Johnston A R, Fraser J R, Jeffrey M, MacLeod N
Department of Physiology, University Medical School, Edinburgh, United Kingdom.
Neurobiol Dis. 1998 Sep;5(3):188-95. doi: 10.1006/nbdi.1998.0194.
Using conventional in vitro extracellular field potential recordings we have investigated both short- and long-term synaptic plasticity in the hippocampal CA1 area of mice infected with ME7 scrapie. In agreement with earlier studies, no changes were seen in the properties of the Schäffer collateralevoked field excitatory postsynaptic potential during the early stages of the disease (up to 160 days, post inoculation, d.p.i) after which time the recorded potentials were seen to attenuate. Also, up to this time no changes were seen in either paired-pulse facilitation or post-tetanic potentiation, which are short-term phenomena associated with brief elevations in presynaptic calcium levels. However, there was a significant shift from the ability of slices to maintain long-term potentiation (LTP) from 100 d.p.i. onwards. In all of these experiments short-term potentiation (STP) was preserved, suggesting that from the time that abnormal PrP becomes detectable, or perhaps even earlier, the mechanisms responsible for stabilizing the maintenance phase of LTP are impaired. This result is discussed in terms of the relationship between STP and LTP and how this might be compromised by the conversion of cellular prion protein (PrPC) to the scrapie, protease resistant form of PrP (PrPSc).
我们使用传统的体外细胞外场电位记录技术,研究了感染ME7羊瘙痒病的小鼠海马CA1区的短期和长期突触可塑性。与早期研究一致,在疾病早期(接种后长达160天,d.p.i),沙费尔侧支诱发的场兴奋性突触后电位的特性没有变化,此后记录到的电位开始衰减。同样,在此之前,双脉冲易化或强直后增强这两种与突触前钙水平短暂升高相关的短期现象也没有变化。然而,从接种后100天起,脑片维持长期增强(LTP)的能力出现了显著变化。在所有这些实验中,短期增强(STP)得以保留,这表明从异常朊蛋白可检测到的时候起,或者甚至更早,负责稳定LTP维持阶段的机制就受到了损害。本文根据STP和LTP之间的关系以及细胞朊蛋白(PrPC)转化为羊瘙痒病的蛋白酶抗性形式的朊蛋白(PrPSc)可能如何损害这种关系来讨论这一结果。