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Tomasz Nodzynski
  • PUBLICATIONS

    A phospho-switch provided by LRR receptor-like kinase, ALK1/QSK1/KIN7, prioritizes ABCG36/PEN3/PDR8 transport toward defense

    May 8, 2023May 23, 2024

    Aryal, B., Xia, J., Hu, Z., Tsering, T., Liu, J., Huynh, J., Fukao, Y., Glöckner, N., Huang, H.-Y., Sáncho-Andrés, G., Pakula, K., Gorzolka, K., Zwiewka, M., Nodzynski, T., Harter, K., Sánchez-Rodríguez, C., Jasiński, M., Rosahl, S. and Geisler, M. 2022, 2022.05.11.491457. (preprint)

    Read More A phospho-switch provided by LRR receptor-like kinase, ALK1/QSK1/KIN7, prioritizes ABCG36/PEN3/PDR8 transport toward defenseContinue

  • PUBLICATIONS

    Genome Wide Identification and Annotation of NGATHA Transcription Factor Family in Crop Plants

    August 18, 2022February 16, 2024

    Salava, H; Thula, S; Sanchez, AS; Nodzynski, T; Maghuly, F. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 2022, 23(13), doi: 10.3390/ijms23137063

    Read More Genome Wide Identification and Annotation of NGATHA Transcription Factor Family in Crop PlantsContinue

  • PUBLICATIONS

    The Hydrophilic Loop of Arabidopsis PIN1 Auxin Efflux Carrier Harbors Hallmarks of an Intrinsically Disordered Protein.

    August 8, 2022May 23, 2024

    Bilanovičová, V.; Rýdza, N.; Koczka, L.; Hess, M.; Feraru, E.; Friml, J.; Nodzyński, T. International Journal of Molecular Sciences 2022, 23 (11), 6352. https://doi.org/10.3390/ijms23116352

    Read More The Hydrophilic Loop of Arabidopsis PIN1 Auxin Efflux Carrier Harbors Hallmarks of an Intrinsically Disordered Protein.Continue

  • Nodzynski’s team described the structure of PIN1 hydrophilic loop
    RESEARCH

    Nodzynski’s team described the structure of PIN1 hydrophilic loop

    June 29, 2022August 15, 2023

    Veronika Bilanovicova, Tomasz Nodzynski and his team described the structure of the hydrophilic loop (HL), a central part of PIN1 protein, that serves as a transporter of auxin phytohormone. The research team showed that the hydrophilic loop is an intrinsically disordered protein (IDP). The findings were recently published in the International Journal of Molecular Sciences and will most probably influence the…

    Read More Nodzynski’s team described the structure of PIN1 hydrophilic loopContinue

  • PUBLICATIONS

    Microcystin-LR, a cyanobacterial toxin affects root development by changing levels of PIN proteins and auxin response in Arabidopsis roots

    August 21, 2021May 23, 2024

    Csongor Freytag, Csaba Máthé, Gábor Rigó, Tomasz Nodzyński , Zoltán Kónya , Ferenc Erdődi , Ágnes Cséplő , Erik Pózer , László Szabados , Adrienn Kelemen , Gábor Vasas , Tamás Garda  DOI: 10.1016/j.chemosphere.2021.13018

    Read More Microcystin-LR, a cyanobacterial toxin affects root development by changing levels of PIN proteins and auxin response in Arabidopsis rootsContinue

  • How Roots Grow Downwards: Mystery of Lipid Asymmetry Influencing Plasma Membrane Protein Delivery Was Uncovered
    NEWS | RESEARCH

    How Roots Grow Downwards: Mystery of Lipid Asymmetry Influencing Plasma Membrane Protein Delivery Was Uncovered

    March 26, 2020August 15, 2023

    Members of the Tomasz Nodzynski Research Group from CEITEC Masaryk University contributed to the recent work of Jiri Friml from IST Austria, which was published in Plant Cell, and links intracellular trafficking and auxin coordinated root gravitropism. Gravitropism is the capacity of a plant to sense gravity and align its growth accordingly. The growth of roots along the gravity vector…

    Read More How Roots Grow Downwards: Mystery of Lipid Asymmetry Influencing Plasma Membrane Protein Delivery Was UncoveredContinue

  • PUBLICATIONS

    Arabidopsis Flippases Cooperate with ARF GTPase Exchange Factors to Regulate the Trafficking and Polarity of PIN Auxin Transporters.

    March 19, 2020May 23, 2024

    Zhang, X., Adamowski, M., Marhava, P., Tan, S., Zhang, Y., Rodriguez, L., Zwiewka, M., Pukyšová, V., Sánchez, A.S., Raxwal, V.K., Hardtke, C.S., Nodzyński, T., and Friml, J. (2020). Plant Cell 32, 1644–1664. DOI: 10.1105/tpc.19.00869

    Read More Arabidopsis Flippases Cooperate with ARF GTPase Exchange Factors to Regulate the Trafficking and Polarity of PIN Auxin Transporters.Continue

  • PUBLICATIONS

    BEX1/ARF1A1C is required for BFA-sensitive recycling of PIN auxin transporters and auxin-mediated development in Arabidopsis.

    April 23, 2014May 23, 2024

    Tanaka H, Nodzyński T, Kitakura S, Feraru MI, Sasabe M, Ishikawa T, Kleine-Vehn J, Kakimoto T, Friml J.Plant Cell Physiol. 2014 Apr;55(4):737-49. doi: 10.1093/pcp/pct196. Epub 2013 Dec 24.

    Read More BEX1/ARF1A1C is required for BFA-sensitive recycling of PIN auxin transporters and auxin-mediated development in Arabidopsis.Continue

  • PUBLICATIONS

    VAN4 encodes a putative TRS120 that is required for normal cell growth and vein development in Arabidopsis.

    January 18, 2014May 23, 2024

    Naramoto S, Nodzyński T, Dainobu T, Takatsuka H, Okada T, Friml J, Fukuda H.Plant Cell Physiol. 2014 Apr;55(4):750-63. doi: 10.1093/pcp/pcu012. Epub 2014 Jan 18.PMID: 24443495 (hard to find due to diacritics)

    Read More VAN4 encodes a putative TRS120 that is required for normal cell growth and vein development in Arabidopsis.Continue

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