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Molecular characterization of a calmodulin involved in the signal transduction chain of gravitaxis in Euglena gracilis

机译:拟南芥中引力信号转导链中涉及的钙调蛋白的分子表征

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The unicellular flagellate Euglena gracilis shows a negative gravitactic behavior. This is based on physiological mechanisms which in the past have been indirectly assessed. Meanwhile, it was possible to isolate genes involved in the signal transduction chain of gravitaxis. The DNA sequences of five calmodulins were found in Euglena, one of which was only known in its protein structure (CaM.1); the other four are new. The biosynthesis of the corresponding proteins of CaM.1–CaM.5 was inhibited by means of RNA interference to determine their involvement in the gravitactic signal transduction chain. RNAi of CaM.1 inhibits free swimming of the cells and pronounced cell-form aberrations. The division of cells was also hampered. After recovery from RNAi the cell showed precise negative gravitaxis again. Blockage of CaM.3 to CaM. 5 did not impair gravitaxis. In contrast, the blockage of CaM.2 has only a transient and not pronounced influence on motility and cell form, but leads to a total loss of gravitactic orientation for more than 30 days. This indicates that CaM.2 is an element in the signal transduction chain of gravitaxis in E. gracilis. The results are discussed with regard to the current working model of gravitaxis in E. gracilis.
机译:单细胞鞭毛的Euglena gracilis表现出负的引力行为。这是基于过去已经间接评估过的生理机制。同时,有可能分离出引力信号转导链中涉及的基因。在Euglena中发现了五个钙调蛋白的DNA序列,其中一个仅在其蛋白质结构(CaM.1)中已知;其他四个是新的。 CaM.1–CaM.5相应蛋白质的生物合成受到RNA干扰的抑制,以确定它们是否参与了引力信号转导链。 CaM.1的RNAi抑制细胞自由游动和明显的细胞形态畸变。细胞分裂也受到阻碍。从RNAi恢复后,细胞再次显示出精确的负引力。 CaM.3对CaM的阻塞。 5没有损害引力。相比之下,CaM.2的阻滞仅对运动性和细胞形态有短暂的影响,而没有明显的影响,但导致超过30天的重力方向完全丧失。这表明CaM.2是细粒肠球菌引力信号转导链中的一个元素。讨论了有关目前在重链梭菌中引力作用的工作模型的结果。

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