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支架蛋白 NEMO 的保守核心区域对于信号诱导的构象变化和液-液相分离是必需的。

A conserved core region of the scaffold NEMO is essential for signal-induced conformational change and liquid-liquid phase separation.

机构信息

Department of Biology, Boston University, Boston, Massachusetts, USA.

Department of Chemistry, Boston University, Boston, Massachusetts, USA.

出版信息

J Biol Chem. 2023 Dec;299(12):105396. doi: 10.1016/j.jbc.2023.105396. Epub 2023 Oct 27.

Abstract

Scaffold proteins help mediate interactions between protein partners, often to optimize intracellular signaling. Herein, we use comparative, biochemical, biophysical, molecular, and cellular approaches to investigate how the scaffold protein NEMO contributes to signaling in the NF-κB pathway. Comparison of NEMO and the related protein optineurin from a variety of evolutionarily distant organisms revealed that a central region of NEMO, called the Intervening Domain (IVD), is conserved between NEMO and optineurin. Previous studies have shown that this central core region of the IVD is required for cytokine-induced activation of IκB kinase (IKK). We show that the analogous region of optineurin can functionally replace the core region of the NEMO IVD. We also show that an intact IVD is required for the formation of disulfide-bonded dimers of NEMO. Moreover, inactivating mutations in this core region abrogate the ability of NEMO to form ubiquitin-induced liquid-liquid phase separation droplets in vitro and signal-induced puncta in vivo. Thermal and chemical denaturation studies of truncated NEMO variants indicate that the IVD, while not intrinsically destabilizing, can reduce the stability of surrounding regions of NEMO due to the conflicting structural demands imparted on this region by flanking upstream and downstream domains. This conformational strain in the IVD mediates allosteric communication between the N- and C-terminal regions of NEMO. Overall, these results support a model in which the IVD of NEMO participates in signal-induced activation of the IKK/NF-κB pathway by acting as a mediator of conformational changes in NEMO.

摘要

支架蛋白有助于介导蛋白质伴侣之间的相互作用,通常是为了优化细胞内信号转导。在此,我们使用比较、生化、生物物理、分子和细胞方法来研究支架蛋白 NEMO 如何促进 NF-κB 途径中的信号转导。NEMO 和来自各种进化上遥远的生物体的相关蛋白 optineurin 的比较表明,NEMO 中的一个中央区域,称为介体域(IVD),在 NEMO 和 optineurin 之间是保守的。先前的研究表明,IVD 的这个核心中央区域是细胞因子诱导的 IκB 激酶(IKK)激活所必需的。我们表明,opitineurin 的类似区域可以在功能上替代 NEMO IVD 的核心区域。我们还表明,完整的 IVD 是 NEMO 形成二硫键结合的二聚体所必需的。此外,该核心区域中的失活突变会使 NEMO 丧失在体外形成泛素诱导的液-液相分离液滴和体内信号诱导的斑点的能力。截短的 NEMO 变体的热和化学变性研究表明,IVD 虽然本身没有不稳定,但由于其相邻的上游和下游结构域对该区域施加的结构需求相冲突,可能会降低 NEMO 周围区域的稳定性。这种 IVD 中的构象应变介导了 NEMO 的 N-和 C-末端区域之间的别构通讯。总的来说,这些结果支持了这样一种模型,即 NEMO 的 IVD 通过充当 NEMO 构象变化的介体,参与 IKK/NF-κB 途径的信号诱导激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c766/10694592/8284e4d64969/gr1.jpg

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