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IKK1/α激活的结构基础

Structural Basis for the Activation of IKK1/α.

作者信息

Polley Smarajit, Passos Dario Oliveira, Huang De-Bin, Mulero Maria Carmen, Mazumder Anup, Biswas Tapan, Verma Inder M, Lyumkis Dmitry, Ghosh Gourisankar

机构信息

Department of Chemistry & Biochemistry, University of California San Diego, La Jolla, CA 92093, USA; Laboratory of Genetics and Helmsley Center for Genomic Medicine, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.

Laboratory of Genetics and Helmsley Center for Genomic Medicine, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.

出版信息

Cell Rep. 2016 Nov 15;17(8):1907-1914. doi: 10.1016/j.celrep.2016.10.067.

Abstract

Distinct signaling pathways activate the NF-κB family of transcription factors. The canonical NF-κB-signaling pathway is mediated by IκB kinase 2/β (IKK2/β), while the non-canonical pathway depends on IKK1/α. The structural and biochemical bases for distinct signaling by these otherwise highly similar IKKs are unclear. We report single-particle cryoelectron microscopy (cryo-EM) and X-ray crystal structures of human IKK1 in dimeric (∼150 kDa) and hexameric (∼450 kDa) forms. The hexamer, which is the representative form in the crystal but comprises only ∼2% of the particles in solution by cryo-EM, is a trimer of IKK1 dimers. While IKK1 hexamers are not detectable in cells, the surface that supports hexamer formation is critical for IKK1-dependent cellular processing of p100 to p52, the hallmark of non-canonical NF-κB signaling. Comparison of this surface to that in IKK2 indicates significant divergence, and it suggests a fundamental role for this surface in signaling by these kinases through distinct pathways.

摘要

不同的信号通路激活转录因子NF-κB家族。经典的NF-κB信号通路由IκB激酶2/β(IKK2/β)介导,而非经典通路则依赖于IKK1/α。这些在其他方面高度相似的IKK进行不同信号传导的结构和生化基础尚不清楚。我们报告了人IKK1二聚体(约150 kDa)和六聚体(约450 kDa)形式的单颗粒冷冻电子显微镜(cryo-EM)和X射线晶体结构。六聚体是晶体中的代表性形式,但通过冷冻电镜观察,其在溶液中的颗粒仅占约2%,是IKK1二聚体的三聚体。虽然在细胞中检测不到IKK1六聚体,但支持六聚体形成的表面对于IKK1依赖的p100加工成p52至关重要,这是非经典NF-κB信号传导的标志。将该表面与IKK2中的表面进行比较表明存在显著差异,这表明该表面在这些激酶通过不同途径进行信号传导中具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00dc/5508515/108985463252/nihms874454f1.jpg

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