Why Does Synergistic Activation of WASP, but Not N-WASP, by Cdc42 and PIP2 Require Cdc42 Prenylation?
Dey, S.; Zhou, H.-X.
Show abstract
Human WASP and N-WASP are homologous proteins that require the binding of multiple regulators, including the acidic lipid PIP2 and the small GTPase Cdc42, to relieve autoinhibition before they can stimulate the initiation of actin polymerization. Autoinhibition involves intramolecular binding of the C-terminal acidic and central motifs to an upstream basic region and GTPase binding domain. Little is known about how a single intrinsically disordered protein, WASP or N-WASP, binds multiple regulators to achieve full activation. Here we used molecular dynamics simulations to characterize the binding of WASP and N-WASP with PIP2 and Cdc42. In the absence of Cdc42, both WASP and N-WASP strongly associate with PIP2-containing membranes, through their basic region and also possibly through a tail portion of the N-terminal WH1 domain. The basic region also participates in Cdc42 binding, especially for WASP; consequently Cdc42 binding significantly compromises the ability of the basic region in WASP, but not N-WASP, to bind PIP2. PIP2 binding to the WASP basic region is restored only when Cdc42 is prenylated at the C-terminus and tethered to the membrane. This distinction in the activation of WASP and N-WASP may contribute to their different functional roles.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Membrane-binding mechanism of the EEA1 FYVE domain revealed by multi-scale molecular dynamics simulations 97%
- Ceramide-1-phosphate transfer protein enhances lipid transport by disrupting hydrophobic lipid-membrane contacts 97%
- Cholesterol binding to the sterol-sensing region of Niemann Pick C1 protein confines dynamics of its N-terminal domain 96%
Similar papers in this journal
- The structural mechanism underlying the antithetic effect of homologous RND1 and RhoD GTPases in plexin regulation 95%
- State-specific morphological deformations of the lipid bilayer explain mechanosensitive gating of MscS ion channels 95%
- Binding Mechanism of the Matrix Domain of HIV-1 Gag to Lipid Membranes 95%
Similar papers in this journal
- Anillin Related Mid1 as an Adaptive and Multimodal Contractile Ring Anchoring Protein: A Simulation Study 98%
- Binding of Ca2+-Independent C2 Domains to Lipid Membranes: a Multi-Scale Molecular Dynamics Study 95%
- Lys716 in the transmembrane domain of yeast mitofusin Fzo1 modulates anchoring and fusion 95%
Similar papers in this journal
- A Network of Phosphatidylinositol 4,5-bisphosphate Binding Sites Regulate Gating of the Ca2+-activated Cl- Channel ANO1 (TMEM16A) 95%
- STIM1 transmembrane helix dimerization captured by AI-guided transition path sampling 95%
- Molecular mechanism of GTP binding- anddimerization-induced enhancement ofSar1-mediated membrane remodeling 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.