首页> 外文期刊>Differentiation: The Journal of the International Society of Differentiation >AmpA protein functions by different mechanisms to influence early cell type specification and to modulate cell adhesion and actin polymerization in Dictyostelium discoideum
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AmpA protein functions by different mechanisms to influence early cell type specification and to modulate cell adhesion and actin polymerization in Dictyostelium discoideum

机译:AmpA蛋白通过不同的机制发挥作用,影响盘基网柄菌的早期细胞类型规范并调节细胞粘附和肌动蛋白聚合

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The Dictyostelium discoideum ampA gene encodes a multifunctional regulator protein that modulates cell-cell and cell-substrate adhesions and actin polymerization during growth and is necessary for correct cell type specification and patterning during development. Insertional inactivation of the ampA gene results in defects that define two distinct roles for the ampA gene during development. AmpA is necessary in a non-cell autonomous manner to prevent premature expression of a prespore gene marker. It is also necessary in a cell autonomous manner for the anterior like cells, which express the ampA gene, to migrate to the upper cup during culmination. It is also necessary to prevent excessive cell-cell agglutination when cells are developed in a submerged suspension culture. Here, we demonstrate that a supernatant source of AmpA protein, added extracellularly, can prevent the premature mis-expression of the prespore marker. Synthetic oligopeptides are used to identify the domain of the AmpA protein that is important for preventing cells from mis-expressing the prespore gene. We further demonstrate that a factor capable of inducing additional cells to express the prespore gene marker accumulates extracellularly in the absence of AmpA protein. While the secreted AmpA acts extracellularly to suppress prespore gene expression, the effects of AmpA on cell agglutination and on actin polymerization in growing cells are not due to an extracellular role of secreted AmpA protein. Rather, these effects appear to reflect a distinct cell autonomous role of the ampA gene. Finally, we show that secretion of AmpA protein is brought about by elevating the levels of expression of ampA so that the protein accumulates to an excessive level.
机译:Dictyostelium discoideum ampA基因编码多功能调节蛋白,该蛋白在生长过程中调节细胞-细胞和细胞-基质的粘附以及肌动蛋白的聚合,并且对于发育过程中正确的细胞类型规格和构图是必需的。 ampA基因的插入失活导致缺陷,这些缺陷定义了在发育过程中ampA基因的两个不同作用。 AmpA是非细胞自主方式所必需的,以防止孢子基因标记过早表达。还需要以细胞自主的方式使表达ampA基因的前部样细胞在顶峰期间迁移到上杯。当在浸没悬浮培养物中培养细胞时,还必须防止过度的细胞凝集。在这里,我们证明,细胞外添加的AmpA蛋白的上清液源可以防止孢子标记过早表达。合成的寡肽用于鉴定AmpA蛋白的结构域,该结构域对于防止细胞错误表达孢子前基因很重要。我们进一步证明,在没有AmpA蛋白的情况下,能够诱导其他细胞表达芽孢前基因标记的因子会在细胞外累积。尽管分泌的AmpA在细胞外发挥作用来抑制孢子前基因的表达,但AmpA对生长中细胞的细胞凝集和肌动蛋白聚合的影响并不是由于分泌的AmpA蛋白在细胞外的作用。而是,这些作用似乎反映了ampA基因的独特细胞自主作用。最后,我们表明,通过提高ampA的表达水平使AmpA蛋白的分泌得以积累,从而使该蛋白积累到过量的水平。

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