Discovery of novel TAOK2 inhibitor scaffolds from high-throughput screening
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS
Authors: Piala, Alexander T.; Akella, Radha; Potts, Malia B.; Dudics-Giagnocavo, Stephanie A.; He, Haixia; Wei, Shuguang; White, Michael A.; Posner, Bruce A.; Goldsmith, Elizabeth J.
Abstract
The MAP3K (Mitogen Activated Protein Kinase Kinase Kinase) TAOK2 (Thousand-And-One Kinase 2) is an activator of p38 MAP kinase cascade that is up-regulated in response to environmental stresses. A synthetic lethal screen performed using a NSCLC (non-small cell lung cancer) cell line, and a second screen identifying potential modulators of autophagy have implicated TAOK2 as a potential cancer therapeutic target. Using a 200,000 compound high throughput screen, we identified three specific small molecule compounds that inhibit the kinase activity of TAOK2. These compounds also showed inhibition of autophagy. Based on SAR (structure-activity relationship) studies, we have predicted the modifications on the reactive groups for the three compounds. (C) 2016 Elsevier Ltd. All rights reserved.
Conserved Tao Kinase Activity Regulates Dendritic Arborization, Cytoskeletal Dynamics, and Sensory Function in Drosophila
JOURNAL OF NEUROSCIENCE
Authors: Hu, Chun; Kanellopoulos, Alexandros K.; Richter, Melanie; Petersen, Meike; Konietzny, Anja; Tenedini, Federico M.; Hoyer, Nina; Cheng, Lin; Poon, Carole L. C.; Harvey, Kieran F.; Windhorst, Sabine; Parrish, Jay Z.; Mikhaylova, Marina; Bagni, Claudia; Calderon de Anda, Froylan; Soba, Peter
Abstract
Dendritic arborization is highly regulated and requires tight control of dendritic growth, branching, cytoskeletal dynamics, and ion channel expression to ensure proper function. Abnormal dendritic development can result in altered network connectivity, which has been linked to neurodevelopmental disorders, including autism spectrum disorders (ASDs). How neuronal growth control programs tune dendritic arborization to ensure function is still not fully understood. Using Drosophila dendritic arborization (da) neurons as a model, we identified the conserved Ste20-like kinase Tao as a negative regulator of dendritic arborization. We show that Tao kinase activity regulates cytoskeletal dynamics and sensory channel localization required for proper sensory function in both male and female flies. We further provide evidence for functional conservation of Tao kinase, showing that its ASD-linked human ortholog, Tao kinase 2 (Taok2), could replace Drosophila Tao and rescue dendritic branching, dynamic microtubule alterations, and behavioral defects. However, several ASD-linked Taok2 variants displayed impaired rescue activity, suggesting that Tao/Taok2 mutations can disrupt sensory neuron development and function. Consistently, we show that Tao kinase activity is required in developing and as well as adult stages for maintaining normal dendritic arborization and sensory function to regulate escape and social behavior. Our data suggest an important role for Tao kinase signaling in cytoskeletal organization to maintain proper dendritic arborization and sensory function, providing a strong link between developmental sensory aberrations and behavioral abnormalities relevant for Taok2-dependent ASDs.