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Cell-free synthesis of amyloid fibrils with infectious properties and amenable to sub-milligram magic-angle spinning NMR analysis.

Alons LendsAsen DaskalovAnsis MaleckisAline DelamareMélanie BerbonAxelle GrélardEstelle MorvanJayakrishna ShenoyAntoine DutourJames TolchardAbdelmajid NoubhaniMarie-France GiraudCorinne SanchezBirgit HabensteinGilles GuichardGuillaume CompainKristaps JaudzemsSven J SaupeAntoine Loquet
Published in: Communications biology (2022)
Structural investigations of amyloid fibrils often rely on heterologous bacterial overexpression of the protein of interest. Due to their inherent hydrophobicity and tendency to aggregate as inclusion bodies, many amyloid proteins are challenging to express in bacterial systems. Cell-free protein expression is a promising alternative to classical bacterial expression to produce hydrophobic proteins and introduce NMR-active isotopes that can improve and speed up the NMR analysis. Here we implement the cell-free synthesis of the functional amyloid prion HET-s(218-289). We present an interesting case where HET-s(218-289) directly assembles into infectious fibril in the cell-free expression mixture without the requirement of denaturation procedures and purification. By introducing tailored 13 C and 15 N isotopes or CF 3 and 13 CH 2 F labels at strategic amino-acid positions, we demonstrate that cell-free synthesized amyloid fibrils are readily amenable to high-resolution magic-angle spinning NMR at sub-milligram quantity.
Keyphrases
  • cell free
  • high resolution
  • solid state
  • magnetic resonance
  • circulating tumor
  • amino acid
  • poor prognosis
  • binding protein
  • cystic fibrosis
  • cell proliferation
  • ionic liquid
  • smoking cessation
  • circulating tumor cells