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通过高压核磁共振光谱法检测到的人类和叙利亚仓鼠朊病毒蛋白中间态的种属特异性差异。

Species-specific differences in the intermediate states of human and Syrian hamster prion protein detected by high pressure NMR spectroscopy.

作者信息

Kremer Werner, Kachel Norman, Kuwata Kazuo, Akasaka Kazuyuki, Kalbitzer Hans Robert

机构信息

Institute for Biophysics and Physical Biochemistry, University of Regensburg, D-93040 Regensburg, Germany.

出版信息

J Biol Chem. 2007 Aug 3;282(31):22689-98. doi: 10.1074/jbc.M701884200. Epub 2007 May 22.

Abstract

Human (huPrP) and Syrian hamster (ShaPrP) prion proteins have barriers for mutual infectivity, although they fold into almost an identical structure. The pressure responses of huPrP and ShaPrP characterized by high pressure NMR spectroscopy show differences in their excited states, as monitored by pressure-induced chemical shifts and intensity changes of individual residues in the (15)N/(1)H HSQC spectra. Both proteins fluctuate rapidly between two well folded (native) conformations N(1) and N(2) and less frequently between N and the excited states I(1) and I(2) with local disorder that may present structural intermediates on the way to PrP(Sc). These four structural states can be observed in the hamster and human PrP. At ambient pressure, less than 5 molecules of 10,000 are in the intermediate state I(2). From the structural point of view, the different states are mutually different, particularly in positions strategically important for generating species barriers for infection. The results point to the notion that excited state conformers are important for infection and that their structural differences may crucially determine species barriers for infection.

摘要

人源(huPrP)和叙利亚仓鼠源(ShaPrP)朊病毒蛋白尽管折叠成几乎相同的结构,但它们之间存在相互感染的屏障。通过高压核磁共振光谱表征的huPrP和ShaPrP的压力响应显示出它们激发态的差异,这通过压力诱导的化学位移以及(15)N/(1)H HSQC光谱中各个残基的强度变化来监测。两种蛋白质在两种折叠良好的(天然)构象N(1)和N(2)之间快速波动,而在N与具有局部无序的激发态I(1)和I(2)之间波动较少,这些局部无序可能是通往PrP(Sc)途中的结构中间体。这四种结构状态在仓鼠和人源PrP中均可观察到。在常压下,10000个分子中处于中间态I(2)的分子少于5个。从结构角度来看,不同状态彼此不同,特别是在对于产生感染的种间屏障具有重要战略意义的位置上。结果表明,激发态构象异构体对于感染很重要,并且它们的结构差异可能对感染的种间屏障起关键决定作用。

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