Works matching IS 2399-3642 AND VI 5 AND IP 1 AND DT 2022


Results: 1438
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    Peptidomimetic inhibitors of TMPRSS2 block SARS-CoV-2 infection in cell culture.

    Published in:
    Communications Biology, 2022, v. 5, n. 1, p. 1, doi. 10.1038/s42003-022-03613-4
    By:
    • Wettstein, Lukas;
    • Knaff, Philip Maximilian;
    • Kersten, Christian;
    • Müller, Patrick;
    • Weil, Tatjana;
    • Conzelmann, Carina;
    • Müller, Janis A;
    • Brückner, Maximilian;
    • Hoffmann, Markus;
    • Pöhlmann, Stefan;
    • Schirmeister, Tanja;
    • Landfester, Katharina;
    • Münch, Jan;
    • Mailänder, Volker
    Publication type:
    Article
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    A panel of nanobodies recognizing conserved hidden clefts of all SARS-CoV-2 spike variants including Omicron.

    Published in:
    Communications Biology, 2022, v. 5, n. 1, p. 1, doi. 10.1038/s42003-022-03630-3
    By:
    • Maeda, Ryota;
    • Fujita, Junso;
    • Konishi, Yoshinobu;
    • Kazuma, Yasuhiro;
    • Yamazaki, Hiroyuki;
    • Anzai, Itsuki;
    • Watanabe, Tokiko;
    • Yamaguchi, Keishi;
    • Kasai, Kazuki;
    • Nagata, Kayoko;
    • Yamaoka, Yutaro;
    • Miyakawa, Kei;
    • Ryo, Akihide;
    • Shirakawa, Kotaro;
    • Sato, Kei;
    • Makino, Fumiaki;
    • Matsuura, Yoshiharu;
    • Inoue, Tsuyoshi;
    • Imura, Akihiro;
    • Namba, Keiichi
    Publication type:
    Article
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    Altered subgenomic RNA abundance provides unique insight into SARS-CoV-2 B.1.1.7/Alpha variant infections.

    Published in:
    Communications Biology, 2022, v. 5, n. 1, p. 1, doi. 10.1038/s42003-022-03565-9
    By:
    • Parker, Matthew D.;
    • Stewart, Hazel;
    • Shehata, Ola M.;
    • Lindsey, Benjamin B.;
    • Shah, Dhruv R.;
    • Hsu, Sharon;
    • Keeley, Alexander J.;
    • Partridge, David G.;
    • Leary, Shay;
    • Cope, Alison;
    • State, Amy;
    • Johnson, Katie;
    • Ali, Nasar;
    • Raghei, Rasha;
    • Heffer, Joe;
    • Smith, Nikki;
    • Zhang, Peijun;
    • Gallis, Marta;
    • Louka, Stavroula F.;
    • Hornsby, Hailey R.
    Publication type:
    Article
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    Author Correction: GATA3 and MDM2 are synthetic lethal in estrogen receptor-positive breast cancers.

    Published in:
    2022
    By:
    • Bianco, Gaia;
    • Coto-Llerena, Mairene;
    • Gallon, John;
    • Kancherla, Venkatesh;
    • Taha-Mehlitz, Stephanie;
    • Marinucci, Mattia;
    • Konantz, Martina;
    • Srivatsa, Sumana;
    • Montazeri, Hesam;
    • Panebianco, Federica;
    • Tirunagaru, Vijaya G.;
    • De Menna, Marta;
    • Paradiso, Viola;
    • Ercan, Caner;
    • Dahmani, Ahmed;
    • Montaudon, Elodie;
    • Beerenwinkel, Niko;
    • Kruithof-de Julio, Marianna;
    • Terracciano, Luigi M.;
    • Lengerke, Claudia
    Publication type:
    Correction Notice
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    GATA3 and MDM2 are synthetic lethal in estrogen receptor-positive breast cancers.

    Published in:
    Communications Biology, 2022, v. 5, n. 1, p. 1, doi. 10.1038/s42003-022-03296-x
    By:
    • Bianco, Gaia;
    • Coto-Llerena, Mairene;
    • Gallon, John;
    • Kancherla, Venkatesh;
    • Taha-Mehlitz, Stephanie;
    • Marinucci, Mattia;
    • Konantz, Martina;
    • Srivatsa, Sumana;
    • Montazeri, Hesam;
    • Panebianco, Federica;
    • Tirunagaru, Vijaya G.;
    • De Menna, Marta;
    • Paradiso, Viola;
    • Ercan, Caner;
    • Dahmani, Ahmed;
    • Montaudon, Elodie;
    • Beerenwinkel, Niko;
    • Kruithof-de Julio, Marianna;
    • Terracciano, Luigi M.;
    • Lengerke, Claudia
    Publication type:
    Article
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