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为筛选而设计的NEMO构建体的结构揭示了抑制的新决定因素。

The structure of a NEMO construct engineered for screening reveals novel determinants of inhibition.

作者信息

Kennedy Amy E, Barczewski Adam H, Arnoldy Christina R, Pennington J Pepper, Tiernan Kelly A, Hidalgo M Beatriz, Reilly Caroline C, Wongsri Tanyawan, Ragusa Michael J, Grigoryan Gevorg, Mierke Dale F, Pellegrini Maria

机构信息

Department of Chemistry, Dartmouth College, Hanover, NH 03755, USA.

Department of Computer Science, Dartmouth College, Hanover, NH 03755, USA.

出版信息

Structure. 2025 Apr 3;33(4):691-704.e6. doi: 10.1016/j.str.2025.01.010. Epub 2025 Feb 4.

Abstract

NEMO is an essential component in the activation of the canonical nuclear factor κB (NF-κB) pathway and exerts its function by recruiting the IκB kinases (IKK) to the IKK complex. Inhibition of the NEMO/IKKs interaction is an attractive therapeutic paradigm for diseases related to NF-κB mis-regulation, but a difficult endeavor because of the extensive protein-protein interface. Here we report the design and characterization of novel engineered constructs of the IKK-binding domain of NEMO, programmed to render this difficult protein domain amenable to NMR measurements and crystallization, while preserving its biological function. ZipNEMO binds IKKβ with nanomolar affinity, is amenable to heteronuclear nuclear magnetic resonance (NMR) techniques and structure determination by X-ray crystallography. We show that NMR spectra of zipNEMO allow to detect inhibitor binding in solution and resonance assignment. The crystal structure of zipNEMO reveals a novel ligand binding motif and the adaptability of the binding pocket and inspired the design of new peptide inhibitors.

摘要

NEMO是经典核因子κB(NF-κB)信号通路激活过程中的一个关键组成部分,它通过将IκB激酶(IKK)招募到IKK复合物中来发挥其功能。抑制NEMO与IKK的相互作用是治疗与NF-κB失调相关疾病的一种颇具吸引力的治疗模式,但由于广泛的蛋白质-蛋白质界面,这是一项艰巨的任务。在此,我们报道了NEMO的IKK结合结构域新型工程构建体的设计与表征,该构建体经过设计,使得这个难以处理的蛋白质结构域适合进行核磁共振测量和结晶,同时保留其生物学功能。ZipNEMO以纳摩尔亲和力结合IKKβ,适用于异核核磁共振(NMR)技术以及通过X射线晶体学进行结构测定。我们表明,zipNEMO的NMR光谱能够检测溶液中的抑制剂结合情况并进行共振归属。zipNEMO的晶体结构揭示了一种新型配体结合基序以及结合口袋的适应性,并启发了新型肽抑制剂的设计。

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