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首页> 外文期刊>Cell and Tissue Biology >Inhibition of Functional Activity of the Adenylyl Cyclase Signaling System of the Ciliate Dileptus anser by Colchicine and Vinblastine
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Inhibition of Functional Activity of the Adenylyl Cyclase Signaling System of the Ciliate Dileptus anser by Colchicine and Vinblastine

机译:秋水仙碱和长春花碱对纤毛纤毛虫腺苷酸环化酶信号传导系统功能的抑制作用

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摘要

Cytoskeleton plays a key role in the functioning of hormonal signaling systems in vertebrate animals. However, data on the effect of cytoskeletal components, in particular microtubules, on the functional activity of chemosignaling systems of unicellular organisms are currently lacking. The goal of this work consisted of studying the effects of microtubule-disrupting agents, colchicine and vinblastine, on the adenylyl cyclase system of free living infusoria Dileptus anser. The incubation of D. anser with colchicine and vinblastine (10~(-5)—10~(-6)M) weakly affected the basal activity of adenylyl cyclase (AC), but led to a significant decrease in or complete block of AC stimulation with nonhormonal (GppNHp, sodium fluoride) and hormonal agents (adrenaline, serotonin, glucagon). The basal level of GTP binding in heterotrimeric G proteins decreased and there was observed inhibition of stimulation of G proteins by hormones. Colchicine and vinblastine have been shown to interrupt adrenalin-produced AC stimulation achieved through G_s--protein, but weakly affect its inhibiting AC effect caused by the G_i-protein. Thus, it has been established for the first time that, in unicellular organisms, i.e., infusoria D. anser, microtubules are involved in the regulation of the functional activity of the AC system and their action is realized at the level of G proteins, which is similar to G_s-proteins in vertebrate animals.
机译:细胞骨架在脊椎动物中激素信号系统的功能中起关键作用。但是,目前缺乏有关细胞骨架成分,特别是微管对单细胞生物体化学信号系统功能活性影响的数据。这项工作的目的包括研究微管破坏剂秋水仙碱和长春碱对自由生活的梭状芽孢杆菌花药的腺苷酸环化酶系统的影响。秋水仙碱与秋水仙碱和长春碱(10〜(-5)—10〜(-6)M)的孵育对腺苷酸环化酶(AC)的基础活性影响较弱,但导致AC的显着减少或完全阻断非激素(GppNHp,氟化钠)和激素制剂(肾上腺素,5-羟色胺,胰高血糖素)刺激。异三聚体G蛋白中GTP结合的基础水平降低,并且观察到激素对G蛋白刺激的抑制作用。秋水仙碱和长春碱已被证明可以阻断通过G_s-蛋白产生的肾上腺素产生的AC刺激,但对其G_i蛋白引起的AC抑制作用产生微弱影响。因此,首次确定在单细胞生物,即Infusoria D. anser中,微管参与了AC系统功能活性的调节,并且它们的作用是在G蛋白水平实现的。与脊椎动物的G_s蛋白相似。

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