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硒蛋白P缺乏小鼠海马体突触功能改变。

Altered hippocampus synaptic function in selenoprotein P deficient mice.

作者信息

Peters Melinda M, Hill Kristina E, Burk Raymond F, Weeber Edwin J

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, USA.

出版信息

Mol Neurodegener. 2006 Sep 19;1:12. doi: 10.1186/1750-1326-1-12.

Abstract

Selenium is an essential micronutrient that function through selenoproteins. Selenium deficiency results in lower concentrations of selenium and selenoproteins. The brain maintains it's selenium better than other tissues under low-selenium conditions. Recently, the selenium-containing protein selenoprotein P (Sepp) has been identified as a possible transporter of selenium. The targeted disruption of the selenoprotein P gene (Sepp1) results in decreased brain selenium concentration and neurological dysfunction, unless selenium intake is excessive However, the effect of selenoprotein P deficiency on the processes of memory formation and synaptic plasticity is unknown. In the present studies Sepp1(-/-) mice and wild type littermate controls (Sepp1(+/+)) fed a high-selenium diet (1 mg Se/kg) were used to characterize activity, motor coordination, and anxiety as well as hippocampus-dependent learning and memory. Normal associative learning, but disrupted spatial learning was observed in Sepp1(-/-) mice. In addition, severe alterations were observed in synaptic transmission, short-term plasticity and long-term potentiation in hippocampus area CA1 synapses of Sepp1(-/-) mice on a 1 mg Se/kg diet and Sepp1(+/+) mice fed a selenium-deficient (0 mg Se/kg) diet. Taken together, these data suggest that selenoprotein P is required for normal synaptic function, either through presence of the protein or delivery of required selenium to the CNS.

摘要

硒是一种必需的微量营养素,通过硒蛋白发挥作用。硒缺乏会导致硒和硒蛋白浓度降低。在低硒条件下,大脑比其他组织能更好地维持其硒含量。最近,含硒蛋白硒蛋白P(Sepp)已被确定为一种可能的硒转运体。硒蛋白P基因(Sepp1)的靶向破坏会导致脑硒浓度降低和神经功能障碍,除非硒摄入量过多。然而,硒蛋白P缺乏对记忆形成和突触可塑性过程的影响尚不清楚。在本研究中,使用喂食高硒饮食(1毫克硒/千克)的Sepp1(-/-)小鼠和野生型同窝对照(Sepp1(+/+))来表征活动、运动协调性和焦虑以及海马体依赖性学习和记忆。在Sepp1(-/-)小鼠中观察到正常的联想学习,但空间学习受到破坏。此外,在喂食1毫克硒/千克饮食的Sepp1(-/-)小鼠和喂食缺硒(0毫克硒/千克)饮食的Sepp1(+/+)小鼠的海马体CA1区突触中,观察到突触传递、短期可塑性和长期增强存在严重改变。综上所述,这些数据表明,硒蛋白P对于正常的突触功能是必需的,无论是通过该蛋白的存在还是向中枢神经系统输送所需的硒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71fa/1594565/3a50ec6840bc/1750-1326-1-12-1.jpg

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