首页> 外文期刊>Cell motility and the cytoskeleton >Sphingosine-1-phosphate plays a role in the suppression of lateral pseudopod formation during Dictyostelium discoideum cell migration and chemotaxis.
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Sphingosine-1-phosphate plays a role in the suppression of lateral pseudopod formation during Dictyostelium discoideum cell migration and chemotaxis.

机译:鞘氨醇-1-磷酸在抑制盘基网柄菌细胞迁移和趋化过程中侧假足形成中发挥作用。

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摘要

Sphingosine-1-phosphate (S-1-P) is a bioactive lipid that plays a role in diverse biological processes. It functions both as an extracellular ligand through a family of high-affinity G-protein-coupled receptors, and intracellularly as a second messenger. A growing body of evidence has implicated S-1-P in controlling cell movement and chemotaxis in cultured mammalian cells. Mutant D. discoideum cells, in which the gene encoding the S-1-P lyase had been specifically disrupted by homologous recombination, previously were shown to be defective in pseudopod formation, suggesting that a resulting defect might exist in motility and/or chemotaxis. To test this prediction, we analyzed the behavior of mutant cells in buffer, and in both spatial and temporal gradients of the chemoattractant cAMP, using computer-assisted 2-D and 3-D motion analysis systems. Under all conditions, S-1-P lyase null mutants were unable to suppress lateral pseudopod formation like wild-type control cells. This resulted in a reduction in velocity in buffer and spatial gradients of cAMP. Mutant cells exhibited positive chemotaxis in spatial gradients of cAMP, but did so with lowered efficiency, again because of their inability to suppress lateral pseudopod formation. Mutant cells responded normally to simulated temporal waves of cAMP but mimicked the temporal dynamics of natural chemotactic waves. The effect must be intracellular since no homologs of the S-1-P receptors have been identified in the Dictyostelium genome. The defects in the S-1-P lyase null mutants were similar to those seen in mutants lacking the genes for myosin IA, myosin IB, and clathrin, indicating that S-1-P signaling may play a role in modulating the activity or organization of these cytoskeletal elements in the regulation of lateral pseudopod formation. Cell Motil. Cytoskeleton 59:227-241, 2004. (c) 2004 Wiley-Liss, Inc.
机译:鞘氨醇-1-磷酸酯(S-1-P)是一种生物活性脂质,在多种生物过程中发挥作用。它既通过一系列高亲和力的G蛋白偶联受体充当细胞外配体,又在细胞内充当第二信使。越来越多的证据表明,S-1-P与控制哺乳动物细胞的细胞运动和趋化性有关。先前已显示出突变的盘梭菌细胞中编码S-1-P裂解酶的基因已被同源重组特异破坏,在伪足形成中有缺陷,这表明所导致的缺陷可能存在于运动性和/或趋化性中。为了测试该预测,我们使用计算机辅助的2-D和3-D运动分析系统分析了突变细胞在化学吸附剂cAMP的缓冲液中以及时空梯度中的行为。在所有条件下,S-1-P裂解酶无效突变体都无法像野生型对照细胞一样抑制侧假足形成。这导致cAMP的缓冲速度和空间梯度降低。突变细胞在cAMP的空间梯度中表现出正趋化性,但这样做的效率降低,这再次是因为它们无法抑制侧假足的形成。突变细胞对模拟的cAMP时间波正常响应,但模仿了自然趋化波的时间动态。该作用必须是细胞内的,因为在网柄菌属基因组中没有发现S-1-P受体的同源物。 S-1-P裂解酶无效突变体中的缺陷与缺少肌球蛋白IA,肌球蛋白IB和网格蛋白基因的突变体中的缺陷相似,表明S-1-P信号传导可能在调节活性或组织中起作用这些细胞骨架元素在侧假足形成中的调控。细胞动力。 Cytoskeleton 59:227-241,2004.(c)2004 Wiley-Liss,Inc.

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