signature=f035ff1a88ed05ed283397f612ecfe86,A functionally conserved member of the FTZ-F1 nuclear rec...

本文介绍了首次在扁形动物Schistosoma mansoni中鉴定到的FTZ-F1核受体,它是核受体亚家族5成员NR5B1。该受体具有高度保守的DNA结合域和低保守的配体结合域,但其功能关键区域如配体域签名序列和激活功能2-激活域保持完美一致。研究发现SmFTZ-F1基因具有复杂的结构,由10个外显子组成,全长18.4kb。转录本分析显示存在两种主要形式,编码相同的蛋白质。SmFTZ-F1 mRNA在所有生活阶段均有表达,尤其在幼虫阶段表达量高。蛋白质表达模式则显示在 miracidia 中低,在成年雄虫中高。SmFTZ-F1能与哺乳动物SF-1的响应元件结合,并具有类似的转录激活能力,显示出功能上的保守性,暗示FTZ-F1核受体家族在动物界的生物学角色是保守的。

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摘要:

The fushi tarazu factor 1 (FTZ-F1) nuclear receptor subfamily comprises orphan receptors with crucial roles in development and sexual differentiation in vertebrates and invertebrates. We describe the structure and functional properties of an FTZ-F1 from the platyhelminth parasite of humans, Schistosoma mansoni , the first receptor from this family to be characterized in a Lophotrochozoan. It contains a well conserved DNA-binding domain (5563% identity to other family members) and a poorly conserved ligand-binding domain (20% identity to that of zebrafish FF1a). However, both the ligand domain signature sequence and the activation function 2-activation domain (AF2-AD) are perfectly conserved. Phylogenetic analysis confirmed that SmFTZ-F1 is a member of nuclear receptor subfamily 5, but that it clustered with the Drosophila receptor DHR39 and has consequently been named NR5B1. The gene showed a complex structure with 10 exons and an overall size of 18.4 kb. Two major transcripts were detected, involving alternative promoter usage and splicing of the two 5' exons, but which encoded identical proteins. SmFTZ-F1 mRNA is expressed at all life-cycle stages with the highest amounts in the larval forms (miracidia, sporocysts and cercariae). However, expression of the protein showed a different pattern; low in miracidia and higher in adult male worms. The protein bound the same monomeric response element as mammalian SF-1 (SF-1 response element, SFRE) and competition experiments with mutant SFREs showed that its specificity was identical. Moreover, SmFTZ-F1 transactivated reporter gene transcription from SFRE similarly to SF-1. This functional conservation argues for a conserved biological role of the FTZ-F1 nuclear receptor family throughout the metazoa.

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