Kawajiri Kaname, Ikuta Togo, Suzuki Taiga, Kusaka Masatomo, Muramatsu Masami, Fujieda Kenji, Tachibana Masayoshi, Morohashi Ken-Ichirou
Department of Developmental Biology, National Institute for Basic Biology, Myodaiji-cho, Okazaki 444-8585, Japan.
Mol Endocrinol. 2003 Jun;17(6):994-1004. doi: 10.1210/me.2002-0360. Epub 2003 Feb 27.
Dosage-sensitive sex reversal-adrenal hypoplasia congenita critical region on the X chromosome, gene 1 (Dax-1, NR0B1) is an orphan nuclear receptor that represses transcription by Ad4 binding protein/steroidogenic factor 1 (Ad4BP/SF-1, NR5A1). Observations on human diseases and the phenotypes of mice, in which the corresponding genes have been disrupted, have elucidated essential roles of these two nuclear receptors in differentiation of steroidogenic tissues. However, little is known about how the functions of these factors are regulated. Here we have examined their subcellular localization and have clarified the molecular mechanisms regulating subcellular localization of Dax-1. Prompted by the finding that nuclear localization of Dax-1 correlates with the presence of Ad4BP/SF-1 in the early stages of pituitary development, we have tested the possibility that interaction between the two factors is essential for the nuclear localization of Dax-1. In vitro studies with cultured cells demonstrated that an interaction involving the LXXLL motifs in the N-terminal repeat region of Dax-1 plays a key role in its subcellular localization. In addition, we found that a mutant form of DAX-1 (L466R), from a patient with adrenal hypoplasia congenita, was defective in nuclear localization in spite of having an intact N terminus. Taken together, the results reveal that the subcellular localization of Dax-1 is influenced by the presence of Ad4BP/SF-1, and that two regions of Dax-1 have important roles for this process.
X染色体上剂量敏感型性反转-先天性肾上腺发育不全关键区域基因1(Dax-1,NR0B1)是一种孤儿核受体,它通过与Ad4结合蛋白/类固醇生成因子1(Ad4BP/SF-1,NR5A1)相互作用来抑制转录。对人类疾病以及相应基因被破坏的小鼠表型的观察,阐明了这两种核受体在类固醇生成组织分化中的重要作用。然而,对于这些因子的功能是如何被调控的,我们却知之甚少。在这里,我们研究了它们的亚细胞定位,并阐明了调控Dax-1亚细胞定位的分子机制。鉴于发现在垂体发育早期Dax-1的核定位与Ad4BP/SF-1的存在相关,我们测试了这两种因子之间的相互作用对于Dax-1核定位是否至关重要。对培养细胞的体外研究表明,Dax-1 N端重复区域中包含LXXLL基序的相互作用在其亚细胞定位中起关键作用。此外,我们发现一名先天性肾上腺发育不全患者的DAX-1突变体形式(L466R)尽管N端完整,但在核定位方面存在缺陷。综上所述,这些结果表明Dax-1的亚细胞定位受Ad4BP/SF-1存在的影响,并且Dax-1的两个区域在这一过程中发挥重要作用。