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Characterization of the DNA-Binding and Dimerization Properties of the Nuclear Orphan Receptor Germ Cell Nuclear Factor

机译:核孤儿受体生殖细胞核因子的DNA结合和二聚特性的表征。

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摘要

The orphan receptor germ cell nuclear factor (GCNF) is a member of the superfamily of nuclear receptors. During development, GCNF exhibits a restricted brain-specific expression pattern, whereas GCNF expression in the adult is germ cell specific. Therefore, the receptor may participate in the regulation of neurogenesis and reproductive functions. No natural GCNF target gene has yet been identified, but recent data demonstrate specific and high-affinity binding of GCNF either to the direct repeat DNA element AGGTCAAGGTCA (DR0) or to extended half-sites, such as TCAAGGTCA. In this study, we show that murine GCNF (mGCNF) can bind as a homodimer to extended half-sites, thus describing a novel property within the nuclear receptor superfamily. Homodimeric binding to extended half-sites requires the presence of a dimerization function within the mGCNF DNA-binding domain (DBD) and a novel dimerization surface encompassing the putative helix 3 and the helix 12 region of the mGCNF ligand-binding domain (LBD). In addition, the mGCNF LBD has the potential to adopt different conformations with distinct dimerization properties. The helix 12 region of the mGCNF LBD not only regulates the switch between these dimerization conformations but also dictates the DNA-binding behavior and transcriptional properties of the different dimerization conformations. In summary, our findings describe unique DNA-binding and dimerization properties of a nuclear receptor and suggest a novel mechanism that allows mGCNF to modulate target gene activity.
机译:孤儿受体生殖细胞核因子(GCNF)是核受体超家族的成员。在发育过程中,GCNF表现出受限的脑特异性表达模式,而成年大鼠的GCNF表达是生殖细胞特异性的。因此,受体可能参与神经发生和生殖功能的调节。尚未鉴定出天然的GCNF靶基因,但最近的数据表明GCNF与直接重复DNA元件AGGTCAAGGTCA(DR0)或扩展的半位点(如TCAAGGTCA)具有特异性和高亲和力的结合。在这项研究中,我们表明,鼠类GCNF(mGCNF)可以作为同型二聚体与延伸的半位点结合,从而描述了核受体超家族中的新特性。同二聚体与延伸的半位点的结合需要在mGCNF DNA结合结构域(DBD)中存在二聚化功能,并且必须包含一个新的二聚化表面,该表面应包含mGCNF配体结合域(LBD)的推定螺旋3和螺旋12区。另外,mGCNF LBD具有采用具有不同二聚化性质的不同构象的潜力。 mGCNF LBD的螺旋12区不仅调节这些二聚体构象之间的转换,而且决定了不同二聚体构象的DNA结合行为和转录特性。总之,我们的发现描述了核受体独特的DNA结合和二聚化特性,并提出了一种新的机制,允许mGCNF调节靶基因的活性。

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