Structural basis for protein antiaggregation activity of the trigger factor chaperone.

Article Details

Citation

Saio T, Guan X, Rossi P, Economou A, Kalodimos CG

Structural basis for protein antiaggregation activity of the trigger factor chaperone.

Science. 2014 May 9;344(6184):1250494. doi: 10.1126/science.1250494.

PubMed ID
24812405 [ View in PubMed
]
Abstract

Molecular chaperones prevent aggregation and misfolding of proteins, but scarcity of structural data has impeded an understanding of the recognition and antiaggregation mechanisms. We report the solution structure, dynamics, and energetics of three trigger factor (TF) chaperone molecules in complex with alkaline phosphatase (PhoA) captured in the unfolded state. Our data show that TF uses multiple sites to bind to several regions of the PhoA substrate protein primarily through hydrophobic contacts. Nuclear magnetic resonance (NMR) relaxation experiments show that TF interacts with PhoA in a highly dynamic fashion, but as the number and length of the PhoA regions engaged by TF increase, a more stable complex gradually emerges. Multivalent binding keeps the substrate protein in an extended, unfolded conformation. The results show how molecular chaperones recognize unfolded polypeptides and, by acting as unfoldases and holdases, prevent the aggregation and premature (mis)folding of unfolded proteins.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
Alkaline phosphataseP00634Details