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iPLAβ的结构揭示了二聚体活性位点,并提示了调节和定位机制。

The structure of iPLAβ reveals dimeric active sites and suggests mechanisms of regulation and localization.

作者信息

Malley Konstantin R, Koroleva Olga, Miller Ian, Sanishvili Ruslan, Jenkins Christopher M, Gross Richard W, Korolev Sergey

机构信息

Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis, MO, 63104, USA.

GM/CA@APS, Advanced Photon Source, Argonne National Laboratory, Argonne, IL, 60439, USA.

出版信息

Nat Commun. 2018 Feb 22;9(1):765. doi: 10.1038/s41467-018-03193-0.

Abstract

Calcium-independent phospholipase Aβ (iPLAβ) regulates important physiological processes including inflammation, calcium homeostasis and apoptosis. It is genetically linked to neurodegenerative disorders including Parkinson's disease. Despite its known enzymatic activity, the mechanisms underlying iPLAβ-induced pathologic phenotypes remain poorly understood. Here, we present a crystal structure of iPLAβ that significantly revises existing mechanistic models. The catalytic domains form a tight dimer. They are surrounded by ankyrin repeat domains that adopt an outwardly flared orientation, poised to interact with membrane proteins. The closely integrated active sites are positioned for cooperative activation and internal transacylation. The structure and additional solution studies suggest that both catalytic domains can be bound and allosterically inhibited by a single calmodulin. These features suggest mechanisms of iPLAβ cellular localization and activity regulation, providing a basis for inhibitor development. Furthermore, the structure provides a framework to investigate the role of neurodegenerative mutations and the function of iPLAβ in the brain.

摘要

非钙依赖性磷脂酶Aβ(iPLAβ)调节包括炎症、钙稳态和细胞凋亡在内的重要生理过程。它在基因上与包括帕金森病在内的神经退行性疾病相关。尽管已知其酶活性,但iPLAβ诱导病理表型的潜在机制仍知之甚少。在此,我们展示了iPLAβ的晶体结构,该结构显著修正了现有的机制模型。催化结构域形成紧密的二聚体。它们被锚蛋白重复结构域包围,这些结构域呈向外扩张的方向,准备与膜蛋白相互作用。紧密整合的活性位点定位用于协同激活和内部转酰基作用。该结构和其他溶液研究表明,两个催化结构域都可以被单个钙调蛋白结合并变构抑制。这些特征提示了iPLAβ细胞定位和活性调节的机制,为抑制剂开发提供了基础。此外,该结构为研究神经退行性突变的作用以及iPLAβ在大脑中的功能提供了框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/157b/5823874/0dfc0bde8b9d/41467_2018_3193_Fig1_HTML.jpg

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