Zieminska Elzbieta, Stafiej Aleksandra, Pitsinos Emmanuel N, Couladouros Elias A, Moutsos Vassilios, Kozlowska Hanna, Toczylowska Beata, Lazarewicz Jerzy W
Department of Neurochemistry, Medical Research Centre, Warsaw, Poland.
Neurosignals. 2006;15(6):283-92. doi: 10.1159/000107650. Epub 2007 Aug 27.
Although the interactions of several natural bastadins with the RyR1 isoform of the ryanodine receptor in sarcoplasmic reticulum has been described, their structure-dependent interference with the RyR2 isoform, mainly expressed in cardiac muscle and brain neurons, has not been studied. In this work, we examined calcium transients induced by natural bastadin 10 and several synthetic bastadins in cultured cerebellar granule cells known to contain RyR2. The fluorescent calcium indicator fluo-3 and confocal microscopy were used to evaluate changes in the intracellular Ca(2+) concentration (Ca(i)), and the involvement of ryanodine receptors was assessed using pharmacological tools. Our results demonstrate that apart from the inactive BAST218F6 (a bisdebromo analogue of bastadin 10), synthetic bastadin 5, and synthetic analogues BAST217B, BAST240 and BAST268 (at concentrations >20 microM) increased Ca(i) in a concentration-dependent, ryanodine- and FK-506-sensitive way, with a potency significantly exceeding that of 20 mM caffeine. Moreover, the same active bastadins at a concentration of 5 muM in the presence of ryanodine prevented a thapsigargin-induced increase in Ca(i). These results indicate that bastadins, acting in a structure-dependent manner, modify the activity of RyR2 in primary neuronal culture and provide new information about structure-related pharmacological properties of bastadins.
尽管已有研究描述了几种天然巴斯他汀与肌浆网中兰尼碱受体的RyR1亚型之间的相互作用,但它们对主要在心肌和脑神经元中表达的RyR2亚型的结构依赖性干扰尚未得到研究。在这项工作中,我们检测了天然巴斯他汀10和几种合成巴斯他汀在已知含有RyR2的培养小脑颗粒细胞中诱导的钙瞬变。使用荧光钙指示剂fluo-3和共聚焦显微镜来评估细胞内Ca(2+)浓度(Ca(i))的变化,并使用药理学工具评估兰尼碱受体的参与情况。我们的结果表明,除了无活性的BAST218F6(巴斯他汀10的双脱溴类似物)、合成巴斯他汀5以及合成类似物BAST217B、BAST240和BAST268(浓度>20 microM时)以外,它们以浓度依赖性、对兰尼碱和FK-506敏感的方式增加Ca(i),其效力显著超过20 mM咖啡因。此外,在存在兰尼碱的情况下,浓度为5 μM的相同活性巴斯他汀可阻止毒胡萝卜素诱导的Ca(i)增加。这些结果表明,巴斯他汀以结构依赖性方式作用,改变了原代神经元培养物中RyR2的活性,并提供了有关巴斯他汀与结构相关的药理学特性的新信息。