07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
Später ansehen07.05.24 | Vollzeit | Heilbronn | Deutsches Krebsforschungszentrum DKFZWherein Wnt regulates cilia and, conversely, cilia may affect Wnt signaling. Recently, we showed that Wnt receptors are present in flagella, primary cilia, and multicilia, where they transmit an intraciliary signal that is independent of β-catenin (Koch, 2015; Zhang, 2023; Seidl, 2023). Intraciliary Wnt
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