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Publications

Picchianti, L.; Sanchez de Medina Hernandez, V.; Zhan, N.; Irwin, N. A.; Groh, R.; Stephani, M.; Hornegger, H.; Beveridge, R.; Sawa‐Makarska, J.; Lendl, T.; Grujic, N.; Naumann, C.; Martens, S.; Richards, T. A.; Clausen, T.; Ramundo, S.; Karagöz, G. E.; Dagdas, Y.; Shuffled ATG8 interacting motifs form an ancestral bridge between UFMylation and autophagy EMBO J. 42 e112053 (2023) DOI: 10.15252/embj.2022112053
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UFMylation involves the covalent modification of substrate proteins with UFM1 (Ubiquitin-fold modifier 1) and is important for maintaining ER homeostasis. Stalled translation triggers the UFMylation of ER-bound ribosomes and activates C53-mediated autophagy to clear toxic polypeptides. C53 contains noncanonical shuffled ATG8-interacting motifs (sAIMs) that are essential for ATG8 interaction and autophagy initiation. However, the mechanistic basis of sAIM-mediated ATG8 interaction remains unknown. Here, we show that C53 and sAIMs are conserved across eukaryotes but secondarily lost in fungi and various algal lineages. Biochemical assays showed that the unicellular alga Chlamydomonas reinhardtii has a functional UFMylation pathway, refuting the assumption that UFMylation is linked to multicellularity. Comparative structural analyses revealed that both UFM1 and ATG8 bind sAIMs in C53, but in a distinct way. Conversion of sAIMs into canonical AIMs impaired binding of C53 to UFM1, while strengthening ATG8 binding. Increased ATG8 binding led to the autoactivation of the C53 pathway and sensitization of Arabidopsis thaliana to ER stress. Altogether, our findings reveal an ancestral role of sAIMs in UFMylation-dependent fine-tuning of C53-mediated autophagy activation.

Publications

Ai, H.; Bellstaedt, J.; Bartusch, K. S.; Eschen‐Lippold, L.; Babben, S.; Balcke, G. U.; Tissier, A.; Hause, B.; Andersen, T. G.; Delker, C.; Quint, M.; Auxin‐dependent regulation of cell division rates governs root thermomorphogenesis EMBO J. 42 e111926 (2023) DOI: 10.15252/embj.2022111926
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Roots are highly plastic organs enabling plants to adapt to a changing below-ground environment. In addition to abiotic factors like nutrients or mechanical resistance, plant roots also respond to temperature variation. Below the heat stress threshold, Arabidopsis thaliana seedlings react to elevated temperature by promoting primary root growth, possibly to reach deeper soil regions with potentially better water saturation. While above-ground thermomorphogenesis is enabled by thermo-sensitive cell elongation, it was unknown how temperature modulates root growth. We here show that roots are able to sense and respond to elevated temperature independently of shoot-derived signals. This response is mediated by a yet unknown root thermosensor that employs auxin as a messenger to relay temperature signals to the cell cycle. Growth promotion is achieved primarily by increasing cell division rates in the root apical meristem, depending on de novo local auxin biosynthesis and temperature-sensitive organization of the polar auxin transport system. Hence, the primary cellular target of elevated ambient temperature differs fundamentally between root and shoot tissues, while the messenger auxin remains the same.

Publications

Tchatchouang Noulala, C. G.; Fotso, G. W.; Rennert, R.; Lenta, B. N.; Sewald, N.; Arnold, N.; Happi, E. N.; Ngadjui, B. T.; Mesomeric form of quaternary indoloquinazoline alkaloid and other constituents from the Cameroonian Rutaceae Araliopsis soyauxii Engl. Biochem. Syst. Ecol. 91 104050 (2020) DOI: 10.1016/j.bse.2020.104050
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A mesomeric form of quaternary indoloquinazoline alkaloid, soyauxinium chloride (1) was obtained through the chemical investigation of stem bark and roots of Araliopsis soyauxii Engl. [syn. Vepris soyauxii (Engl.) Mziray] (Rutaceae) together with fifteen known compounds, including three furoquinoline alkaloids, three 2-quinolones, two limonoids, two triterpenes, two steroids, a coumarin, an acridone alkaloid, and a flavonoid glycoside. Their structures were established by comprehensive spectroscopic and spectrometric analyses (1D and 2D NMR, ESI-HR-MS) and by comparison with previously reported data. 13C NMR data of araliopsinine are also reported here for the first time. The isolated compounds were screened in vitro for their effects on the viability of two different human cancer cell lines, namely prostate PC-3 adenocarcinoma cells and colorectal HT-29 adenocarcinoma cells. However, none of the tested compounds exhibited strong anti-proliferative or cytotoxic activities, to either prostate PC-3 cells or colon HT-29 cells. At 100 μM, the furoquinoline maculine showed a slightly increased anti-proliferative effect, however, exclusively on HT-29 cells. The chemotaxonomic significance of the isolated compounds has also been discussed.

Publications

Chalo, D. M.; Kakudidi, E.; Origa-Oryem, H.; Namukobe, J.; Franke, K.; Yenesew, A.; Wessjohann, L. A.; Chemical constituents of the roots of Ormocarpum sennoides subsp. zanzibaricum Biochem. Syst. Ecol. 93 104142 (2020) DOI: 10.1016/j.bse.2020.104142
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Phytochemical investigation of the roots of O. sennoides subsp. zanzibaricum Brenan & J.B. Gillett resulted in the isolation of three biflavonoids (trime-chamaejasmin, (+)- chamaejasmin, (+)-liquiritigeninyl-(I-3,II-3)-naringenin), one bi-4-phenyldihydrocoumarin (diphysin), one isoflavan (glabridin), one triterpenoid (3-O-acetyloleanoic acid) and a phytosterol (β-sitosterol). Compounds were identified by detailed MS, 1D and 2D NMR spectroscopic analyses. Their absolute configurations were elucidated based on ECD spectra. The previously undescribed trime-chamaejasmin represents a bis-epi-chamaejasmenin C diastereomer. The chemophenetic significance is discussed in detail. The results contribute to the phytochemical characterization of the genus Ormocarpum and suggest a close chemophenetic relationship with other genera within the subfamily Papilionoideae. Furthermore, this report provides baseline data for comparing the two infraspecific taxa of O. sennoides (Willd.) DC.

Publications

Fobofou, S. A. T.; Ares, K.; Arnold, N.; Imming, P.; New source report: Chemical constituents of Hypericum quartinianum (Hypericaceae), a sub-Saharan African plant species Biochem. Syst. Ecol. 85 46-49 (2019) DOI: 10.1016/j.bse.2019.05.006
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0

Publications

Bagchi, R.; Melnyk, C. W.; Christ, G.; Winkler, M.; Kirchsteiner, K.; Salehin, M.; Mergner, J.; Niemeyer, M.; Schwechheimer, C.; Calderón Villalobos, L. I. A.; Estelle, M.; The Arabidopsis ALF4 protein is a regulator of SCF E3 ligases EMBO J. 37 255-268 (2018) DOI: 10.15252/embj.201797159
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The cullin‐RING E3 ligases (CRLs) regulate diverse cellular processes in all eukaryotes. CRL activity is controlled by several proteins or protein complexes, including NEDD8, CAND1, and the CSN. Recently, a mammalian protein called Glomulin (GLMN) was shown to inhibit CRLs by binding to the RING BOX (RBX1) subunit and preventing binding to the ubiquitin‐conjugating enzyme. Here, we show that Arabidopsis ABERRANT LATERAL ROOT FORMATION4 (ALF4) is an ortholog of GLMN. The alf4 mutant exhibits a phenotype that suggests defects in plant hormone response. We show that ALF4 binds to RBX1 and inhibits the activity of SCFTIR1, an E3 ligase responsible for degradation of the Aux/IAA transcriptional repressors. In vivo, the alf4 mutation destabilizes the CUL1 subunit of the SCF. Reduced CUL1 levels are associated with increased levels of the Aux/IAA proteins as well as the DELLA repressors, substrate of SCFSLY1. We propose that the alf4 phenotype is partly due to increased levels of the Aux/IAA and DELLA proteins.

Publications

Fobofou Tanemossu, S. A.; Franke, K.; Schmidt, J.; Wessjohann, L.; Chemical constituents of Psorospermum densipunctatum (Hypericaceae) Biochem. Syst. Ecol. 59 174-176 (2015) DOI: 10.1016/j.bse.2015.01.018
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0

Publications

Thien, D. G.; Hoang Anh, N. T.; Porzel, A.; Franke, K.; Wessjohann, L.; Van Sung, T.; Triterpene acids and polyphenols from Eriobotrya poilanei Biochem. Syst. Ecol. 40 198-200 (2012) DOI: 10.1016/j.bse.2011.11.001
  • Abstract
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The occurrence of flavolignans might be a valuable chemotaxonomic marker for the classification of Rosaceae species.

Publications

de Gouveia Baratelli, T.; Candido Gomes, A. C.; Wessjohann, L. A.; Machado Kuster, R.; Kato Simas, N.; Phytochemical and allelopathic studies of Terminalia catappa L. (Combretaceae) Biochem. Syst. Ecol. 41 119-125 (2012) DOI: 10.1016/j.bse.2011.12.008
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The allelopathic potential of Terminalia catappa L. Combretaceae fruits and leaves on Lactuca sativa L. (lettuce), Euphorbia heterophylla L. and Commelina benghalensis L. was studied. Bioassays indicated the highest activity for dichloromethane and ethyl-acetate fractions of ethanolic extracts from fruits, and the mean effective concentration (EC50) was determined. 2-Pentadecanone; vanillic, siringic, ferulic, p-coumaric, palmitic and stearic acids were characterized in the dichloromethane fraction, and 3,4,4′-tri-O-methyl ellagic acid and β-sitosterol-3-O-β-d-glucoside were isolated from it. No allelopathic effects were observed when the dichloromethane extracts of T. catappa fruit or leaf extracts were applied to the weeds E. heterophylla and C. benghalensis. Bioassays with seasonal sampling revealed an influence on the allelochemical potential of T. catappa. Considering the methodology adopted and the experimental results, the allelopathic activity of T. catappa seems to be related to the interaction of different groups of substances, some of them identified and characterized in this work.

Publications

Zanetsie Kakam, A. M.; Franke, K.; Ndom, J. C.; Dongo, E.; Mpondo, T. N.; Wessjohann, L. A.; Secondary metabolites from Helichrysum foetidum and their chemotaxonomic significance Biochem. Syst. Ecol. 39 166-167 (2011) DOI: 10.1016/j.bse.2011.02.005
  • Abstract
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The occurrence of tetracyclic kauran type diterpenoids or related structures might be a valuable chemotaxonomic marker for further classification and subdivision of the polyphyletic genus Helichrysum.

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