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tip基因在盘基网柄菌早期发育的平行途径中起作用。

tip genes act in parallel pathways of early Dictyostelium development.

作者信息

Stege J T, Laub M T, Loomis W F

机构信息

Department of Biology, University of California San Diego, La Jolla 92093, USA.

出版信息

Dev Genet. 1999;25(1):64-77. doi: 10.1002/(SICI)1520-6408(1999)25:1<64::AID-DVG7>3.0.CO;2-1.

Abstract

Analysis of Dictyostelium strains carrying null mutations in tipA showed a primary defect in cell sorting and the formation of tips on the developing mound. To study the process affected in tipA- mutants further, other mutants with a similar phenotype were isolated and characterized. These studies showed three new Dictyostelium genes: tipB, tipC, and tipD. All the tip mutants aggregate into larger than average mounds, which split up and form many lips on their surfaces. Furthermore, each mutant exhibits reduced or aberrant cell-sorting behavior, never makes migrating slugs, and has severely reduced fruiting body and spore production. The mRNA of each tip gene is present in vegetative cells and does not vary significantly with development. Prespore and prestalk gene expression is reduced or delayed in the tip mutants indicating cell type differentiation is dependent on the function of these genes. Developing mutant cells in chimeric mixtures with wildtype cells demonstrated that the defects in each tip mutant behave cell autonomously. The overexpression of TipA in a tipB- background and the overexpression of TipB in a tipA- background significantly improved the morphogenesis of these mutants. These were the only situations in which the expression of one tip gene could compensate for the lack of a different tip gene. Except for the tipA-/tipB- strain, double mutations in the tip genes have additive effects, causing a more severe mutant phenotype with defects earlier in development than single mutants. The tipA-/tipB- double mutant does not show additive effects and is very similar to the tipA-single mutant. Analysis of the effects of double mutations and overexpression indicates that members of this class of genes appear to act through parallel pathways of differentiation and tip formation in early Dictyostelium development. Furthermore, TipA and TipB appear to have some overlapping functions or are involved in the same pathway. The multitipped phenotype observed in all the mutants may be a general result of perturbing early developmental events such as cell type differentiation and cell type proportioning.

摘要

对携带tipA无效突变的盘基网柄菌菌株进行分析,结果显示在细胞分选以及发育丘顶端的形成方面存在主要缺陷。为了进一步研究tipA突变体中受影响的过程,分离并鉴定了其他具有相似表型的突变体。这些研究发现了三个新的盘基网柄菌基因:tipB、tipC和tipD。所有tip突变体聚集成比平均尺寸更大的丘,这些丘会分裂并在其表面形成许多唇状结构。此外,每个突变体都表现出细胞分选行为减少或异常,从不形成迁移的蛞蝓体,并且子实体和孢子产量严重降低。每个tip基因的mRNA存在于营养细胞中,并且在发育过程中没有显著变化。在tip突变体中,前孢子和前柄基因的表达减少或延迟,这表明细胞类型分化依赖于这些基因的功能。将发育中的突变细胞与野生型细胞混合形成嵌合体,结果表明每个tip突变体的缺陷是细胞自主表现的。在tipB背景下过表达TipA以及在tipA背景下过表达TipB,显著改善了这些突变体的形态发生。这是仅有的一种情况,即一个tip基因的表达可以补偿另一个不同tip基因的缺失。除了tipA-/tipB-菌株外,tip基因的双突变具有累加效应,导致比单突变体在发育早期出现更严重的突变表型,且缺陷更多。tipA-/tipB-双突变体不表现出累加效应,并且与tipA单突变体非常相似。对双突变和过表达效应的分析表明,这类基因的成员似乎在盘基网柄菌早期发育中通过平行的分化途径和顶端形成途径发挥作用。此外,TipA和TipB似乎具有一些重叠功能,或者参与相同的途径。在所有突变体中观察到的多顶端表型可能是干扰早期发育事件(如细胞类型分化和细胞类型比例)的普遍结果。

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