the walls of actively growing cells (primary walls) show an ordered three-dimensional organization (fig. 1). The wall is typically polylamellate with multifibrillar layers alternately transverse and longitudinal. Between these layers intermediate strata exist in which the orientation of microfibrils progressively rotates. Thus a progressive change in the morphogenetic activity occurs.


2001 ◽  
Vol 2001 ◽  
pp. 154-154
Author(s):  
M. Rezaeian ◽  
G. W. Beakes ◽  
D. S. Parker

Measurement ofin situfungal populations is needed in order to determine the extent of their contribution to the ruminal digestive process. Since chitin is present in the cell wall of rumen fungi (Orpin, 1977), measurement of this polymer can be used to estimate fungal biomass and their growthin vitro(Rezaeian, 1996) andin vivo(Argyle and Douglas, 1989). The objective of this experiment was to study the effect of diet composition on the chitin content of both ruminal fluid and digesta solids as an index of the fungal population in the rumen.


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 616-616
Author(s):  
Fortunato Morabito ◽  
Giovanna Cutrona ◽  
Anna Grazia Recchia ◽  
Marina Fabbi ◽  
Silvano Ferrini ◽  
...  

Abstract Background : CLL displays a considerable degree of clinical heterogeneity, which is in part ascribable to clone-intrinsic biological features and that are also influenced by clone-extrinsic events related to the microenvironment. Among the dynamics-taking place within the CLL microenvironment, those finalized to the induction of an overly inflammatory milieu may significantly impact on the CLL natural history by hijacking the immunological microenvironment at the same time fostering clone fitness. IL-23 acts as a prototypical pro-inflammatory mediator representing a promising therapeutic target. We analyzed the ability of CLL cells to sense IL-23 through the IL-23R complex (consisting of IL12Rß1 and IL23R subunits) expression and correlated this feature with clinical outcome. Moreover, we investigated the synthesis of IL-23 within the CLL microenvironment, and tested the biological effects of the IL-23/IL-23R axis engagement and of its interference in vitro and in vivo. Methods : IL23R complex was detected by quadruple flow cytometry staining with CD19, CD5, IL23R, and IL12Rβ1 in prospectively enrolled CLL cases (O-CLL1 protocol, clinicaltrial.gov identifier NCT00917540). On human tissue specimens, lymph node and bone marrow samples from 16 CLL patients were selected for in situ immunolocalization analyses. NOD/Shi-scid/γcnull (NSG) mice were used for in vivo xenografts, in which activated autologous T cells (AAT), obtained by adding anti-CD3 and CD28 Dynabeads and rIL2 were co-injected with CLL cells. MiRNA analysis was performed by Agilent's Human V2 platform and by quantitative PCR. MirVANA microRNA mimics and inhibitors were purchased from Ambion, Inc. For 3'UTR luciferase reporter experiments, miRNA target reporter vectors were purchased from Origene. Results : By flow cytometry, circulating CLL cells of 281 cases variably expressed IL23R side chain while consistently lacking IL12Rß1 chain expression. The engagement of the uncoupled IL23R complex expression (i.e. IL23R but not IL12Rb1 expression) by IL23 did not activate downstream signaling pathways, such as the up-regulation of pSTAT3. The 3-year TTFT probability of patients with low IL23R expression (IL23R-low) was 91% as compared to 75% of IL23R-high cases [χ2 9.1, P=.003; HR=3.2, 95%CI (1.4-7.1)]; in a multivariate model, IL23R expression still remained independently associated with TTFT. We explored the potential control of IL23R expression in CLL cells by miRNA and found 15 miRNAs inversely associated with IL23R expression, five of which predicted as regulators (miRNA-146b-5p, miRNA-155, miRNA-324-5p, miRNA-532-3p and miRNA-630). Among these, miR-324-3p and miR-146b-5p were demonstrated to functionally regulate the expression of IL23R and IL12Rβ1 proteins in CLL cells, respectively. Within lymphoid tissues, in situ, CLL clones expressing IL23R side chain also showed expression of IL12Rß1, which varied according to the density of CD40L-expressing bystander elements suggesting a microenvironment-driven regulation of the IL-23R complex. To functionally test this hypothesis, CLL cells were co-cultured in the presence of NIH-3T3 transduced with CD40L or with AAT cells. A significant up-regulation was observed for both the IL12Rß1 and IL23R side chains, suggesting the environment co-stimulation as a mechanism of IL-23R complex regulation. Consistently, the IL-23R complex was upmodulated in CLL cells expressing IL-23R but not IL12Rß1, upon xenograft with autologous T cells into NOD-Scid mice. We then investigated the effect of IL-23R engagement by IL-23 in CLL cells and found that IL-23R activity correlated with CLL cell proliferation and survival in vitro via STAT3 phosphorylation. The trophic nature of IL-23-mediated stimuli over CLL cells was further demonstrated in vivo through the adoption of an anti-IL23p19 monoclonal antibody for clinical use, which proved to be effective in eradicating the xenografted CLL clone in the infiltrated tissues (spleen, liver and BM) by inhibiting proliferation and inducing apoptosis. Noteworthy, the therapeutic effect of IL-23 antagonism was demonstrated by histopathology, flow cytometry and BCR clonality. Conclusions : Overall, we demonstrated that IL-23/IL-23R axis is a novel microenvironment-regulated determinant in CLL pathobiology representing a strong prospect in disease prognostication and treatment. Disclosures No relevant conflicts of interest to declare.


Holzforschung ◽  
2005 ◽  
Vol 59 (2) ◽  
pp. 240-246 ◽  
Author(s):  
Ingo Burgert ◽  
Notburga Gierlinger ◽  
Tanja Zimmermann

Abstract Single fibres of spruce (Picea abies [L.] Karst.) were isolated both chemically and mechanically from a solid wood sample. Mechanical isolation was carried out using very fine tweezers to peel out fibres, thereby taking advantage of the low shear strength between them. Chemical isolation was achieved using hydrogen peroxide and glacial acetic acid. Fibres were examined with Fourier-transform infrared (FT-IR) microscopy, and field-emission environmental scanning electron microscopy (FE-ESEM) in low-Vacuum mode to compare the isolation techniques with respect to their influence on cell wall structure and polymer assembly. The chemical treatment led to degradation of lignin and hemicelluloses, significantly influencing the cell wall assembly and structure. The cell wall polymers of mechanically isolated fibres remained in their natural constitution. As expected, the peeling process caused separation of cell wall layers. Our examinations indicate that delamination predominately took place at the interface between the secondary cell wall and the compound middle lamella. However, fracture between the S1 and S2 layers was examined as well. With respect to fibre quality, it was of particular importance that transverse crack propagation in the secondary cell walls (S2) was not observed.


1999 ◽  
Vol 26 (5) ◽  
pp. 411 ◽  
Author(s):  
A. Ros Barceló ◽  
G. J. Aznar-Asensio

Coniferyl alcohol oxidase activity was determined in cell walls from hypocotyls of the following species belonging to the family Asteraceae: Calendula officinalis, Callistephus sinensis, Cosmos bipinnanthus, Helianthus annuus, Helianthus debilis and Zinnia elegans. In all the cases studied, coniferyl alcohol oxidase activity was partially located ionically-bound to cell walls and resided in a basic peroxidase, the activity of which was stimulated by H 2 O 2 . This enzymatic activity was insensitive to freezing and was inactivated by high H 2 O 2 concentrations, as tested both in vitro and in situ by using purified cell wall fractions. The peroxidase with coniferyl alcohol oxidase activity was purified from Z. elegans hypocotyls until apparent homogeneity, as checked by SDS-PAGE. It showed a visible spectrum typical of a haem-containing high-spin ferric secretory (class III) plant peroxidase. Coniferyl alcohol oxidase activity of this basic peroxidase constitutes about 0.25% of the activity shown in the presence of H 2 O 2 . The significance of the coniferyl alcohol oxidase activity in vivo was studied in Z. elegans hypocotyls by means of histochemical tests, which revealed that it was located in the H 2 O 2 -producing lignifying xylem cells. The results obtained from the histochemical probes suggest that the coniferyl alcohol oxidase activity of this basic peroxidase is physiologically irrelevant in tissues that accumulate H 2 O 2 , as is the case of the lignifying xylem, where the peroxidase activity of the enzyme favorably competes with the oxidase activity of the enzyme.


Holzforschung ◽  
1999 ◽  
Vol 53 (5) ◽  
pp. 503-510 ◽  
Author(s):  
Nigel Deighton ◽  
Andrew Richardson ◽  
Derek Stewart ◽  
Gordon J. McDougall

Summary Cell-wall-associated oxidases extracted from the lignifying xylem of Sitka spruce and ash oxidise sinapyl alcohol at a greater rate than coniferyl alcohol and p-coumaryl alcohol (SA > CA > pCA). The enzyme from ash shows a marked preference, on a specific activity basis, for the oxidation of SA over CA and pCA (SA ≫ CA ≥ pCA) and has a particularly low affinity for the oxidation of coniferyl alcohol compared to the enzyme from spruce (SA > CA > pCA). This difference in monolignol preference between the spruce and ash enzymes may relate to their required functions during lignification, in that the hardwood enzyme would be supplied mainly SA and the softwood enzyme would be supplied mainly CA. The spruce enzyme also displayed a marked preference for the oxidation of sinapyl alcohol over sinapyl aldehyde even when the two compounds were presented in a mixture. Purified cell walls from the lignifying xylem of spruce could oxidise CA by the action of bound oxidase activity and dissolved oxygen (~ 240 μM) but CA oxidation was increased many fold by the action of the bound peroxidase activity and 240 μM H2O2. However, the initial dimeric and trimeric products of the peroxidase- and oxidase-catalysed reactions detected by liquid chromatography-mass spectrometry were the same and present in similar proportions. This indicates that the oxidation of CA by oxidase or by peroxidase proceeds via the same intermediates and occurs by a similar mechanism. Insoluble dehydrogenation polymers (DHPs) of CA were formed in similar yields by spruce extracts in the absence (oxidase activity) or presence (peroxidase activity) of H2O2. The peroxidase-catalysed DHPs and the oxidase-catalysed DHPs gave Fourier transform infra-red spectra with maxima that were characteristic of DHPs of CA. However, differences in the comparative intensities of some maxima suggest that the oxidase-catalysed DHPs were less condensed than the peroxidase-catalysed polymers. These findings are discussed with respect to the possible contribution of oxidases to lignin structure in developing wood.


Author(s):  
Greg V. Martin ◽  
Ann L. Hubbard

The microtubule (MT) cytoskeleton is necessary for many of the polarized functions of hepatocytes. Among the functions dependent on the MT-based cytoskeleton are polarized secretion of proteins, delivery of endocytosed material to lysosomes, and transcytosis of integral plasma membrane (PM) proteins. Although microtubules have been shown to be crucial to the establishment and maintenance of functional and structural polarization in the hepatocyte, little is known about the architecture of the hepatocyte MT cytoskeleton in vivo, particularly with regard to its relationship to PM domains and membranous organelles. Using an in situ extraction technique that preserves both microtubules and cellular membranes, we have developed a protocol for immunofluorescent co-localization of cytoskeletal elements and integral membrane proteins within 20 µm cryosections of fixed rat liver. Computer-aided 3D reconstruction of multi-spectral confocal microscope images was used to visualize the spatial relationships among the MT cytoskeleton, PM domains and intracellular organelles.


1991 ◽  
Vol 82 (2) ◽  
pp. 219-224 ◽  
Author(s):  
Barbro S. M. Ingemarsson ◽  
Leif Eklund ◽  
Lennart Eliasson

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