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Publications

Wessjohann, L.; The First Total Syntheses of Taxol Angew. Chem. Int. Ed. 33 959-961 (1994) DOI: 10.1002/anie.199409591
  • Abstract
  • BibText
  • RIS

A milestone in natural product chemistry is the first total synthesis of taxol achieved independently of each other by the groups of R. A. Holton and K. C. Nicolaou. Taxol is at present the most promising anti‐cancer agent, and its synthesis is extremely demanding. It is highly unlikely that this climax will be the end of probably the greatest worldwide effort yet to synthesize a single compound.

Publications

Wessjohann, L.; Die ersten Totalsynthesen von Taxol Angew. Chem. 106 1011-1013 (1994) DOI: 10.1002/ange.19941060906
  • Abstract
  • BibText
  • RIS

Ein Meilenstein der Naturstoffchemie ist die Totalsynthese des zur Zeit vielversprechendsten und synthetisch extrem anspruchsvollen Antikrebsmittels Taxol, die unabhängig voneinander den Arbeitsgruppen von R.A. Holton und K.C. Nicolaou gelang. Mit diesem vorläufigen Höhepunkt dürfte der vermutlich weltweit größte Aufwand zur Totalsynthese einer Einzelverbindung jedoch nicht beendet sein.

Publications

Schneider, G.; Schliemann, W.; Gibberellin conjugates: an overview Plant Growth Regul. 15 247-260 (1994) DOI: 10.1007/BF00029898
  • Abstract
  • BibText
  • RIS

This article surveys the currently isolated and identified GA conjugates, their synthesis and evaluates modern methods for analysing GA glucose conjugates. The metabolism of applied GAs in higher plant systems leading, in most cases, to GA conjugates is also considered. The enzymology of the formation and hydrolysis of GA glucose conjugates is discussed in connection with their possible physiological function.

Publications

Nürnberger, T.; Nennstiel, D.; Jabs, T.; Sacks, W. R.; Hahlbrock, K.; Scheel, D.; High affinity binding of a fungal oligopeptide elicitor to parsley plasma membranes triggers multiple defense responses Cell 78 449-460 (1994) DOI: 10.1016/0092-8674(94)90423-5
  • Abstract
  • BibText
  • RIS

An oligopeptide of 13 amino acids (Pep-13) identified within a 42 kDa glycoprotein elicitor from P. megasperma was shown to be necessary and sufficient to stimulate a complex defense response in parsley cells comprising H+/Ca2+ influxes, K+/Cl− effluxes, an oxidative burst, defense-related gene activation, and phytoalexin formation. Binding of radiolabeled Pep-13 to parsley microsomes and protoplasts was specific, reversible, and saturable. Identical structural features of Pep-13 were found to be responsible for specific binding and initiation of all plant responses analyzed. The high affinity binding site recognizing the peptide ligand (KD = 2.4 nM) may therefore represent a novel class of receptors in plants, and the rapidly induced ion fluxes may constitute elements of the signal transduction cascade triggering pathogen defense in plants.

Publications

Hause, B.; zur Nieden, U.; Lehmann, J.; Wasternack, C.; Parthier, B.; Intracellular Localization of Jasmonate-Induced Proteins in Barley Leaves Bot. Acta 107 333-341 (1994) DOI: 10.1111/j.1438-8677.1994.tb00804.x
  • Abstract
  • BibText
  • RIS

The plant growth substance jasmonic acid and its methyl ester (JA‐Me) induce a set of proteins (jasmonate‐induced proteins, JIPs) when applied to leaf segments of barley (Hordeum vulgare L. cv. Salome). Most of these JIPs could be localized within different cell compartments by using a combination of biochemical and histochemical methods. Isolation and purification of various cell organelles of barley mesophyll cells, the separation of their proteins by one‐dimensional polyacrylamide gel electrophoresis and the identification of the major abundant JIPs by Western blot analysis, as well as the immuno‐gold labelling of JIPs in ultrathin sections were performed to localize JIPs intracellularly. JIP‐23 was found to be in vacuoles, peroxisomes, and in the granular parts of the nucleus as well as within the cytoplasm; JIP‐37 was detected in vacuoles and in the nucleoplasm; JIP‐66 is a cytosolic protein. Some less abundant JIPs were also localized within different cell compartments: JIP‐100 was found within the stromal fraction of chloroplasts; JIP‐70 is present in the peroxisome and the nucleus; JIP‐50 and JIP‐6 accumulate in vacuoles. The location of JIP‐66 and JIP‐6 confirms their possible physiological role deduced from molecular analysis of their cDNA.

Publications

Gottstein, D.; Schliemann, W.; Purine glucosylating activity in cell suspension cultures ofSolanum tuberosum L. Plant Cell Tiss. Organ Cult. 36 265-268 (1994) DOI: 10.1007/BF00037730
  • Abstract
  • BibText
  • RIS

Cell suspension cultures ofSolanum tuberosum L. cv. Adretta were established from leaf-derived calluses. In the search for purine glucosylating activity, the metabolism of 6-benzylaminopurine was studied. The main metabolite of BA was isolated and identified as 6-benzylaminopurine 7-β-d-glucopyranoside indicating the occurrence of purine glucosylating activity.

Publications

Baumert, A.; Maier, W.; Gröger, D.; Deutzmann, R.; Purification and Properties of Acridone Synthase from Cell Suspension Cultures of Ruta gvaveolens L. Z. Naturforsch. C 49 26-32 (1994) DOI: 10.1515/znc-1994-1-205
  • Abstract
  • BibText
  • RIS

Acridone synthase has been purified from cell suspension cultures of Ruta graveolens using a combination of gel filtration and ion exchange chromatography. The purified enzyme has an apparent molecular weight of 69 kDa on gel filtration and a subunit structure on SDS-PAGE of 40 kDa. The apparent Km-values are 10.64 μM and 32.8 μM for N-methylanthraniloyl-CoA and malonyl-CoA, respectively. Tryptic digestion of the homogeneous acridone synthase was performed. Seven of the peptides were chosen for microsequencing. The homology of the amino acid sequences from this particular polypeptide and corresponding peptides from chalcone synthase 3 from garden pea amounted to 76%.

Publications

Baumert, A.; Maier, W.; Matern, U.; Schmidt, J.; Schumann, B.; Gröger, D.; Acridone Alkaloids from Cell Suspension Cultures of Thamnosma montana Planta Med. 60 143-145 (1994) DOI: 10.1055/s-2006-959437
  • Abstract
  • BibText
  • RIS

Cell Suspension cultures of Thamnosma montana were grown in Gamborg B5 medium which was best suited for acridone alkaloid formation. From the lyophilized cell material nine acridones and three acridone-monoglucosides have been isolated which were found for the first time in the genus Thamnosma. Moreover, N-methylacridone which is known from the intact plant was found. Gravacridonol monoglucoside was identified as a new alkaloid. Interestingly, most isolated alkaloids belong to the dihydrofuroacridones.

Publications

Abel, S.; Theologis, A.; Transient transformation of Arabidopsis leaf protoplasts: a versatile experimental system to study gene expression Plant J. 5 421-427 (1994) DOI: 10.1111/j.1365-313X.1994.00421.x
  • Abstract
  • BibText
  • RIS

An improved protocol is reported to isolate and transiently transform mesophyll protoplasts of Arabidopsis thaliana. Transfected leaf protoplasts support high levels of expression of the bacterial reporter gene coding for β‐glucuronidase (GUS), under the control of the cauliflower mosaic virus (CaMV) 35S promoter. Transient expression of GUS activity was monitored spectrophotometrically and reached a maximum between 18 and 48 h after polyethylene glycol (PEG)‐mediated DNA uptake. Histochemical staining for GUS activity revealed reproducible transformation frequencies between 40 and 60%, based on the number of protoplasts survived. To demonstrate the applicability of the transient expression system, the subcellular localization of GUS proteins tagged with different nuclear polypeptides was studied in transfected mesophyll protoplasts, revealing nuclear compartmentalization of the chimeric GUS enzymes. Furthermore, Arabidopsis mesophyll protoplasts support auxin‐mediated induction of chloramphenicol acetyl‐transferase (CAT) activity when transfected with a transcriptional fusion between the CAT reporter gene and the early auxin‐inducible PS‐IAA4/5 promoter. Hence, the method allows in vivo analysis of promoter activity and subcellular localization of fusion proteins in a homologous transformation system.

Publications

Abel, S.; Oeller, P. W.; Theologis, A.; Early auxin-induced genes encode short-lived nuclear proteins. Proc. Natl. Acad. Sci. U.S.A. 91 326-330 (1994) DOI: 10.1073/pnas.91.1.326
  • Abstract
  • BibText
  • RIS

The plant growth hormone indoleacetic acid (IAA) transcriptionally activates gene expression in plants. Some of the genes whose expression is induced by IAA encode a family of proteins in pea (PS-IAA4 and PS-IAA6) and Arabidopsis (IAA1 and IAA2) that contain putative nuclear localization signals that direct a beta-glucuronidase reporter protein into the nucleus. Pulse-chase and immunoprecipitation experiments have defined the t1/2 of the PS-IAA4 and PS-IAA6 proteins to be 8 and 6 min, respectively. Their most prominent feature is the presence of a beta alpha alpha motif similar to the beta-sheet DNA-binding domain found in prokaryotic repressors of the Arc family. Based on these data, we suggest that plant tissues express short-lived nuclear proteins as a primary response to IAA. We propose that these proteins act as activators or repressors of genes responsible for mediating the various auxin responses.

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