首页> 美国卫生研究院文献>The Journal of Physiology >Block of native Ca(2+)-permeable AMPA receptors in rat brain by intracellular polyamines generates double rectification.
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Block of native Ca(2+)-permeable AMPA receptors in rat brain by intracellular polyamines generates double rectification.

机译:细胞内多胺对大鼠大脑中的天然Ca(2+)渗透性AMPA受体的阻止产生双重整流。

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摘要

1. The influence of intracellular factors on current rectification of different subtypes of native alpha-amino-3-hydroxy-5-methyl-4-isoxazoleproprionate receptors (AMPARs) was studied in rat brain slices by combining fast application of glutamate with patch pipette perfusion. 2. The peak current-voltage (I-V) relation of the AMPARs expressed in Bergmann glial cells of cerebellum and dentate gyrus (DG) basket cells of hippocampus was weakly rectifying in outside-out patches and nystatin-perforated vesicles, but showed a doubly rectifying shape with a region of reduced slope between 0 and +40 mV in nucleated patches. The I-V relation of AMPARs expressed in hippocampal CA3 pyramidal neurones was linear in all recording configurations. 3. Intracellular application of 25 microM spermine, a naturally occurring polyamine, blocked outward currents in outside-out patches from Bergmann glial cells and DG basket cells in a voltage-dependent manner, generating I-V relations with a doubly rectifying shape which were similar to those recorded in nucleated patches. AMPARs in CA3 pyramidal cell patches were unaffected by 25 microM spermine. 4. The half-maximal blocking concentration of spermine at +40 mV was 0.3 microM in Bergmann glial cell patches and 1.5 microM in DG basket cell patches, whereas it was much higher (>> 100 microM) for CA3 pyramidal cell patches. Spermidine also affected current rectification, but with lower affinity. The block of outward current by polyamines following voltage jumps developed within < 0.5 ms. 5. We conclude that current rectification, rather than being an intrinsic property of the Ca(2+)-permeable AMPAR channel, is generated by polyamine block.
机译:1.通过快速应用谷氨酸和贴片移液器灌注,研究了大鼠细胞切片中细胞内因素对天然亚氨基-氨基-3-羟基-5-羟基-4-甲基-4-异恶唑丙酸酯的不同亚型当前整流的影响。 。 2.海马小脑Bergmann胶质细胞和海马齿状回(DG)篮状细胞表达的AMPAR的峰值电流-电压(IV)关系在外向外斑块和制霉菌素穿孔的囊泡中弱校正,但显示出双重整流在有核斑块中,其形状的斜率减小的区域在0到+40 mV之间。在所有记录配置中,海马CA3锥体神经元表达的AMPAR的I-V关系是线性的。 3.在细胞内应用25 microM精胺(一种天然存在的多胺),以电压依赖性方式阻止Bergmann神经胶质细胞和DG篮状细胞外向外贴片中的向外电流,从而产生与双倍整流形状相似的IV关系记录在有核斑块中。 CA3锥体细胞贴片中的AMPAR不受25 microM精胺的影响。 4.在+40 mV处,精胺的最大半封闭浓度在Bergmann胶质细胞贴片中为0.3 microM,在DG篮状细胞贴片中为1.5 microM,而对于CA3锥体细胞贴片则更高( 100 microM)。亚精胺也影响电流整流,但亲和力较低。电压跃变后,多胺在小于0.5毫秒内形成了向外的电流阻断。 5.我们得出的结论是,多胺嵌段产生了当前的整流作用,而不是Ca(2+)渗透性AMPAR通道的固有性质。

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