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Coaction of Electrostatic and Hydrophobic Interactions: Dynamic Constraints on Disordered TrkA Juxtamembrane Domain

J Phys Chem B.. 2019; 
Wang Z, Fan H, Hu X1, Khamo J, Diao J1, Zhang K, Pogorelov TV.
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Peptide Synthesis Sample Immobilization. Incubate 50 µL of 0.1 mg/mL NeutrAvidin (Fisher Scientific, USA) in the channels for 5 min at room temperature, followed by a thorough washing of the unbound NeutrAvidin. Incubate 50 µL of vesicles in the channel for 30 min at room temperature and wash out unbound vesicles with 200 µL T50. Inject 50 µL of Cy3 labeled RW, FS or WT peptides (78.0%, 90.0% and 75.3%, Genscript, China) into the channel and incubate for 15 min at room temperature and thoroughly wash out unbound peptides with 200 µL T50 buffer. Get A Quote

摘要

In the receptor tyrosine kinase family, conformational change induced by ligand binding is transmitted across the membrane via a single transmembrane helix and a flexible juxtamembrane domain (JMD). Membrane dynamics makes it challenging to study the structural mechanism of receptor activation experimentally. In this study, we employ all-atom molecular dynamics with highly mobile membrane mimetic (HMMM) to capture the native conformation of the JMD in tropomyosin receptor kinase A (TrkA). We find that phosphatidylinositol 4,5-bisphosphate (PIP2) lipids engage in stable binding with multiple basic residues. Anionic lipids can compete with salt bridges within the peptide and alter TrkA-JMD conformation. We discov... More

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