** Bilanovicova, V; Rydza, N; Koczka, L; Hess, M; Feraru, E; Friml, J; Nodzynski, T The Hydrophilic Loop of Arabidopsis PIN1 Auxin Efflux Carrier Harbors Hallmarks of an Intrinsically Disordered Protein.
** Feraru, E; Feraru, MI; Moulinier-Anzola, J; Schwihla, M; Ferreira Da Silva Santos, J; Sun, L; Waidmann, S; Korbei, B; Kleine-Vehn, J; PILS proteins provide a homeostatic feedback on auxin signaling output..
Development. 2022; 149(13): WoS PubMed FullText FullText_BOKU** de Lima, CFF; Kleine-Vehn, J; De Smet, I; Feraru, E Getting to the root of belowground high temperature responses in plants.
J EXP BOT. 2021; 72(21): 7404-7413. WoS PubMed FullText FullText_BOKU** Sun, L; Feraru, E; Feraru, MI; Waidmann, S; Wang, WF; Passaia, G; Wang, ZY; Wabnik, K; Kleine-Vehn, J PIN-LIKES Coordinate Brassinosteroid Signaling with Nuclear Auxin Input in Arabidopsis thaliana.
** Feraru, E; Feraru, MI; Barbez, E; Waidmann, S; Sun, L; Gaidora, A; Kleine-Vehn, J PILS6 is a temperature-sensitive regulator of nuclear auxin input and organ growth in Arabidopsis thaliana.
P NATL ACAD SCI USA. 2019; 116(9): 3893-3898. WoS PubMed FullText FullText_BOKU* Schöller, M; Kleine-Vehn, J; Feraru, E; (2018): Cortical Cell Length Analysis During Gravitropic Root Growth..
Methods Mol Biol. 2018; 1761:191-197 PubMed FullText FullText_BOKU* Schöller, M; Sarkel, E; Kleine-Vehn, J; Feraru, E; (2018): Growth Rate Normalization Method to Assess Gravitropic Root Growth..
Methods Mol Biol. 2018; 1761:199-208 PubMed FullText FullText_BOKU* Béziat, C; Kleine-Vehn, J; Feraru, E; (2017): Histochemical Staining of β-Glucuronidase and Its Spatial Quantification..
Methods Mol Biol. 2017; 1497:73-80 PubMed FullText FullText_BOKU* Feraru, MI; Kleine-Vehn, J; Feraru, E; (2015): Auxin carrier and signaling dynamics during gravitropic root growth..
Methods Mol Biol. 2015; 1309:71-80 PubMed FullText FullText_BOKU* Marhavý, P; Duclercq, J; Weller, B; Feraru, E; Bielach, A; Offringa, R; Friml, J; Schwechheimer, C; Murphy, A; Benková, E; (2014): Cytokinin controls polarity of PIN1-dependent auxin transport during lateral root organogenesis..
* Naramoto, S; Otegui, MS; Kutsuna, N; de Rycke, R; Dainobu, T; Karampelias, M; Fujimoto, M; Feraru, E; Miki, D; Fukuda, H; Nakano, A; Friml, J; (2014): Insights into the localization and function of the membrane trafficking regulator GNOM ARF-GEF at the Golgi apparatus in Arabidopsis..
* Nováková, P; Hirsch, S; Feraru, E; Tejos, R; van Wijk, R; Viaene, T; Heilmann, M; Lerche, J; De Rycke, R; Feraru, MI; Grones, P; Van Montagu, M; Heilmann, I; Munnik, T; Friml, J; (2014): SAC phosphoinositide phosphatases at the tonoplast mediate vacuolar function in Arabidopsis..
* Viaene, T; Landberg, K; Thelander, M; Medvecka, E; Pederson, E; Feraru, E; Cooper, ED; Karimi, M; Delwiche, CF; Ljung, K; Geisler, M; Sundberg, E; Friml, J; (2014): Directional auxin transport mechanisms in early diverging land plants..
* Feraru, E; Feraru, MI; Asaoka, R; Paciorek, T; De Rycke, R; Tanaka, H; Nakano, A; Friml, J; (2012): BEX5/RabA1b regulates trans-Golgi network-to-plasma membrane protein trafficking in Arabidopsis..
* Feraru, E; Vosolsobě, S; Feraru, MI; Petrášek, J; Kleine-Vehn, J; (2012): Evolution and Structural Diversification of PILS Putative Auxin Carriers in Plants..
** Feraru, E; Feraru, MI; Kleine-Vehn, J; Martinière, A; Mouille, G; Vanneste, S; Vernhettes, S; Runions, J; Friml, J; PIN polarity maintenance by the cell wall in Arabidopsis..
* Zwiewka, M; Feraru, E; Möller, B; Hwang, I; Feraru, MI; Kleine-Vehn, J; Weijers, D; Friml, J; (2011): The AP-3 adaptor complex is required for vacuolar function in Arabidopsis..
** Feraru, E; Paciorek, T; Feraru, MI; Zwiewka, M; De Groodt, R; De Rycke, R; Kleine-Vehn, J; Friml, J; The AP-3 β adaptin mediates the biogenesis and function of lytic vacuoles in Arabidopsis..
* Feraru, E; Friml, J; (2008): PIN polar targeting..