Williams T L, Day N C, Ince P G, Kamboj R K, Shaw P J
Department of Neurology, School of Neurosciences & Psychiatry, University of Newcastle upon Tyne, UK.
Ann Neurol. 1997 Aug;42(2):200-7. doi: 10.1002/ana.410420211.
The cause of the selective degeneration of motor neurons in amyotrophic lateral sclerosis (ALS) remains unexplained. One potential pathogenetic mechanism is chronic toxicity due to disturbances of the glutamatergic neurotransmitter system, mediated via alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA)-sensitive glutamate receptors. Functional AMPA receptors consist of various combinations of four subunits (designated GluR1-4). The GluR2 subunit is functionally dominant and renders AMPA receptors impermeable to calcium. Most native AMPA receptors in the mammalian central nervous system (CNS) contain the GluR2 subunit and are calcium impermeable. We have investigated the composition of AMPA receptors expressed on normal human spinal motor neurons by in situ hybridization to determine their likely subunit stoichiometry. Highly significant levels of mRNA were detected for the GluR1, GluR3, and GluR4 subunits. However, GluR2 subunit mRNA was not detectable in this cell group. The absence of detectable GluR2 mRNA in normal human spinal motor neurons predicts that they express calcium-permeable AMPA receptors unlike most neuronal groups in the human CNS. Expression of atypical calcium-permeable AMPA receptors by human motor neurons provides a possible mechanism whereby disturbances of glutamate neurotransmission in ALS may selectively injure this cell group.
肌萎缩侧索硬化症(ALS)中运动神经元选择性变性的原因仍未明确。一种潜在的致病机制是谷氨酸能神经递质系统紊乱介导的慢性毒性,该系统通过α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)敏感的谷氨酸受体发挥作用。功能性AMPA受体由四个亚基(命名为GluR1 - 4)的各种组合构成。GluR2亚基在功能上占主导地位,使AMPA受体对钙不渗透。哺乳动物中枢神经系统(CNS)中的大多数天然AMPA受体都含有GluR2亚基,并且对钙不渗透。我们通过原位杂交研究了正常人脊髓运动神经元上表达的AMPA受体的组成,以确定其可能的亚基化学计量。检测到GluR1、GluR3和GluR4亚基的mRNA水平非常显著。然而,在该细胞群中未检测到GluR2亚基的mRNA。正常人脊髓运动神经元中未检测到可检测的GluR2 mRNA,这预示着它们表达的是钙可渗透的AMPA受体,这与人类CNS中的大多数神经元群体不同。人类运动神经元表达非典型的钙可渗透AMPA受体,这为ALS中谷氨酸神经传递紊乱可能选择性损伤该细胞群提供了一种可能的机制。