Chicken Prion Tandem Repeats Form a Stable, Protease-Resistant Domain
- 19 December 1998
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 38 (2) , 667-676
- https://doi.org/10.1021/bi981487f
Abstract
Prion-linked diseases, such as mad cow disease, scrapie, and the human genetic disorder Creutzfeldt-Jakob disease, are fatal neurodegenerative diseases correlated with changes in the secondary structure of neural prion protein. We expressed recombinant chicken prion protein in Escherichia coli and purified the protein to homogeneity. Circular dichroism spectra of the 26 kDa recombinant protein closely resemble those of prion protein purified directly from healthy hamster brain. The chicken prion protein exists as a soluble, monodisperse monomer but can be forced to multimerize following lyophilization and resuspension. We analyzed the chicken prion protein domain structure by proteolysis and show that, unlike the mammalian homologues, the chicken prion protein N-terminal tandem amino acid repeats form a stable, protease-resistant domain. This domain probably represents a physiologically functional unit. As tested by both mass spectrometry and circular dichroism, the mature chicken prion protein does not bind copper, unlike synthetic peptides from the chicken prion N-terminus, suggesting that binding copper is not the physiological activity of the chicken prion. However, copper strongly destabilizes the prion protein and depresses the melting temperature by 30 degreesC, presumably by binding to the unfolded form of the prion protein. The chicken prion N-terminus may have evolved to fold without a cofactor, unlike mammalian prion proteins, whose N-termini are disordered without cofactors such as copper present. Chicken prion offers an alternative to intractable mammalian prions for structural studies of the amino-terminal domain.Keywords
This publication has 8 references indexed in Scilit:
- Prion protein structural features indicate possible relations to signal peptidasesFEBS Letters, 1998
- Recombinant full‐length murine prion protein, mPrP(23–231): purification and spectroscopic characterizationFEBS Letters, 1997
- NMR characterization of the full‐length recombinant murine prion protein, mPrP(23–231)FEBS Letters, 1997
- Metal‐dependent α‐helix formation promoted by the glycine‐rich octapeptide region of prion proteinFEBS Letters, 1996
- Semipreparative Chromatographic Method to Purify the Normal Cellular Isoform of the Prion Protein in Nondenatured FormAnalytical Biochemistry, 1996
- Overexpression of active Syrian golden hamster prion protein PrPc as a glutathione S-transferase fusion in heterologous systemsJournal of Virology, 1995
- Prion Protein Gene Variation Among PrimatesJournal of Molecular Biology, 1995
- A protease-resistant protein is a structural component of the Scrapie prionCell, 1983