首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Tetrabenazine Facilitates Exocytosis by Enhancing Calcium-Induced Calcium Release through Ryanodine Receptors
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Tetrabenazine Facilitates Exocytosis by Enhancing Calcium-Induced Calcium Release through Ryanodine Receptors

机译:四丁嗪通过增强钙诱导的钙释放通过芦橘受体来促进外尿液

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摘要

Vesicular monoamine transporter-2 is expressed in the presynaptic secretory vesicles membrane in the brain. Its blockade by tetrabenazine (TBZ) causes depletion of dopamine at striatal basal ganglia; this is the mechanism underlying its long-standing use in the treatment of Huntington's disease. In the frame of a project aimed at investigating the kinetics of exocytosis from vesicles with partial emptying of their neurotransmitter, we unexpectedly found that TBZ facilitates exocytosis; thus, we decided to characterize such effect. We used bovine chromaffin cells (BCCs) challenged with repeated pulses of high K. Upon repeated K+ pulsing, the exocytotic catecholamine release responses were gradually decaying. However, when cells were exposed to TBZ, responses were mildly augmented and decay rate delayed. Facilitation of exocytosis was not due to Ca2+ entry blockade through voltage-activated calcium channels (VACCs) because, in fact, TBZ mildly blocked the whole-cell Ca2+ current. However, TBZ mimicked the facilitatory effects of exocytosis elicited by BayK8644 (L-subtype VACC agonist), an effect blocked by nifedipine (VACC antagonist). On the basis that TBZ augmented the secretory responses to caffeine (but not those of histamine), we monitored its effects on cytosolic Ca2+ elevations ([Ca2+](c)) triggered by caffeine or histamine. While the responses to caffeine were augmented twice by TBZ, those of histamine were unaffected; the same happened in rat cortical neurons. Hence, we hypothesize that TBZ facilitates exocytosis by increasing Ca2+ release through the endoplasmic reticulum ryanodine receptor channel (RyR). Confirming this hypothesis are docking results, showing an interaction of TBZ with RyRs. This is consonant with the existence of a healthy Ca2+-induced Ca2+-release mechanism in BCCs.
机译:囊泡单胺转运-2在大脑突触前分泌泡膜中表达。通过丁苯那嗪(TBZ)其封锁导致在纹状体基底节多巴胺耗竭;这是其在亨廷顿氏病的治疗长期使用底层的机制。参与调查的胞吐作用,从与他们的神经递质的部分的排空泡动力学项目的框架中,我们意外地发现,TBZ功能有助于胞吐作用;因此,我们决定来描述这样的效果。我们使用了在重复K +脉冲高K的重复的脉冲激发的牛铬细胞(嗜铬细胞),胞吐儿茶酚胺释放应答逐渐衰减。然而,当细胞暴露于TBZ,应答轻度增加和衰减速率延迟。胞吐作用的便利不是由于通过电压激活的钙通道(VACCs)Ca 2+内流封锁因为,事实上,TBZ轻度受阻全细胞钙电流。然而,TBZ模仿胞吐作用由BayK8644(L-亚型VACC激动剂),阻断由硝苯地平(VACC拮抗剂)的效果引起的易化效应。在此基础上认为TBZ增强分泌反应,咖啡因(但不包括组胺的),我们监测对咖啡因或组胺引发的细胞溶质Ca 2+升高(Ca2 +浓度(C))的影响。虽然与咖啡因的反应进行了TBZ增加两倍,那些组胺不受影响;同样的事情发生在大鼠皮层神经元。因此,我们假设,TBZ通过内质网兰诺定受体通道(RyR的)增加Ca2 +释放促进胞吐作用。确认这一假设的对接结果,显示TBZ与RyRs的相互作用。这是辅音与健康的钙在嗜铬细胞+诱导的Ca2 + - 释放机制的存在。

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