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短尾基因在T/T胚胎干细胞嵌合体中的细胞自主功能。

A cell autonomous function of Brachyury in T/T embryonic stem cell chimaeras.

作者信息

Rashbass P, Cooke L A, Herrmann B G, Beddington R S

机构信息

AFRC Centre for Genome Research, Edinburgh, UK.

出版信息

Nature. 1991 Sep 26;353(6342):348-51. doi: 10.1038/353348a0.

Abstract

Developmental genetics has shown that the Brachyury (T) gene has a key role in mesoderm formation during gastrulation in the mouse. Homozygous embryos have a defective allantois, degenerate or absent notochord and disrupted primitive streak and node. The neural tube is kinked and somite formation interrupted. The T gene has been cloned and is expressed during the early stages of gastrulation, being restricted to the primitive streak region, nascent mesoderm and notochord. Neither the sequence of the gene nor its expression pattern define its developmental function. To study the cell autonomy of the T mutation we have isolated and genetically characterized embryonic stem cell lines and studied their behaviour in chimaeras. T/+ embryonic stem cells form normal chimaeras, whereas T/T in equilibrium with +/+ chimaeras mimic the T/T mutant phenotype. The results indicate that the T gene acts cell autonomously in the primitive streak and notochord but may activate a signalling pathway involved in the specification of other mesodermal tissues.

摘要

发育遗传学研究表明,短尾(T)基因在小鼠原肠胚形成过程中的中胚层形成中起关键作用。纯合子胚胎的尿囊有缺陷,脊索退化或缺失,原条和节点被破坏。神经管扭结,体节形成中断。T基因已被克隆,并在原肠胚形成的早期阶段表达,仅限于原条区域、新生中胚层和脊索。该基因的序列及其表达模式均未明确其发育功能。为了研究T突变的细胞自主性,我们分离并对胚胎干细胞系进行了遗传学特征分析,并研究了它们在嵌合体中的行为。T/+胚胎干细胞形成正常的嵌合体,而与+/+嵌合体处于平衡状态的T/T嵌合体则模拟T/T突变体表型。结果表明,T基因在原条和脊索中以细胞自主方式起作用,但可能激活参与其他中胚层组织特化的信号通路。

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