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帕金森病相关 LRRK2 的类糜蛋白酶结构域内的一个基序与 FADD 相互作用,劫持外源性死亡途径。

A motif within the armadillo repeat of Parkinson's-linked LRRK2 interacts with FADD to hijack the extrinsic death pathway.

机构信息

Division of Basic Neurosciences, Biomedical Research Foundation of the Academy of Athens, Athens, Greece.

Computational Biology, Biomedical Research Foundation of the Academy of Athens, Athens, Greece.

出版信息

Sci Rep. 2018 Feb 22;8(1):3455. doi: 10.1038/s41598-018-21931-8.

Abstract

In experimental models, both in vivo and cellular, over-expression of Parkinson's linked mutant leucine-rich repeat kinase 2 (LRRK2) is sufficient to induce neuronal death. While several cell death associated proteins have been linked to LRRK2, either as protein interactors or as putative substrates, characterization of the neuronal death cascade remains elusive. In this study, we have mapped for the first time the domain within LRRK2 that mediates the interaction with FADD, thereby activating the molecular machinery of the extrinsic death pathway. Using homology modeling and molecular docking approaches, we have identified a critical motif within the N-terminal armadillo repeat region of LRRK2. Moreover, we show that co-expression of fragments of LRRK2 that contain the FADD binding motif, or deletion of this motif itself, blocks the interaction with FADD, and is neuroprotective. We further demonstrate that downstream of FADD, the mitochondrial proteins Bid and Bax are recruited to the death cascade and are necessary for neuronal death. Our work identifies multiple novel points within neuronal death signaling pathways that could potentially be targeted by candidate therapeutic strategies and highlight how the extrinsic pathway can be activated intracellularly in a pathogenic context.

摘要

在体内和细胞实验模型中,帕金森病相关突变亮氨酸重复激酶 2(LRRK2)的过度表达足以诱导神经元死亡。虽然已经有几种与 LRRK2 相关的细胞死亡相关蛋白被鉴定出来,要么作为蛋白相互作用物,要么作为潜在的底物,但神经元死亡级联的特征仍然难以捉摸。在这项研究中,我们首次绘制了 LRRK2 与 FADD 相互作用的结构域,从而激活了细胞外死亡途径的分子机制。通过同源建模和分子对接方法,我们在 LRRK2 的 N 端角蛋白重复区中鉴定出一个关键的模体。此外,我们还表明,含有 FADD 结合模体的 LRRK2 片段的共表达,或缺失该模体本身,可阻断与 FADD 的相互作用,并具有神经保护作用。我们进一步证明,在 FADD 下游,线粒体蛋白 Bid 和 Bax 被募集到死亡级联中,并且是神经元死亡所必需的。我们的工作确定了神经元死亡信号通路中的多个新的潜在靶点,这些靶点可能成为候选治疗策略的目标,并强调了在致病环境中细胞内如何激活细胞外途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e258/5823876/16f73c63d57f/41598_2018_21931_Fig1_HTML.jpg

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