Guttmann R P, Baker D L, Seifert K M, Cohen A S, Coulter D A, Lynch D R
Department of Pharmacology, University of Pennsylvania, School of Medicine and Children's Hospital of Philadelphia, Philadelphia, USA.
J Neurochem. 2001 Sep;78(5):1083-93. doi: 10.1046/j.1471-4159.2001.00493.x.
The NMDA subtype of glutamate receptor plays an important role in the molecular mechanisms of learning, memory and excitotoxicity. NMDA receptors are highly permeable to calcium, which can lead to the activation of the calcium-dependent protease, calpain. In the present study, the ability of calpain to modulate NMDA receptor function through direct proteolytic digestion of the individual NMDA receptor subunits was examined. HEK293t cells were cotransfected with the NR1a/2A, NR1a/2B or NR1a/2C receptor combinations. Cellular homogenates of these receptor combinations were prepared and digested by purified calpain I in vitro. All three NR2 subunits could be proteolyzed by calpain I while no actin or NR1a cleavage was observed. Based on immunoblot analysis, calpain cleavage of NR2A, NR2B and NR2C subunits was limited to their C-terminal region. In vitro calpain digestion of fusion protein constructs containing the C-terminal region of NR2A yielded two cleavage sites at amino acids 1279 and 1330. Although it has been suggested that calpain cleavage of the NMDA receptor may act as a negative feedback mechanism, the current findings demonstrated that calpain cleavage did not alter [(125)I]MK801 binding and that receptors truncated to the identified cleavage sites had peak intracellular calcium levels, (45)Ca uptake rates and basal electrophysiological properties similar to wild type.
谷氨酸受体的NMDA亚型在学习、记忆和兴奋性毒性的分子机制中发挥着重要作用。NMDA受体对钙具有高度通透性,这可导致钙依赖性蛋白酶钙蛋白酶的激活。在本研究中,研究了钙蛋白酶通过直接蛋白水解单个NMDA受体亚基来调节NMDA受体功能的能力。将HEK293t细胞与NR1a/2A、NR1a/2B或NR1a/2C受体组合共转染。制备这些受体组合的细胞匀浆,并在体外由纯化的钙蛋白酶I进行消化。所有三种NR2亚基均可被钙蛋白酶I蛋白水解,而未观察到肌动蛋白或NR1a的裂解。基于免疫印迹分析,NR2A、NR2B和NR2C亚基的钙蛋白酶裂解仅限于其C末端区域。对含有NR2A C末端区域的融合蛋白构建体进行体外钙蛋白酶消化,在氨基酸1279和1330处产生两个裂解位点。尽管有人提出NMDA受体的钙蛋白酶裂解可能作为一种负反馈机制,但目前的研究结果表明,钙蛋白酶裂解不会改变[(125)I]MK801结合,并且截短至已确定裂解位点的受体具有与野生型相似的细胞内钙水平峰值、(45)Ca摄取率和基础电生理特性。