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Archaic and alternative chaperones preserve pilin folding energy by providing incomplete structural information.

J. Biol. Chem.. 2018-09; 
PakharukovaNatalia,McKennaSophie,TuittilaMinna,PaavilainenSari,MalmiHenri,XuYingqi,ParilovaOlena,MatthewsSteve,ZavialovAnt
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摘要

Adhesive pili are external component of fibrous adhesive organelles and help bacteria attach to biotic or abiotic surfaces. The biogenesis of adhesive pili via the chaperone-usher pathway (CUP) is independent of external energy sources. In the classical CUP, chaperones transport assembly-competent pilins in a folded but expanded conformation. During donor-strand exchange, pilins subsequently collapse, producing a tightly-packed hydrophobic core and releasing the necessary free energy to drive fiber formation. Here, we show that pilus biogenesis in non-classical, archaic, and alternative CUPs uses a different source of conformational energy. High-resolution structures of the archaic Csu-pili system f... More

关键词

Acinetobacter baumannii,Csu pili,X-ray crystallography,adhesive pili,bacterial adhesion,bacterial pathogenesis,biofilm,chaperone,chaperone-usher pathway,fimbriae,nuclear magnetic resonance (NMR),protein folding,protein secretion,protein self-assembly,protein struc