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首页> 外文期刊>Development >Identification and analysis of a gene that is essential for morphogenesis and prespore cell differentiation in Dictyostelium.
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Identification and analysis of a gene that is essential for morphogenesis and prespore cell differentiation in Dictyostelium.

机译:鉴定和分析对脉柄单胞菌的形态发生和芽孢前细胞分化至关重要的基因。

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We have identified a gene (PslA) that is expressed throughout Dictyostelium development and encodes a novel protein that is required for proper aggregation and subsequent cell-type differentiation and morphogenesis. pslA null (pslA-) cells produce large aggregation streams under conditions in which wild-type cells form discrete aggregates. Tips form along the stream, elongate to produce a finger, and eventually form a terminal structure that lacks a true sorus (spore head). More than half of the cells remain as a mass at the base of the developing fingers. The primary defect in the pslA- strain is the inability to induce prespore cell differentiation. Analyses of gene expression show a complete lack of prespore-specific gene expression and no mature spores are produced. In chimeras with wild-type cells, pslA- cells form the prestalk domain and normal, properly proportioned fruiting bodies can be produced. This indicates that pslA- cells are able to interact with wild-type cells and regulate patterning, even though pslA- cells are unable to express prespore cell-type-specific genes, do not participate in prespore cell differentiation and do not produce pslA- spores in the chimeras. While pslA- cells produce mature, vacuolated stalk cells during multicellular development, pslA- cells are unable to do so in vitro in response to exogenous DIF (a morphogen required for prestalk and stalk cell differentiation). These results indicate that pslA- cells exhibit a defect in the prestalk/stalk cell pathways under these experimental conditions. Our results suggest that PslA's primary function is to regulate prespore cell determination very early in the prespore pathway via a cell-autonomous mechanism, possibly at the time of the initial prestalk/prespore cell-fate decision. Indirect immunofluorescence of myc-tagged PslA localizes the protein to the nucleus, suggesting that PslA may function to control the prespore pathway at the level of transcription.
机译:我们已经确定了一个基因(PslA),该基因在整个网盘菌的发育过程中表达,并编码一种新型蛋白质,该蛋白质对于适当的聚集以及随后的细胞类型分化和形态发生是必需的。在野生型细胞形成离散聚集体的条件下,pslA空(pslA-)细胞会产生大量聚集流。尖端沿着溪流形成,伸长形成手指,并最终形成缺乏真正结实(孢子头)的末端结构。一半以上的细胞以团块形式残留在发育中的手指根部。 pslA-菌株的主要缺陷是不能诱导芽孢前细胞分化。基因表达的分析表明完全缺乏芽孢前特异性基因表达,并且没有产生成熟的孢子。在具有野生型细胞的嵌合体中,pslA细胞形成茎前结构域,可以产生正常比例的子实体。这表明即使pslA细胞无法表达孢子细胞类型特异性基因,不参与孢子细胞分化并且不产生pslA孢子,pslA细胞也能够与野生型细胞相互作用并调节模式。在嵌合体中。尽管pslA细胞在多细胞发育过程中会产生成熟的空泡茎细胞,但pslA细胞却无法在体外响应外源DIF(前茎和茎细胞分化所需的形态发生子)而这样做。这些结果表明,在这些实验条件下,pslA-细胞在前茎/茎细胞通路中表现出缺陷。我们的结果表明,PslA的主要功能是通过细胞自主机制(可能在最初的前柄/前孢子细胞命运决定之时)很早地在前孢子途径中调节前孢子细胞的测定。 Myc标记的PslA的间接免疫荧光将蛋白质定位于细胞核,表明PslA可能在转录水平上发挥作用来控制孢子途径。

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