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在一项对通讯突变体的筛选中揭示的盘基网柄菌中的一种新型发育机制。

A novel developmental mechanism in Dictyostelium revealed in a screen for communication mutants.

作者信息

Kibler Kirsten, Nguyen Tu-Lan, Svetz Jessica, Van Driessche Nancy, Ibarra Miroslava, Thompson Christopher, Shaw Chad, Shaulsky Gad

机构信息

Graduate Program in Developmental Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Dev Biol. 2003 Jul 15;259(2):193-208. doi: 10.1016/s0012-1606(03)00204-5.

Abstract

We performed a screen for signaling genes by selecting mutant strains of Dictyostelium that fail to develop spores in a pure population but sporulate well in chimerae with wild type cells. We found 9 strains whose sporulation was induced up to 10 million-fold in chimerae. Most strains were also able to sporulate in chimerae with each other, but 2 pairs failed to do so, suggesting that the genes in each pair participate in the production of 1 signal. One of the pairs, comD and comB, is described in detail. Sequence analysis revealed that both genes encode putative membrane proteins. ComD is predicted to have 15 transmembrane domains, and ComB has a region of high similarity to the Rab family of small GTPases and 1 transmembrane domain. Similarities between the developmental regulation and cell-type specificity of the genes' expression, the terminal developmental morphology, and the expression pattern of cell-type specific markers in the mutants suggest that comD and comB participate in 1 signal production pathway. This idea is also supported by a high similarity between the global transcriptional profiles of the mutant strains. Differences between the mutant phenotypes late in development suggest that comD and comB participate in separate processes as well. comD has a cell-autonomous role in the specialization of a novel prespore cell type, whereas comB has a cell-autonomous role in prestalk A cell differentiation.

摘要

我们通过筛选盘基网柄菌的突变菌株来寻找信号基因,这些突变菌株在纯群体中无法形成孢子,但在与野生型细胞形成嵌合体时能很好地形成孢子。我们发现有9个菌株在嵌合体中的孢子形成能力提高了1000万倍。大多数菌株在彼此形成的嵌合体中也能形成孢子,但有2对菌株不能,这表明每对中的基因参与了1种信号的产生。其中一对基因comD和comB被详细描述。序列分析表明,这两个基因都编码假定的膜蛋白。预测ComD有15个跨膜结构域,ComB有一个与小GTP酶Rab家族高度相似的区域和1个跨膜结构域。这些基因在发育调控和细胞类型特异性表达、终末发育形态以及突变体中细胞类型特异性标记的表达模式之间的相似性表明,comD和comB参与了1条信号产生途径。突变菌株的整体转录谱之间的高度相似性也支持了这一观点。发育后期突变体表型的差异表明,comD和comB也参与了不同的过程。comD在一种新型前孢子细胞类型的特化中具有细胞自主作用,而comB在柄细胞A的分化中具有细胞自主作用。

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