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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Presenilin-1 and intracellular calcium stores regulate neuronal glutamate uptake.
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Presenilin-1 and intracellular calcium stores regulate neuronal glutamate uptake.

机译:Presenilin-1和细胞内钙存储调节神经元谷氨酸的摄取。

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Glutamate uptake by high affinity glutamate transporters is essential for preventing excitotoxicity and maintaining normal synaptic function. We have discovered a novel role for presenilin-1 (PS1) as a regulator of glutamate transport. PS1-deficient neurons showed a decrease in glutamate uptake of approximately 50% compared to wild-type neurons. Gamma-secretase inhibitor treatment mimicked the effects of PS1 deficiency on glutamate uptake. PS1 loss-of-function, accomplished by PS1 deficiency or gamma-secretase inhibitor treatment, caused a corresponding decrease in cell surface expression of the neuronal glutamate transporter, EAAC1. PS1 deficiency is known to reduce intracellular calcium stores. To explore the possibility that PS1 influences glutamate uptake via regulation of intracellular calcium stores, we examined the effects of treating neurons with caffeine, thapsigargin, and SKF-96365. These compounds depleted intracellular calcium stores by distinct means. Nonetheless, each treatment mimicked PS1 loss-of-function by impairing glutamate uptake and reducing EAAC1 expression at the cell surface. Blockade of voltage-gated calcium channels, activation and inhibition of protein kinase C (PKC), and protein kinase A (PKA) all had no effect on glutamate uptake in neurons. Taken together, these findings indicate that PS1 and intracellular calcium stores may play a significant role in regulating glutamate uptake and therefore may be important in limiting glutamate toxicity in the brain.
机译:高亲和力谷氨酸转运蛋白对谷氨酸的摄取对于预防兴奋性毒性和维持正常的突触功能至关重要。我们发现了早老素-1(PS1)作为谷氨酸转运调节剂的新作用。缺乏PS1的神经元与野生型神经元相比,谷氨酸摄取减少约50%。 γ-分泌酶抑制剂的治疗模仿了PS1缺乏对谷氨酸摄取的影响。通过PS1缺乏或γ-分泌酶抑制剂治疗导致的PS1功能丧失,导致神经元谷氨酸转运蛋白EAAC1的细胞表面表达相应降低。已知PS1缺乏会减少细胞内钙的储存。为了探索PS1通过调节细胞内钙存储来影响谷氨酸吸收的可能性,我们研究了用咖啡因,毒胡萝卜素和SKF-96365治疗神经元的效果。这些化合物通过不同的方式耗尽了细胞内钙的储存。但是,每种处理都通过削弱谷氨酸的摄取并降低细胞表面EAAC1的表达来模拟PS1的功能丧失。电压门控钙通道的阻滞,蛋白激酶C(PKC)和蛋白激酶A(PKA)的激活和抑制均对神经元的谷氨酸摄取没有影响。综上所述,这些发现表明PS1和细胞内钙存储可能在调节谷氨酸摄取中起重要作用,因此在限制脑内谷氨酸毒性中可能是重要的。

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