Issue June 2011

category image Volume 28
No. 6 (p 845-1176)
June 2011
ISSN 0739-1102

Molecular Dynamics Studies on the Structural Stability of Wild-type Dog Prion Protein (861-869)

Prion diseases such as Creutzfeldt-Jakob disease, variant Creutzfeldt-Jakob diseases, Gerstmann-Sträussler-Scheinker syndrome, Fatal Familial Insomnia, Kuru in humans, scrapie in sheep, bovine spongiform encephalopathy (or ‘mad-cow’ disease) and chronic wasting disease in cattle are invariably fatal and highly infectious neurodegenerative diseases affecting humans and animals. However, by now there have not been some effective therapeutic approaches to treat all these prion diseases. In 2008, canine mammals including dogs (canis familials) were the first time academically reported to be resistant to prion diseases (Vaccine 26: 2601-2614 (2008)). Thus, it is very worth studying the molecular structures of dog prion protein to obtain insights into the immunity of dogs to prion diseases. This paper studies the molecular structural dynamics of wild-type dog prion protein. The comparison analyses with rabbit prion protein show that the dog prion protein has stable molecular structures whether under neutral or low pH environments. We also find that the salt bridges such as D177-R163 contribute to the structural stability of wild-type rabbit prion protein under neutral pH environment.

Key words: Prion diseases; Immunity; Rabbit and dog prion proteins; Molecular dynamics.

This article can be cited as:
J. Zhang, D. D. W. Liu, Molecular Dynamics Studies on the Structural Stability of Wild-type Dog Prion Protein, J. Biomol Struct Dyn 28(6), 861-869 (2011).

Jiapu Zhang1*
David D.W. Liu2

1School of Sciences, Information Technology and Engineering, University of Ballarat, Mount Helen, Ballarat, Victoria 3353, Australia
2Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, 30 Flemington Road, Melbourne, Victoria 3010, Australia

*Phone: 61-423487360 jiapu_zhang@hotmail.com
j.zhang@ballarat.edu.au

Purchase Downloadable PDF of Article

Corporate User

$100.00

University/Academic User

$50.00

Subscription is more cost effective than purchasing PDFs on-the-fly.  Click here for details.