Structure of Shroom domain 2 reveals a three-segmented coiled-coil required for dimerization, Rock binding, and apical constriction
نویسندگان
چکیده
Shroom (Shrm) proteins are essential regulators of cell shape and tissue morpho-logy during animal development that function by interacting directly with the coiled-coil region of Rho kinase (Rock). The Shrm-Rock interaction is sufficient to direct Rock subcellular localization and the subsequent assembly of contractile actomyosin networks in defined subcellular locales. However, it is unclear how the Shrm-Rock interaction is regulated at the molecular level. To begin investigating this issue, we present the structure of Shrm domain 2 (SD2), which mediates the interaction with Rock and is required for Shrm function. SD2 is a unique three-segmented dimer with internal symmetry, and we identify conserved residues on the surface and within the dimerization interface that are required for the Rock-Shrm interaction and Shrm activity in vivo. We further show that these residues are critical in both vertebrate and invertebrate Shroom proteins, indicating that the Shrm-Rock signaling module has been functionally and molecularly conserved. The structure and biochemical analysis of Shrm SD2 indicate that it is distinct from other Rock activators such as RhoA and establishes a new paradigm for the Rock-mediated assembly of contractile actomyosin networks.
منابع مشابه
Structure of a Highly Conserved Domain of Rock1 Required for Shroom-Mediated Regulation of Cell Morphology
Rho-associated coiled coil containing protein kinase (Rho-kinase or Rock) is a well-defined determinant of actin organization and dynamics in most animal cells characterized to date. One of the primary effectors of Rock is non-muscle myosin II. Activation of Rock results in increased contractility of myosin II and subsequent changes in actin architecture and cell morphology. The regulation of R...
متن کاملthree-segmented dimer with internal symmetry and we identify conserved residues on the surface and within the dimerization interface that are required for the Rock-Shroom interaction and Shroom
Swarna Mohan, Ryan Rizaldy, Debamitra Das, Robert J. Bauer, Annie Heroux, Michael A. Trakselis, Jeffrey D. Hildebrand, and Andrew P. VanDemark. * Department of Biological Sciences, University of Pittsburgh, Pittsburgh PA 15260, USA Department of Chemistry, University of Pittsburgh, Pittsburgh PA 15260, USA Department of Biology, Brookhaven National Laboratory, Upton, NY 11973, USA Corresponding...
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