1. In vitro evolution driven by epistasis reveals alternative cholesterol-specific binding motifs of perfringolysin OAleksandra Šakanović, Nace Kranjc, Neža Omersa, Saša Aden, Andreja Kežar, Matic Kisovec, Apolonija Bedina Zavec, Simon Caserman, Robert J. Gilbert, Marjetka Podobnik, Ana Crnković, Gregor Anderluh, 2024, izvirni znanstveni članek Objavljeno v DiRROS: 12.09.2024; Ogledov: 214; Prenosov: 552 Celotno besedilo (3,73 MB) Gradivo ima več datotek! Več... |
2. Sequestration of membrane cholesterol by cholesterol-binding proteins inhibits SARS-CoV-2 entry into Vero E6 cellsMagdalena Kulma, Aleksandra Šakanović, Apolonija Bedina Zavec, Simon Caserman, Neža Omersa, Gašper Šolinc, Sara Orehek, Iva Hafner Bratkovič, Urška Kuhar, Brigita Slavec, Uroš Krapež, Matjaž Ocepek, Toshihide Kobayashi, Katarzyna Kwiatkowska, Roman Jerala, Marjetka Podobnik, Gregor Anderluh, 2024, izvirni znanstveni članek Objavljeno v DiRROS: 05.08.2024; Ogledov: 270; Prenosov: 185 Celotno besedilo (8,56 MB) Gradivo ima več datotek! Več... |
3. Involvement of potato (Solanum tuberosum L.) MKK6 in response to Potato virus YAna Lazar, Anna Coll Rius, David Dobnik, Špela Baebler, Apolonija Bedina Zavec, Jana Žel, Kristina Gruden, 2014, izvirni znanstveni članek Povzetek: Mitogen-activated protein kinase (MAPK) cascades have crucial roles in the regulation of plant development and in plant responses to stress. Plant recognition of pathogen-associated molecular patterns or pathogen-derived effector proteins has been shown to trigger activation of several MAPKs. This then controls defence responses, including synthesis and/or signalling of defence hormones and activation of defence related genes. The MAPK cascade genes are highly complex and interconnected, and thus the precise signalling mechanisms in specific plant%pathogen interactions are still not known. Here we investigated the MAPK signalling network involved in immune responses of potato (Solanum tuberosum L.) to Potato virus Y, an important potato pathogen worldwide. Sequence analysis was performed to identify the complete MAPK kinase (MKK) family in potato, and to identify those regulated in the hypersensitive resistance response to Potato virus Y infection. Arabidopsis has 10 MKK family members, of which we identified five in potato and tomato (Solanum lycopersicum L.), and eight in Nicotiana benthamiana. Among these, StMKK6 is the most strongly regulated gene in response to Potato virus Y. The salicylic acid treatment revealed that StMKK6 is regulated by the hormone that is in agreement with the salicylic acid-regulated domains found in the StMKK6 promoter. The involvement of StMKK6 in potato defence response was confirmed by localisation studies, where StMKK6 accumulated strongly only in Potato-virus-Y-infected plants, and predominantly in the cell nucleus. Using a yeast two-hybrid method, we identified three StMKK6 targets downstream in the MAPK cascade: StMAPK4_2, StMAPK6 and StMAPK13. These data together provide further insight into the StMKK6 signalling module and its involvement in plant defence. Ključne besede: plant diseases, potato, molecular biology Objavljeno v DiRROS: 02.08.2024; Ogledov: 231; Prenosov: 208 Celotno besedilo (6,72 MB) Gradivo ima več datotek! Več... |
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7. Scanning electron microscope images of isolates of small cellular particles Phaeodactylum tricornutum grown in media supplemented with Guillard’s (F/2) marine : marine water enrichment solution, BG11 broth and Lennox LB brothApolonija Bedina Zavec, Darja Božič, Matej Hočevar, Aleš Iglič, Marko Jeran, Veronika Kralj-Iglič, Anna Romolo, 2024, objavljeni znanstveni prispevek na konferenci Objavljeno v DiRROS: 08.03.2024; Ogledov: 440; Prenosov: 186 Celotno besedilo (13,06 MB) Gradivo ima več datotek! Več... |
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10. Small cellular particles from European spruce needle homogenateMarko Jeran, Anna Romolo, Vesna Spasovski, Matej Hočevar, Urban Novak, Roman Štukelj, Vid Šuštar, Matic Kisovec, Apolonija Bedina Zavec, Ksenija Kogej, Aleš Iglič, Polonca Trebše, Veronika Kralj-Iglič, 2023, izvirni znanstveni članek Ključne besede: Picea abies, spruce needles, extracellular particles, extracellular vesicles, small cellular particles, interferometric light microscopy, exosomes, cell-to-cell communication, drug delivery Objavljeno v DiRROS: 07.02.2024; Ogledov: 487; Prenosov: 292 Celotno besedilo (2,49 MB) Gradivo ima več datotek! Več... |