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A Common Clathrin‐Mediated Machinery Co‐ordinates Cell–Cell Adhesion and Bacterial Internalization
Authors:Matteo Bonazzi  Andreas Kühbacher  Alejandro Toledo‐Arana  Adeline Mallet  Lavanya Vasudevan  Javier Pizarro‐Cerdá  Frances M. Brodsky  Pascale Cossart
Affiliation:1. Institut Pasteur, Unité des Interactions Bactéries‐Cellules, , Paris, F‐75015 France;2. Inserm, U604, , Paris, F‐75015 France;3. INRA, USC2020, , Paris, F‐75015 France;4. Current address: CNRS, UMR 5236, CPBS, , Montpellier, F‐34965 France;5. Laboratory of Microbial Biofilms, Instituto de Agrobiotecnología, Universidad Pública de Navarra‐CSIC‐Gobierno de Navarra, , 31006 Pamplona, Spain;6. Institut Pasteur, Plateforme de Microscopie Ultrastructurale, , Imagopole, Paris, F-75015 France;7. The G.W. Hooper Foundation, Departments of Bioengineering and Therapeutic Sciences, of Microbiology and Immunology and of Pharmaceutical Chemistry, University of California, San Francisco, , San Francisco, CA, 94143‐0552 USA
Abstract:Invasive bacterial pathogens often target cellular proteins involved in adhesion as a first event during infection. For example, Listeria monocytogenes uses the bacterial protein InlA to interact with E‐cadherin, hijack the host adherens junction (AJ) machinery and invade non‐phagocytic cells by a clathrin‐dependent mechanism. Here, we investigate a potential role for clathrin in cell–cell adhesion. We observed that the initial steps of AJ formation trigger the phosphorylation of clathrin, and its transient localization at forming cell–cell contacts. Furthermore, we show that clathrin serves as a hub for the recruitment of proteins that are necessary for the actin rearrangements that accompany the maturation of AJs. Using an InlA/E‐cadherin chimera, we show that adherent cells expressing the chimera form AJs with cells expressing E‐cadherin. We demonstrate that non‐adherent cells expressing the InlA chimera, as bacteria, can be internalized by E‐cadherin‐expressing adherent cells. Together these results reveal that a common clathrin‐mediated machinery may regulate internalization and cell adhesion and that the relative mobility of one of the interacting partners plays an important role in the commitment to either one of these processes.
Keywords:E-cadherin  adherens junctions  actin  internalin  Listeria monocytogenes
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