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The ciliary membrane‐associated proteome reveals actin‐binding proteins as key components of cilia
Authors:Priyanka Kohli  Martin Höhne  Christian Jüngst  Sabine Bertsch  Lena K Ebert  Astrid C Schauss  Thomas Benzing  Bernhard Schermer
Institution:1. Department II of Internal Medicine and Center for Molecular Medicine Cologne, University of Cologne, Cologne, Germany;2. Cologne Excellence Cluster on Cellular Stress Responses in Aging Associated Diseases (CECAD), University of Cologne, Cologne, Germany;3. Systems Biology of Ageing Cologne (Sybacol), University of Cologne, Cologne, Germany;4. Systems Biology of Ageing Cologne (Sybacol), University of Cologne, Cologne, GermanyThese authors contributed equally to this work
Abstract:Primary cilia are sensory, antennae‐like organelles present on the surface of many cell types. They have been involved in a variety of diseases collectively termed ciliopathies. As cilia are essential regulators of cell signaling, the composition of the ciliary membrane needs to be strictly regulated. To understand regulatory processes at the ciliary membrane, we report the targeting of a genetically engineered enzyme specifically to the ciliary membrane to allow biotinylation and identification of the membrane‐associated proteome. Bioinformatic analysis of the comprehensive dataset reveals high‐stoichiometric presence of actin‐binding proteins inside the cilium. Immunofluorescence stainings and complementary interaction proteomic analyses confirm these findings. Depolymerization of branched F‐actin causes further enrichment of the actin‐binding and actin‐related proteins in cilia, including Myosin 5a (Myo5a). Interestingly, Myo5a knockout decreases ciliation while enhanced levels of Myo5a are observed in cilia upon induction of ciliary disassembly. In summary, we present a novel approach to investigate dynamics of the ciliary membrane proteome in mammalian cells and identify actin‐binding proteins as mechanosensitive components of cilia that might have important functions in cilia membrane dynamics.
Keywords:actin‐binding proteins  Myo5a  primary cilia  proximity labeling     STED   
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