Acosta-Alvear Diego, Zhou Yiming, Blais Alexandre, Tsikitis Mary, Lents Nathan H, Arias Carolina, Lennon Christen J, Kluger Yuval, Dynlacht Brian David
New York University School of Medicine, New York, NY 10016, USA.
Mol Cell. 2007 Jul 6;27(1):53-66. doi: 10.1016/j.molcel.2007.06.011.
Using genome-wide approaches, we have elucidated the regulatory circuitry governed by the XBP1 transcription factor, a key effector of the mammalian unfolded protein response (UPR), in skeletal muscle and secretory cells. We identified a core group of genes involved in constitutive maintenance of ER function in all cell types and tissue- and condition-specific targets. In addition, we identified a cadre of unexpected targets that link XBP1 to neurodegenerative and myodegenerative diseases, as well as to DNA damage and repair pathways. Remarkably, we found that XBP1 regulates functionally distinct targets through different sequence motifs. Further, we identified Mist1, a critical regulator of differentiation, as an important target of XBP1, providing an explanation for developmental defects associated with XBP1 loss of function. Our results provide a detailed picture of the regulatory roadmap governed by XBP1 in distinct cell types as well as insight into unexplored functions of XBP1.
我们运用全基因组方法,阐明了在骨骼肌和分泌细胞中由XBP1转录因子所调控的信号通路,XBP1是哺乳动物未折叠蛋白反应(UPR)的关键效应因子。我们在所有细胞类型以及组织和条件特异性靶点中鉴定出了一组参与内质网功能组成性维持的核心基因。此外,我们还发现了一批意外的靶点,这些靶点将XBP1与神经退行性和肌退行性疾病以及DNA损伤和修复途径联系起来。值得注意的是,我们发现XBP1通过不同的序列基序调控功能不同的靶点。此外,我们鉴定出分化的关键调节因子Mist1是XBP1的一个重要靶点,这为与XBP1功能丧失相关的发育缺陷提供了解释。我们的研究结果详细描绘了XBP1在不同细胞类型中所调控的信号通路图谱,同时也为XBP1尚未被探索的功能提供了见解。