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The Group Migration of Dictyostelium Cells Is Regulated by Extracellular Chemoattractant Degradation

机译:Dictyostelium细胞的组迁移受到细胞外趋化因子降解的调节。

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Starvation of Dictyostelium induces a developmental program in which cells form an aggregate that eventually differentiates into a multicellular structure. The aggregate formation is mediated by directional migration of individual cells that quickly transition to group migration in which cells align in a head-to-tail manner to form streams. Cyclic AMP acts as a chemoattractant and its production, secretion, and degradation are highly regulated. A key protein is the extracellular phosphodiesterase PdsA. In this study we examine the role and localization of PdsA during chemotaxis and streaming. We find that pdsA ? cells respond chemotactically to a narrower range of chemoattractant concentrations compared with wild-type (WT) cells. Moreover, unlike WT cells, pdsA ? cells do not form streams at low cell densities and form unusual thick and transient streams at high cell densities. We find that the intracellular pool of PdsA is localized to the endoplasmic reticulum, which may provide a compartment for storage and secretion of PdsA. Because we find that cAMP synthesis is normal in cells lacking PdsA, we conclude that signal degradation regulates the external cAMP gradient field generation and that the group migration behavior of these cells is compromised even though their signaling machinery is intact.
机译:Dictyostelium的饥饿诱导了一个发育程序,在该程序中,细胞形成了聚集体,该聚集体最终分化为多细胞结构。聚集体的形成是由单个细胞的定向迁移介导的,单个细胞的定向迁移迅速过渡到群体迁移,其中细胞以头对尾的方式排列以形成流。环状AMP用作化学引诱剂,其产生,分泌和降解受到严格控制。关键蛋白是细胞外磷酸二酯酶PdsA。在这项研究中,我们研究了PdsA在趋化性和流化过程中的作用和定位。我们发现pdsA ?细胞与野生型(WT)细胞相比,对趋化剂浓度范围的趋化反应较小。此外,与WT细胞不同,pdsA ?细胞在低细胞密度下不会形成流,而在高细胞密度下不会形成异常的稠密和瞬时流。我们发现,PdsA的细胞内池定位于内质网,这可能为PdsA的存储和分泌提供一个区室。因为我们发现缺少PdsA的细胞中cAMP合成是正常的,所以我们得出结论,信号降解会调节外部cAMP梯度场的产生,并且即使这些细胞的信号传导机制完好无损,它们的群体迁移行为也会受到损害。

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