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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Calcium and cytoskeleton signaling during cell volume regulation in isolated nematocytes of Aiptasia mutabilis (Cnidaria : Anthozoa)
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Calcium and cytoskeleton signaling during cell volume regulation in isolated nematocytes of Aiptasia mutabilis (Cnidaria : Anthozoa)

机译:拟南芥(Aiptasia mutabilis)分离的神经细胞的细胞体积调节过程中的钙和细胞骨架信号传导(Cndaria:Anthozoa)

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Cell volume regulation has not been completely clarified in Coelenterates. The present investigation focuses on cell volume regulation under anisosmotic conditions, both hyposmotic and hypertonic, and on the underlying signals in nematocytes isolated from the Coelenterate Aiptasia mutabilis living in sea water. Nematocytes, once isolated from acontia, that were submitted to either hyposmotic (35%) and hypertonic shock (45%) show RVD and RVI capabilities, respectively. In order to ascertain the role of Ca2+ in triggering such regulatory mechanisms and the possible involvement of cytoskeleton components, tests were performed by employing either Ca2+ free conditions, Gd3+ as Ca2+ channel blockers, TFP as calmodulin inhibitor, colchicine as microtubule inhibitor and cytochalasin B as microfilament polymerization inhibitor. Results show that isolated nematocytes of A. mutabilis can regulate their volume upon both hyposmotic and hypertonic challenge. Ca2+ both from external medium and from internal stores is needed to perform RVD mechanisms, whereas, intracellular Ca2+ seems to be mainly involved in RVI. Moreover cytoskeletal components may play an important role since a significant RVD and RVI inhibition was observed in treated cells. On the basis of our observations further studies are warranted to further verify the role of signals, including phosphatases and phosphorylases, in cell volume regulation of primitive eukaryotic cells. (c) 2007 Elsevier Inc. All rights reserved.
机译:在腔肠动物中尚未完全阐明细胞体积调节。本研究的重点是在低渗和高渗的异渗条件下的细胞体积调节,以及从生活在海水中的腔肠腔棘皮动物分离的线虫细胞中的潜在信号。一旦从附睾中分离出来的神经细胞,分别经历了低渗性(35%)和高渗性休克(45%),分别显示出RVD和RVI功能。为了确定Ca2 +在触发此类调节机制中的作用以及可能涉及的细胞骨架成分,通过采用不含Ca2 +的条件,Gd3 +作为Ca2 +通道阻滞剂,TFP作为钙调蛋白抑制剂,秋水仙碱作为微管抑制剂和细胞松弛素B作为条件进行了测试微丝聚合抑制剂。结果表明,在低渗和高渗刺激下,分离的变形链球菌神经细胞都可以调节其体积。 RVD机制需要外部介质和内部存储中的Ca2 +,而细胞内Ca2 +似乎主要参与RVI。此外,由于在处理过的细胞中观察到明显的RVD和RVI抑制作用,因此细胞骨架成分可能起重要作用。根据我们的观察结果,有必要进行进一步的研究以进一步验证信号,包括磷酸酶和磷酸化酶在原始真核细胞的细胞体积调节中的作用。 (c)2007 Elsevier Inc.保留所有权利。

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