Abstract
AbstractDendrite morphogenesis is essential for neural circuit formation, yet the molecular mechanisms underlying complex dendrite branching remain elusive. Previous studies on the highly branchedC. elegansPVD sensory neuron identified a membrane co-receptor complex that links extracellular signals to intracellular actin remodeling machinery, promoting high-order dendrite branching. In this complex, the claudin-like transmembrane protein HPO-30 recruits the WAVE regulatory complex (WRC) to dendrite branching sites, stimulating the Arp2/3 complex to polymerize actin. We report here our biochemical and structural analysis of this interaction, revealing that the intracellular domain (ICD) of HPO-30 is intrinsically disordered and employs two distinct mechanisms to regulate the actin cytoskeleton. First, HPO-30 ICD binding to the WRC requires dimerization and involves the entire ICD sequence, rather than a short linear peptide motif. This interaction enhances WRC activation by the GTPase Rac1. Second, HPO-30 ICD directly binds to the sides and barbed end of actin filaments. Binding to the barbed end requires ICD dimerization and inhibits both actin polymerization and depolymerization, resembling the actin capping protein CapZ. These dual functions provide an intriguing model of how membrane proteins can integrate distinct mechanisms to fine-tune local actin dynamics.
Publisher
Cold Spring Harbor Laboratory
Reference125 articles.
1. Abraham, M.J. , Murtola, T. , Schulz, R. , Páll, S. , Smith, J.C. , Hess, B. , Lindah, E ., 2015. Gromacs: High performance molecular simulations through multi-level parallelism from laptops to supercomputers. SoftwareX 1–2, 19–25. https://doi.org/10.1016/j.softx.2015.06.001
2. Accurate prediction of solvent accessibility using neural networks-based regression. Proteins: Structure;Function and Genetics,2004
3. Capping Protein Increases the Rate of Actin-Based Motility by Promoting Filament Nucleation by the Arp2/3 Complex
4. Cellular functions of WASP family proteins at a glance
5. Avery, A.W. , Fealey, M.E. , Wang, F. , Orlova, A. , Thompson, A.R. , Thomas, D.D. , Hays, T.S. , Egelman, E.H ., 2017. Structural basis for high-affinity actin binding revealed by a β-III-spectrin SCA5 missense mutation. Nat Commun 8. https://doi.org/10.1038/s41467-017-01367-w
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