School of Sciences, Information Technology and Engineering, University of Ballarat, Mount Helen, Ballarat, Victoria 3353, Australia.
J Biomol Struct Dyn. 2011 Oct;29(2):369-77. doi: 10.1080/07391102.2011.10507391.
Prion diseases (e.g. Creutzfeldt-Jakob disease (CJD), variant CJD (vCJD), Gerstmann-Straussler-Scheinker syndrome (GSS), Fatal Familial Insomnia (FFI) and Kuru in humans, scrapie in sheep, bovine spongiform encephalopathy (BSE or 'mad-cow' disease) and chronic wasting disease (CWD) in cattles) are invariably fatal and highly infectious neurodegenerative diseases affecting humans and animals. However, by now there have not been some effective therapeutic approaches or medications to treat all these prion diseases. Rabbits, dogs, and horses are the only mammalian species reported to be resistant to infection from prion diseases isolated from other species. Recently, the β2-α2 loop has been reported to contribute to their protein structural stabilities. The author has found that rabbit prion protein has a strong salt bridge ASP177-ARG163 (like a taut bow string) keeping this loop linked. This paper confirms that this salt bridge also contributes to the structural stability of horse prion protein. Thus, the region of β2-α2 loop might be a potential drug target region. Besides this very important salt bridge, other four important salt bridges GLU196-ARG156-HIS187, ARG156-ASP202 and GLU211-HIS177 are also found to greatly contribute to the structural stability of horse prion protein. Rich databases of salt bridges, hydrogen bonds and hydrophobic contacts for horse prion protein can be found in this paper.
朊病毒病(如克雅氏病(CJD)、变异型克雅氏病(vCJD)、格斯特曼-施特劳斯勒-舍因克综合征(GSS)、家族性致死性失眠症(FFI)和库鲁病,以及羊瘙痒病、牛海绵状脑病(BSE 或“疯牛病”)和鹿慢性消耗性疾病(CWD))在人类和动物中都是不可避免的致命和高度传染性神经退行性疾病。然而,到目前为止,还没有一些有效的治疗方法或药物来治疗所有这些朊病毒病。兔子、狗和马是唯一报道的对来自其他物种的朊病毒病感染具有抗性的哺乳动物物种。最近,β2-α2 环被报道有助于它们的蛋白质结构稳定性。作者发现,兔朊蛋白具有很强的盐桥 ASP177-ARG163(就像紧绷的弓弦),使该环保持连接。本文证实,该盐桥也有助于马朊蛋白的结构稳定性。因此,β2-α2 环区域可能是一个潜在的药物靶点区域。除了这个非常重要的盐桥之外,还发现其他四个重要的盐桥 GLU196-ARG156-HIS187、ARG156-ASP202 和 GLU211-HIS177 对马朊蛋白的结构稳定性也有很大的贡献。本文还发现了马朊蛋白丰富的盐桥、氢键和疏水接触数据库。