Critchley Peter, Kazlauskaite Jurate, Eason Robert, Pinheiro Teresa J T
Department of Biological Sciences, University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, UK.
Biochem Biophys Res Commun. 2004 Jan 16;313(3):559-67. doi: 10.1016/j.bbrc.2003.12.004.
A key molecular event in prion diseases is the conversion of the normal cellular form of the prion protein (PrPC) to an aberrant form known as the scrapie isoform, PrPSc. Under normal physiological conditions PrPC is attached to the outer leaflet of the plasma membrane via a GPI-anchor. It has been proposed that a direct interaction between PrP and lipid membranes could be involved in the conversion of PrPC to its disease-associated corrupted conformation, PrPSc. Recombinant PrP can be refolded into an alpha-helical structure, designated alpha-PrP isoform, or into beta-sheet-rich states, designated beta-PrP isoform. The current study investigates the binding of recombinant PrP isoforms to model lipid membranes using surface plasmon resonance spectroscopy. The binding of alpha- and beta-PrP to negatively charged lipid membranes of POPG, zwitterionic membranes of DPPC, and model raft membranes composed of DPPC, cholesterol, and sphingomyelin is compared at pH 7 and 5, to simulate the environment at the plasma membrane and within endosomes, respectively. It is found that PrP binds strongly to lipid membranes. The strength of the association of PrP with lipid membranes depends on the protein conformation and pH, and involves both hydrophobic and electrostatic lipid-protein interactions. Competition binding measurements established that the binding of alpha-PrP to lipid membranes follows a decreasing order of affinity to POPG>DPPC>rafts.
朊病毒疾病中的一个关键分子事件是朊病毒蛋白(PrPC)的正常细胞形式转化为一种异常形式,即羊瘙痒病异构体PrPSc。在正常生理条件下,PrPC通过糖基磷脂酰肌醇(GPI)锚定附着于质膜的外小叶。有人提出,PrP与脂质膜之间的直接相互作用可能参与PrPC向其疾病相关的异常构象PrPSc的转化。重组PrP可以重新折叠成α-螺旋结构,即α-PrP异构体,或富含β-折叠的状态,即β-PrP异构体。本研究使用表面等离子体共振光谱研究重组PrP异构体与模型脂质膜的结合。在pH 7和pH 5条件下,比较了α-PrP和β-PrP与带负电荷的POPG脂质膜、两性离子的DPPC膜以及由DPPC、胆固醇和鞘磷脂组成的模型脂筏膜的结合情况,分别模拟质膜和内体中的环境。发现PrP与脂质膜强烈结合。PrP与脂质膜结合的强度取决于蛋白质构象和pH,并且涉及疏水和静电的脂质-蛋白质相互作用。竞争结合测量表明,α-PrP与脂质膜的结合亲和力顺序为POPG>DPPC>脂筏。