Alam Manzar, Hasan Gulam Mustafa, Hassan Md Imtaiyaz
Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, New Delhi 110025, India.
Department of Biochemistry, College of Medicine, Prince Sattam Bin Abdulaziz University, PO Box 173, Al-Kharj 11942, Saudi Arabia.
Int J Biol Macromol. 2021 Jul 31;183:2364-2375. doi: 10.1016/j.ijbiomac.2021.06.022. Epub 2021 Jun 7.
TANK-binding kinase 1 (TBK1) regulates various biological processes including, NF-κB signaling, immune response, autophagy, cell division, Ras-mediated oncogenesis, and AKT pro-survival signaling. Enhanced TBK1 activity is associated with autoimmune diseases and cancer, suggesting its role in therapeutic targeting of interferonopathies. In addition, dysregulation of TBK1 activity promotes several inflammatory disorders and oncogenesis. Structural and biochemical study reports provide the molecular process of TBK1 activation and recap the substrate selection about TBK1. This review summarizes recent findings on the molecular mechanisms by which TBK1 is involved in cancer signaling. The IKK-ε and TBK1 are together associated with inflammatory diseases by inducing type I IFNs. Furthermore, TBK1 signaling regulates radiation-induced epithelial-mesenchymal transition by controlling phosphorylation of GSK-3β and expression of Zinc finger E-box-binding homeobox 1, suggesting, TBK1 could be targeted for radiotherapy-induced metastasis therapy. Despite a considerable increase in the list of TBK1 inhibitors, only a few has potential to control cancer. Among them, a compound BX795 is considered a potent and selective inhibitor of TBK1. We discussed the therapeutic potential of small-molecule inhibitors of TBK1, particularly those with high selectivity, which will enable further exploration in the therapeutic management of cancer and inflammatory diseases.
TANK结合激酶1(TBK1)调节多种生物学过程,包括核因子κB(NF-κB)信号传导、免疫反应、自噬、细胞分裂、Ras介导的肿瘤发生以及AKT促生存信号传导。TBK1活性增强与自身免疫性疾病和癌症相关,提示其在干扰素病治疗靶点中的作用。此外,TBK1活性失调会促进多种炎症性疾病和肿瘤发生。结构和生化研究报告提供了TBK1激活的分子过程,并概述了关于TBK1的底物选择。本综述总结了TBK1参与癌症信号传导的分子机制的最新发现。IKK-ε和TBK1通过诱导I型干扰素共同与炎症性疾病相关。此外,TBK1信号传导通过控制糖原合酶激酶3β(GSK-3β)的磷酸化和锌指E盒结合同源框1(ZEB1)的表达来调节辐射诱导的上皮-间质转化,提示TBK1可作为放射治疗诱导转移治疗的靶点。尽管TBK1抑制剂的种类显著增加,但只有少数具有控制癌症的潜力。其中,化合物BX795被认为是一种有效的TBK1选择性抑制剂。我们讨论了TBK1小分子抑制剂的治疗潜力,特别是那些具有高选择性的抑制剂,这将有助于在癌症和炎症性疾病的治疗管理中进行进一步探索。