Abstract

Myelin protein P2 is a peripheral membrane protein of the fatty acid-binding protein family that functions in the formation and maintenance of the peripheral nerve myelin sheath. Several P2 gene mutations cause human Charcot-Marie-Tooth neuropathy, but the mature myelin sheath assembly mechanism is unclear. Here, cryo-EM of myelin-like proteolipid multilayers revealed an ordered three-dimensional (3D) lattice of P2 molecules between stacked lipid bilayers, visualizing supramolecular assembly at the myelin major dense line. The data disclosed that a single P2 layer is inserted between two bilayers in a tight intermembrane space of ∼3 nm, implying direct interactions between P2 and two membrane surfaces. X-ray diffraction from P2-stacked bicelle multilayers revealed lateral protein organization, and surface mutagenesis of P2 coupled with structure-function experiments revealed a role for both the portal region of P2 and its opposite face in membrane interactions. Atomistic molecular dynamics simulations of P2 on model membrane surfaces suggested that Arg-88 is critical for P2-membrane interactions, in addition to the helical lid domain. Negatively charged lipid headgroups stably anchored P2 on the myelin-like bilayer surface. Membrane binding may be accompanied by opening of the P2 β-barrel structure and ligand exchange with the apposing bilayer. Our results provide an unprecedented view into an ordered, multilayered biomolecular membrane system induced by the presence of a peripheral membrane protein from human myelin. This is an important step toward deciphering the 3D assembly of a mature myelin sheath at the molecular level.

Highlights

  • Myelin protein P2 is a peripheral membrane protein of the fatty acid– binding protein family that functions in the formation and maintenance of the peripheral nerve myelin sheath

  • The results provide further information on the molecular details of the major dense line in peripheral nervous system (PNS) myelin, as well as on CMT disease mechanisms linked to mutations in P2

  • Myelin protein P2 is a unique member of the fatty acidbinding proteins (FABPs) family, able to stack lipid bilayers together, in addition to being a member of the FABP subgroup carrying out collisional transfer

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Summary

Introduction

Myelin protein P2 is a peripheral membrane protein of the fatty acid– binding protein family that functions in the formation and maintenance of the peripheral nerve myelin sheath. Cryo-EM of myelin-like proteolipid multilayers revealed an ordered three-dimensional (3D) lattice of P2 molecules between stacked lipid bilayers, visualizing supramolecular assembly at the myelin major dense line. The authors declare that they have no conflicts of interest with the contents of this article. 2 Present address: Institute of Molecular Biology and Biophysics, ETH Zurich, 8093 Zurich, Switzerland. 5 Present address: National Resource for Automated Molecular Microscopy, Simons Electron Microscopy Center, New York Structural Biology Center, New York, NY 10027. A central question in myelin biology is the molecular mechanism of the tight packing of dozens of apposing lipid bilayers into a mature, multilayered myelin sheath. The high degree of order within the myelin sheath has been known since early experiments using X-ray diffraction [1]; the details of the molecular assembly have remained enigmatic

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