首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Switching direction in electric-signal-induced cell migration by cyclic guanosine monophosphate and phosphatidylinositol signaling
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Switching direction in electric-signal-induced cell migration by cyclic guanosine monophosphate and phosphatidylinositol signaling

机译:环鸟苷单磷酸和磷脂酰肌醇信号在电信号诱导的细胞迁移中的转换方向

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摘要

Switching between attractive and repulsive migration in cell movement in response to extracellular guidance cues has been found in various cell types and is an important cellular function for translocation during cellular and developmental processes. Here we show that the preferential direction of migration during electrotaxis in Dictyostelium cells can be reversed by genetically modulating both guanylyl cyclases (GCases) and the cyclic guanosine monophosphate (cGMP)-binding protein C (GbpC) in combination with the inhibition of phosphatidylinositol-3-OH kinases (PI3Ks). The PI3K-dependent pathway is involved in cathode-directed migration under a direct-current electric field. The catalytic domains of soluble GCase (sGC) and GbpC also mediate cathode-directed signaling via cGMP, whereas the N-terminal domain of sGC mediates anode-directed signaling in conjunction with both the inhibition of PI3Ks and cGMP production. These observations provide an identification of the genes required for directional switching in electrotaxis and suggest that a parallel processing of electric signals, in which multiple-signaling pathways act to bias cell movement toward the cathode or anode, is used to determine the direction of migration.
机译:已经在各种细胞类型中发现了响应于细胞外指导信号而在细胞运动中的吸引迁移和排斥迁移之间切换,并且这是在细胞和发育过程中易位的重要细胞功能。在这里我们表明,通过遗传调节鸟苷酸环化酶(GCase)和环状鸟苷单磷酸(cGMP)结合蛋白C(GbpC)与抑制磷脂酰肌醇-3的结合,可以逆转Dictyostelium细胞电迁移过程中的优先迁移方向。 -OH激酶(PI3Ks)。 PI3K依赖的路径参与直流电场下的阴极定向迁移。可溶性GCase(sGC)和GbpC的催化结构域还通过cGMP介导阴极定向的信号传导,而sGC的N端结构域在抑制PI3K和cGMP产生的同时介导阳极定向的信号传导。这些观察结果鉴定了电方向定向转换所需的基因,并建议使用电信号的并行处理来确定迁移方向,在该信号中,多个信号通路起作用以使细胞向阴极或阳极移动。

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