Abstract

Prions are lipidated proteins that interact with endogenous lipids and metal ions. They also assemble into multimers and propagate into the infectious scrapie form known as PrPSc The high-resolution structure of the infectious PrPSc state remains unknown, and its analysis largely relies on detergent-based preparations devoid of endogenous ligands. Here we designed polymers that allow isolation of endogenous membrane:protein assemblies in native nanodiscs without exposure to conventional detergents that destabilize protein structures and induce fibrillization. A set of styrene-maleic acid (SMA) polymers including a methylamine derivative facilitated gentle release of the infectious complexes for resolution of multimers, and a thiol-containing version promoted crystallization. Polymer extraction from brain homogenates from Syrian hamsters infected with Hyper prions and WT mice infected with Rocky Mountain Laboratories prions yielded infectious prion nanoparticles including oligomers and microfilaments bound to lipid vesicles. Lipid analysis revealed the brain phospholipids that associate with prion protofilaments, as well as those that are specifically enriched in prion assemblies captured by the methylamine-modified copolymer. A comparison of the infectivity of PrPSc attached to SMA lipid particles in mice and hamsters indicated that these amphipathic polymers offer a valuable tool for high-yield production of intact, detergent-free prions that retain in vivo activity. This native prion isolation method provides an avenue for producing relevant prion:lipid targets and potentially other proteins that form multimeric assemblies and fibrils on membranes.

Highlights

  • Prions are lipidated proteins that interact with endogenous lipids and metal ions

  • 1% 263K brain homogenate Treated with 1% sarkosyl-PrPSc Treated with 1% styrene–maleic acid (SMA)(1:1)ma-PrPSc Treated with 1% SMA(2:1)-PrPSc Treated with 1% SMA-SH-PrPSc Treated with 1% SMA(3:1)-PrPSc days

  • We have shown that infectious membrane-associated prions can be directly isolated intact from rodent brains using custom SMA copolymers, providing a viable route to prepare one of the most challenging complexes with no exposure to detergent and minimal use of phosphotungstic acid (PTA) or added polymer

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Summary

Introduction

Prions are lipidated proteins that interact with endogenous lipids and metal ions. They assemble into multimers and propagate into the infectious scrapie form known as PrPSc. Unlike detergents that need to be maintained throughout the protocol, a minimal concentration of SMA polymer (1% w/v) was added only during the initial incubation with brain homogenate (Fig. S2) to reduce the heterogeneity of nanodiscs for fractionation and transmission electron microscopy imaging.

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