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顶尖/茶衫基因调控果蝇的细胞分化和肾脏生理学。

The tiptop/teashirt genes regulate cell differentiation and renal physiology in Drosophila.

机构信息

Department of Zoology, Downing Street, Cambridge CB2 3EJ, UK.

出版信息

Development. 2013 Mar;140(5):1100-10. doi: 10.1242/dev.088989.

Abstract

The physiological activities of organs are underpinned by an interplay between the distinct cell types they contain. However, little is known about the genetic control of patterned cell differentiation during organ development. We show that the conserved Teashirt transcription factors are decisive for the differentiation of a subset of secretory cells, stellate cells, in Drosophila melanogaster renal tubules. Teashirt controls the expression of the water channel Drip, the chloride conductance channel CLC-a and the Leukokinin receptor (LKR), all of which characterise differentiated stellate cells and are required for primary urine production and responsiveness to diuretic stimuli. Teashirt also controls a dramatic transformation in cell morphology, from cuboidal to the eponymous stellate shape, during metamorphosis. teashirt interacts with cut, which encodes a transcription factor that underlies the differentiation of the primary, principal secretory cells, establishing a reciprocal negative-feedback loop that ensures the full differentiation of both cell types. Loss of teashirt leads to ineffective urine production, failure of homeostasis and premature lethality. Stellate cell-specific expression of the teashirt paralogue tiptop, which is not normally expressed in larval or adult stellate cells, almost completely rescues teashirt loss of expression from stellate cells. We demonstrate conservation in the expression of the family of tiptop/teashirt genes in lower insects and establish conservation in the targets of Teashirt transcription factors in mouse embryonic kidney.

摘要

器官的生理活动是由其所含的不同细胞类型相互作用支撑的。然而,人们对器官发育过程中模式化细胞分化的遗传控制知之甚少。我们表明,保守的 Tea shirt 转录因子对于果蝇肾脏小管中一组分泌细胞(星状细胞)的分化是决定性的。Tea shirt 控制水通道 Drip、氯离子电导通道 CLC-a 和 Leukokinin 受体(LKR)的表达,所有这些特征都表明分化的星状细胞是分化的,并且是初级尿液产生和对利尿剂刺激的反应所必需的。Tea shirt 还控制着细胞形态的剧烈转变,从立方体形到命名的星状形状,发生在变态期间。teashirt 与 cut 相互作用,cut 编码一个转录因子,是初级主要分泌细胞分化的基础,建立了一个相互负反馈回路,确保两种细胞类型的完全分化。teashirt 的缺失导致无效的尿液产生、体内平衡失败和过早死亡。星状细胞特异性表达 teashirt 同源物 tiptop,在幼虫或成年星状细胞中通常不表达,几乎完全挽救了星状细胞中 teashirt 表达的缺失。我们证明了在较低等昆虫中 tiptop/teashirt 基因家族的表达具有保守性,并在小鼠胚胎肾中建立了 Teashirt 转录因子靶标的保守性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0b2/3583044/7200719726a5/DEV088989F1.jpg

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