Department of Biological Sciences, Duquesne University, Pittsburgh, Pennsylvania 15282, USA.
J Cell Biochem. 2010 Jun 1;110(3):763-71. doi: 10.1002/jcb.22589.
The tumor necrosis factor (TNF) receptor associated factor (TRAF) class of intracellular signal transducers is responsible for mediating many of the activation events initiated by TNF receptor (TNFR) and Toll-like/Interleukin-1, -17, and -18 receptor (TIR) families. Investigation of the mechanism by which TRAF6 is activated has demonstrated that two critical domains of the molecule required for activation and downstream signaling are involved in an interaction which renders the molecule inactive and structurally closed, as well as incapable of auto-ubiquitination. Contrary to its assumed role as a direct mediator of protein-protein interaction, TRAF auto-ubiquitination is a means of sustaining an open conformation active in downstream signaling. Furthermore, the inferred cis-function of TRAF auto-ubiquitination is now demonstrated to act in trans and requires both the RING-Zinc (RZ) fingers region and coiled-coil domain. We also observed that both the RZ fingers region and the MATH domain are targets for ubiquitination. Although TRAF6 ubiquitination has emerged as a hallmark of activation, trans-ubiquitination induced by two TRAF6 muteins is insufficient for NF-kappaB activation.
肿瘤坏死因子(TNF)受体相关因子(TRAF)家族是细胞内信号转导物,负责介导许多由 TNF 受体(TNFR)和 Toll 样/白细胞介素-1、-17 和 -18 受体(TIR)家族引发的激活事件。对 TRAF6 激活机制的研究表明,该分子中两个关键的激活和下游信号所必需的结构域,在一个相互作用中被认为是无活性和结构封闭的,并且不能自身泛素化。与 TRAF 自身泛素化作为直接介导蛋白-蛋白相互作用的假定作用相反,它是维持在下游信号中发挥作用的开放构象的一种方式。此外,推断出的 TRAF 自身泛素化的顺式功能现在被证明是在转导中起作用的,需要 RING-Zinc(RZ)指区域和卷曲螺旋结构域。我们还观察到,RZ 指区域和 MATH 结构域都是泛素化的靶标。尽管 TRAF6 泛素化已成为激活的标志,但两种 TRAF6 突变体的转泛素化不足以激活 NF-κB。