Zhong Linghao, Xie Jimin
Pennsylvania State University at Mont Alto, 17237, USA.
J Biomol Struct Dyn. 2009 Apr;26(5):525-33. doi: 10.1080/07391102.2009.10507268.
Prion protein conformational isomerization, PrP(C)-->PrP(Sc), has been attributed as the cause of TSE diseases such as mad-cow disease. The mechanism of such isomerization, however, is little known due the experimental difficulties in studying the scrapie form. Among factors that affect PrP isomerization, the role which glycosylation plays remains vague. The number of innumerous glycan species, together with their high flexibility, leads to ineffective structural characterization. In this research, we studied the effect of chitobiose glycosylation on human PrP, in both monomeric (huPrP(mono)) and dimeric (huPrP(dimer)) forms, by molecular dynamics (MD) simulations. Our results show that this glycosylation has minimal impact on the structure of huPrP(mono). However, it affects the secondary structure of dimeric protein. An additional beta-sheet strand is found while the glycosylation is absent in the huPrP(dimer). Comparatively, when the protein is glycosylated with chitobiose, such beta-sheet addition is not observed.
朊病毒蛋白的构象异构化,即PrP(C)转变为PrP(Sc),被认为是诸如疯牛病等传染性海绵状脑病(TSE)疾病的病因。然而,由于研究瘙痒病形式存在实验困难,这种异构化的机制鲜为人知。在影响PrP异构化的因素中,糖基化所起的作用仍不明确。大量聚糖种类及其高度的灵活性导致结构表征无效。在本研究中,我们通过分子动力学(MD)模拟研究了壳二糖糖基化对单体(huPrP(mono))和二聚体(huPrP(dimer))形式的人PrP的影响。我们的结果表明,这种糖基化对huPrP(mono)的结构影响最小。然而,它会影响二聚体蛋白的二级结构。在huPrP(dimer)中未进行糖基化时会发现一条额外的β-折叠链。相比之下,当蛋白质用壳二糖进行糖基化时,则未观察到这种β-折叠的添加。