Suchergebnisse - "Zwicky, Katharina"

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  1. 1

    Visualization of recombination-mediated damage bypass by template switching von Giannattasio, Michele, Zwicky, Katharina, Follonier, Cindy, Foiani, Marco, Lopes, Massimo, Branzei, Dana

    ISSN: 1545-9993, 1545-9985, 1545-9985
    Veröffentlicht: New York Nature Publishing Group US 01.10.2014
    Veröffentlicht in Nature structural & molecular biology (01.10.2014)
    “… A combination of two-dimensional gel electrophoresis and EM is used to isolate and characterize multiple template-switching intermediates generated in budding …”
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  2. 2

    Replication Fork Slowing and Reversal upon DNA Damage Require PCNA Polyubiquitination and ZRANB3 DNA Translocase Activity von Vujanovic, Marko, Krietsch, Jana, Raso, Maria Chiara, Terraneo, Nastassja, Zellweger, Ralph, Schmid, Jonas A, Taglialatela, Angelo, Huang, Jen-Wei, Holland, Cory L, Zwicky, Katharina, Herrador, Raquel, Jacobs, Heinz, Cortez, David, Ciccia, Alberto, Penengo, Lorenza, Lopes, Massimo

    ISSN: 1097-4164, 1097-4164
    Veröffentlicht: United States 07.09.2017
    Veröffentlicht in Molecular cell (07.09.2017)
    “… DNA damage tolerance during eukaryotic replication is orchestrated by PCNA ubiquitination. While monoubiquitination activates mutagenic translesion synthesis, …”
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    Journal Article
  3. 3

    Pharmaceutically controlled designer circuit for the treatment of the metabolic syndrome von Ye, Haifeng, Charpin-El Hamri, Ghislaine, Zwicky, Katharina, Christen, Matthias, Folcher, Marc, Fussenegger, Martin

    ISSN: 1091-6490, 1091-6490
    Veröffentlicht: United States 02.01.2013
    “… Synthetic biology has significantly advanced the design of genetic devices that can reprogram cellular activities and provide novel treatment strategies for …”
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    Journal Article
  4. 4

    Error-free DNA damage tolerance and sister chromatid proximity during DNA replication rely on the Polα/Primase/Ctf4 Complex von Fumasoni, Marco, Zwicky, Katharina, Vanoli, Fabio, Lopes, Massimo, Branzei, Dana

    ISSN: 1097-4164, 1097-4164
    Veröffentlicht: United States 05.03.2015
    Veröffentlicht in Molecular cell (05.03.2015)
    “… Chromosomal replication is entwined with DNA damage tolerance (DDT) and chromatin structure establishment via elusive mechanisms. Here we examined how specific …”
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    Journal Article
  5. 5

    Direct visualization of transcription-replication conflicts reveals post-replicative DNA:RNA hybrids von Stoy, Henriette, Zwicky, Katharina, Kuster, Danina, Lang, Kevin S, Krietsch, Jana, Crossley, Magdalena P., Schmid, Jonas A., Cimprich, Karlene A., Merrikh, Houra, Lopes, Massimo

    ISSN: 1545-9993, 1545-9985, 1545-9985
    Veröffentlicht: New York Nature Publishing Group US 01.03.2023
    Veröffentlicht in Nature structural & molecular biology (01.03.2023)
    “… Transcription-replication collisions (TRCs) are crucial determinants of genome instability. R-loops were linked to head-on TRCs and proposed to obstruct …”
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    Journal Article
  6. 6

    Histone Ubiquitination by the DNA Damage Response Is Required for Efficient DNA Replication in Unperturbed S Phase von Schmid, Jonas Andreas, Berti, Matteo, Walser, Franziska, Raso, Maria Chiara, Schmid, Fabian, Krietsch, Jana, Stoy, Henriette, Zwicky, Katharina, Ursich, Sebastian, Freire, Raimundo, Lopes, Massimo, Penengo, Lorenza

    ISSN: 1097-4164, 1097-4164
    Veröffentlicht: United States 20.09.2018
    Veröffentlicht in Molecular cell (20.09.2018)
    “… Chromatin ubiquitination by the ubiquitin ligase RNF168 is critical to regulate the DNA damage response (DDR). DDR deficiencies lead to cancer-prone syndromes, …”
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    Journal Article
  7. 7

    Mind-controlled transgene expression by a wireless-powered optogenetic designer cell implant von Folcher, Marc, Oesterle, Sabine, Zwicky, Katharina, Thekkottil, Thushara, Heymoz, Julie, Hohmann, Muriel, Christen, Matthias, Daoud El-Baba, Marie, Buchmann, Peter, Fussenegger, Martin

    ISSN: 2041-1723, 2041-1723
    Veröffentlicht: London Nature Publishing Group UK 11.11.2014
    Veröffentlicht in Nature communications (11.11.2014)
    “… Synthetic devices for traceless remote control of gene expression may provide new treatment opportunities in future gene- and cell-based therapies. Here we …”
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