De Simone Alfonso, Pedone Carlo, Vitagliano Luigi
Istituto di Bioimmagini e Biostrutture, C.N.R., via Mezzocannone 16, I-80134 Napoli, Italy.
Biochem Biophys Res Commun. 2008 Feb 15;366(3):800-6. doi: 10.1016/j.bbrc.2007.12.047. Epub 2007 Dec 17.
Misfolding of the prion protein (PrP) is associated with the development of Transmissible Spongiform Encephalopathies. The recent crystal structure of 'steric zipper' aggregates of the peptide SNQNNF (human PrP fragment 170-175) has highlighted its potential involvement in the misfolding process. A detailed molecular dynamics investigation on SNQNNF aggregates has been performed to analyze the behavior of the assemblies in a non-crystalline context. Stability, dynamics, and structural features suggest that SNQNNF assemblies are very good candidates to be involved in the structure of PrP fibrils. In addition, the analysis of small aggregates shows that steric zipper interfaces are able to stabilize assemblies composed of four strands per sheet. Altogether, the present findings indicate that steric zipper may play a key role in prion diseases. This suggestion is also corroborated by MD analyses of point mutations within the region 170-175.
朊病毒蛋白(PrP)的错误折叠与传染性海绵状脑病的发展有关。肽SNQNNF(人PrP片段170 - 175)的“空间拉链”聚集体的最新晶体结构突出了其在错误折叠过程中的潜在作用。已对SNQNNF聚集体进行了详细的分子动力学研究,以分析这些聚集体在非晶态环境中的行为。稳定性、动力学和结构特征表明,SNQNNF聚集体是参与PrP纤维结构形成的非常合适的候选者。此外,对小聚集体的分析表明,空间拉链界面能够稳定由每层四条链组成的聚集体。总之,目前的研究结果表明,空间拉链可能在朊病毒疾病中起关键作用。对170 - 175区域内点突变的分子动力学分析也证实了这一观点。