Schmidt Ulrike, Wochnik Gabriela M, Rosenhagen Marcus C, Young Jason C, Hartl F Ulrich, Holsboer Florian, Rein Theo
Max Planck Institute of Psychiatry, Kraepelinstrasse 10, D-80804 Munich, Germany.
J Biol Chem. 2003 Feb 14;278(7):4926-31. doi: 10.1074/jbc.M212000200. Epub 2002 Dec 12.
The co-chaperone BAG-1 is involved in the regulation of steroid hormone receptors, including the glucocorticoid receptor (GR). More recently, BAG-1 was found in the nucleus where it decreases GR transactivation. Moreover, nonspecific DNA binding of BAG-1 has been reported. We discovered that of the N-terminal part of BAG-1M, the first 8 amino acids are sufficient for DNA binding, containing a stretch of three lysines and a stretch of three arginines. Changing the spacing between these stretches had no effect on DNA binding. Surprisingly, this small, nonsequence-specific DNA binding domain was nonetheless necessary for the inhibitory function of BAG-1 for GR-dependent transcription, whereas the following serine- and threonine-rich E(2)X(4) repeat domain was not. Mutational analysis of these two domains revealed that only mutants retaining DNA binding capability were able to down-regulate GR-mediated transactivation. Intriguingly, lack of DNA binding could not be functionally rescued by BAG-1M harboring a point mutation abolishing interaction with hsp70. Thus, DNA binding and hsp70 interaction are required in cis. We propose that the nonsequence-specific DNA-binding protein BAG-1 acts at specific chromosomal loci by interacting with other proteins.
辅助伴侣蛋白BAG-1参与类固醇激素受体的调节,包括糖皮质激素受体(GR)。最近,发现BAG-1存在于细胞核中,它在细胞核中会降低GR的反式激活作用。此外,已有报道称BAG-1存在非特异性DNA结合。我们发现,在BAG-1M的N端部分,前8个氨基酸足以实现DNA结合,其中包含一段三个赖氨酸和一段三个精氨酸。改变这些片段之间的间距对DNA结合没有影响。令人惊讶的是,这个小的、非序列特异性的DNA结合结构域对于BAG-1对GR依赖性转录的抑制功能却是必需的,而随后富含丝氨酸和苏氨酸的E(2)X(4)重复结构域则不是。对这两个结构域的突变分析表明,只有保留DNA结合能力的突变体才能下调GR介导的反式激活。有趣的是,缺乏DNA结合能力不能通过携带消除与hsp70相互作用的点突变的BAG-1M在功能上得到挽救。因此,DNA结合和hsp70相互作用在顺式作用中是必需的。我们提出,非序列特异性DNA结合蛋白BAG-1通过与其他蛋白质相互作用作用于特定的染色体位点。