一种 CK1 FRET 生物传感器显示 DDX3X 是 CK1ε 的必需激活剂。
A CK1 FRET biosensor reveals that DDX3X is an essential activator of CK1ε.
机构信息
Institute of Cell Biology, Department of Biology, University of Bern, Baltzerstrasse 4, 3012 Bern, Switzerland.
Department of General and Visceral Surgery, Ulm University Hospital, Albert-Einstein-Allee 23, 89081 Ulm, Germany.
出版信息
J Cell Sci. 2018 Jan 4;131(1):jcs207316. doi: 10.1242/jcs.207316.
Casein kinase 1 (CK1) plays central roles in various signal transduction pathways and performs many cellular activities. For many years CK1 was thought to act independently of modulatory subunits and in a constitutive manner. Recently, DEAD box RNA helicases, in particular DEAD box RNA helicase 3 X-linked (DDX3X), were found to stimulate CK1 activity In order to observe CK1 activity in living cells and to study its interaction with DDX3X, we developed a CK1-specific FRET biosensor. This tool revealed that is indeed required for full CK1 activity in living cells. Two counteracting mechanisms control the activity of these enzymes. Phosphorylation by CK1 impairs the ATPase activity of DDX3X and RNA destabilizes the DDX3X-CK1 complex. We identified possible sites of interaction between DDX3X and CK1. While mutations identified in the genes of human medulloblastoma patients can enhance CK1 activity in living cells, the mechanism of CK1 activation by DDX3X points to a possible therapeutic approach in CK1-related diseases such as those caused by tumors driven by aberrant Wnt/β-catenin and Sonic hedgehog (SHH) activation. Indeed, CK1 peptides can reduce CK1 activity.
酪蛋白激酶 1(CK1)在各种信号转导途径中发挥核心作用,并执行许多细胞活动。多年来,CK1 被认为独立于调节亚基起作用,并以组成性方式起作用。最近,DEAD 盒 RNA 解旋酶,特别是 X 连锁 DEAD 盒 RNA 解旋酶 3(DDX3X),被发现可刺激 CK1 活性。为了观察活细胞中的 CK1 活性并研究其与 DDX3X 的相互作用,我们开发了一种 CK1 特异性 FRET 生物传感器。该工具表明, 在活细胞中确实需要完全 CK1 活性。两种拮抗机制控制这些酶的活性。CK1 的磷酸化会损害 DDX3X 的 ATP 酶活性,而 RNA 会使 DDX3X-CK1 复合物不稳定。我们确定了 DDX3X 和 CK1 之间可能的相互作用位点。虽然在人类成神经管细胞瘤患者的 基因中发现的突变可以增强活细胞中的 CK1 活性,但 DDX3X 对 CK1 的激活机制表明,在 CK1 相关疾病(如由异常 Wnt/β-catenin 和 Sonic hedgehog (SHH) 激活驱动的肿瘤引起的疾病)中,这可能是一种治疗方法。事实上,CK1 肽可以降低 CK1 活性。
相似文献
J Cell Sci. 2018-1-4
Biomolecules. 2024-7-6
Cell Res. 2013-4-9
引用本文的文献
Cancers (Basel). 2024-7-2
Genome Res. 2024-7-23
Cancers (Basel). 2024-3-12
Nat Rev Mol Cell Biol. 2023-10
Front Cell Dev Biol. 2022-10-25
Cancers (Basel). 2022-3-5
Sensors (Basel). 2020-10-22
本文引用的文献
Mol Cancer. 2014-10-11
Front Oncol. 2014-5-19