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SpHnf6,一种在海胆胚胎发育中执行多种功能的转录因子。

SpHnf6, a transcription factor that executes multiple functions in sea urchin embryogenesis.

作者信息

Otim Ochan, Amore Gabriele, Minokawa Takuya, McClay David R, Davidson Eric H

机构信息

Division of Biology 156-29, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Dev Biol. 2004 Sep 15;273(2):226-43. doi: 10.1016/j.ydbio.2004.05.033.

Abstract

The Strongylocentrotus purpuratus hnf6 (Sphnf6) gene encodes a new member of the ONECUT family of transcription factors. The expression of hnf6 in the developing embryo is triphasic, and loss-of-function analysis shows that the Hnf6 protein is a transcription factor that has multiple distinct roles in sea urchin development. hnf6 is expressed maternally, and before gastrulation its transcripts are distributed globally. Early in development, its expression is required for the activation of PMC differentiation genes such as sm50, pm27, and msp130, but not for the activation of any known PMC regulatory genes, for example, alx, ets1, pmar1, or tbrain. Micromere transplantation experiments show that the gene is not involved in early micromere signaling. Early hnf6 expression is also required for expression of the mesodermal regulator gatac. The second known role of hnf6 is its participation after gastrulation in the oral ectoderm gene regulatory network (GRN), in which its expression is essential for the maintenance of the state of oral ectoderm specification. The third role is in the neurogenic ciliated band, which is foreshadowed exactly by a trapezoidal band of hnf6 expression at the border of the oral ectoderm and where it continues to be expressed through the end of embryogenesis. Neither oral ectoderm regulatory functions nor ciliated band formation occur normally in the absence of hnf6 expression.

摘要

紫球海胆(Strongylocentrotus purpuratus)的hnf6(Sphnf6)基因编码转录因子ONECUT家族的一个新成员。hnf6在发育胚胎中的表达呈三相性,功能丧失分析表明,Hnf6蛋白是一种转录因子,在海胆发育中具有多种不同作用。hnf6由母体表达,在原肠胚形成之前,其转录本在全身分布。在发育早期,其表达是激活如sm50、pm27和msp130等初级间充质细胞(PMC)分化基因所必需的,但不是激活任何已知的PMC调控基因所必需的,例如alx、ets1、pmar1或tbrain。微小细胞移植实验表明,该基因不参与早期微小细胞信号传导。早期hnf6表达对于中胚层调节因子gatac的表达也是必需的。hnf6的第二个已知作用是在原肠胚形成后参与口外胚层基因调控网络(GRN),其中其表达对于维持口外胚层特化状态至关重要。第三个作用是在神经源纤毛带中,这正好由口外胚层边界处hnf6表达的梯形带预示,并且在胚胎发育结束前它在该区域持续表达。如果没有hnf6表达,口外胚层调节功能和纤毛带形成都不能正常发生。

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