Gwóźdź Tomasz, Dutko-Gwóźdź Joanna, Nieva Claudia, Betańska Katarzyna, Orłowski Marek, Kowalska Agnieszka, Dobrucki Jurek, Spindler-Barth Margarethe, Spindler Klaus-Dieter, Ozyhar Andrzej
Department of Biochemistry, Faculty of Chemistry, Wrocław University of Technology, Wybrzeze Wyspiańskiego 27, 50-370 Wrocław, Poland.
Cell Signal. 2007 Mar;19(3):490-503. doi: 10.1016/j.cellsig.2006.07.022. Epub 2006 Aug 22.
Ecdysteroids coordinate development, reproduction and other essential biological processes in insects and other arthropods through the receptor which is a heterodimer of two members of the nuclear receptors superfamily, the ecdysteroid receptor (EcR) and the Ultraspiracle (Usp). Although the transcriptionally active EcR/Usp heterocomplex is believed to be the only functional form of the receptor, there are data indicating that EcR may be involved in the mediation of the non-genomic effects outside of the nucleus. Since the nucleocytoplasmic shuttling could be a key element determining participation of the single nuclear receptor molecule both in the genomic and non-genomic functions we have analyzed nuclear import and export properties of the EcR and Usp from Drosophila melanogaster. We show for the first time that both receptors exhibit differential distribution of the nuclear localization and nuclear export signals (NLSs and NESs). In particular, the Usp which exhibits exclusively nuclear localization in all cell types analyzed, contains apparently only NLS activity within the DNA-binding domain. In contrast, the three known EcR isoforms (A, B1 and B2) are mosaics of elements which can potentially mediate their nucleocytoplasmic shuttling. We have found two active NESs in ligand binding domain and NLS activity within the DNA-binding domain of all isoforms. Simultaneously we demonstrate that B1 and A isoforms possess an additional NLS activity localized in AB regions. We speculate that this characteristic, along with the previously reported structural pliability of the EcR molecule, allows the single receptor to evoke many different genomic as well as non-genomic ecdysteroid-dependent responses.
蜕皮甾类通过一种受体来协调昆虫和其他节肢动物的发育、繁殖及其他重要生物学过程,该受体是核受体超家族两个成员——蜕皮甾类受体(EcR)和超气门蛋白(Usp)的异二聚体。尽管转录活性的EcR/Usp异源复合物被认为是该受体唯一的功能形式,但有数据表明EcR可能参与细胞核外非基因组效应的介导。由于核质穿梭可能是决定单个核受体分子参与基因组和非基因组功能的关键因素,我们分析了黑腹果蝇EcR和Usp的核输入和输出特性。我们首次表明,两种受体均表现出核定位信号和核输出信号(NLSs和NESs)的差异分布。特别是,在所分析的所有细胞类型中均仅表现出核定位的Usp,在其DNA结合域内显然仅含有NLS活性。相比之下,三种已知的EcR亚型(A、B1和B2)是可能介导其核质穿梭的元件的镶嵌体。我们在所有亚型的配体结合域中发现了两个活性NESs,在DNA结合域中发现了NLS活性。同时,我们证明B1和A亚型在AB区域具有额外的NLS活性。我们推测,这一特性,连同先前报道的EcR分子的结构柔韧性,使得单个受体能够引发许多不同的基因组以及非基因组的蜕皮甾类依赖性反应。