A Review on the Salt Bridge Between ASP177 and ARG163 of Wild-Type Rabbit Prion Protein
Jiapu Zhang, Feng Wang

TL;DR
This paper investigates the salt bridge between ASP177 and ARG163 in rabbit prion protein, analyzing structural differences at varying pH levels and using molecular dynamics to understand its stability and role in low susceptibility to prion diseases.
Contribution
It provides a detailed comparison of NMR and X-ray structures of rabbit prion protein and explores how pH influences the salt bridge and structural stability.
Findings
Salt bridge observed in X-ray but not in NMR structure due to pH differences.
pH impacts electrostatic interactions and structural conformation of prion protein.
Molecular dynamics simulations reveal factors contributing to prion protein stability.
Abstract
Prion diseases are invariably fatal and highly infectious neurodegenerative diseases that affect a wide variety of mammalian species such as sheep and goats, cattle, deer, elks, humans and mice etc., but rabbits have a low susceptibility to be infected by prion diseases with respect to other species. The stability of rabbit prion protein is due to its highly ordered {\beta}2-{\alpha}2 loop (PLoS One 5(10) e13273 (2010); Journal of Biological Chemistry 285(41) 31682-31693 (2010)) and a hydrophobic staple helix-capping motif (PNAS 107(46) 19808-19813 (2010); PLoS One 8 (5) e63047 (2013)). The {\beta}2-{\alpha}2 loop and the tail of Helix 3 it interacts with have been a focus in prion protein structure studies. For this loop we found a salt bridge linkage ASP177-ARG163 (O-N) (Journal of Theoretical Biology 342 (7 February 2014) 70-82 (2014)). Some scientists said on the 2FJ3.pdb NMR file…
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