C9orf72 polyPR 与核孔复合体的相互作用。

IF 3.2 3区 生物学 Q2 BIOPHYSICS Biophysical journal Pub Date : 2024-10-15 Epub Date: 2024-08-30 DOI:10.1016/j.bpj.2024.08.024
Hamidreza Jafarinia, Erik Van der Giessen, Patrick R Onck
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引用次数: 0

摘要

与 ALS/FTD 相关的 C9orf72 基因可翻译成五种二肽重复蛋白(DPR),其中多脯氨酸精氨酸(PR)在细胞和动物模型中毒性最强,可导致多种细胞缺陷。有研究认为,多脯氨酸精氨酸蛋白通过几种机制破坏了核胞质转运(NCT),包括在核孔复合体(NPC)中的积聚、在核仁中的积聚以及与转运受体的直接相互作用。核孔复合体是细胞质和细胞核之间转运的关键调节器,在这些机制中发挥着核心作用。探索 polyPR 与 NPC 的相互作用为了解 polyPR 介导的 NCT 缺陷的分子细节提供了宝贵的视角。为此,我们使用粗粒度分子动力学模型研究了 polyPR 和酵母 NPC(内衬有本质异构的 FG-nucleoporins,FG-Nups)。我们的研究结果表明,polyPR 在 NPC 内没有聚集,也没有与 FG-Nups 永久结合。相反,polyPR 在 NPC 中的迁移轨迹是穿过孔隙的中央低密度区。对于较长的 polyPR,我们观察到其转运的能量障碍较高,转运通道较窄。我们的研究表明,polyPR 和 FG-Nups 在 NPC 内部主要进行立体相互作用,只有少量的特定阳离子-pi、疏水和静电相互作用,使得 polyPR 能够以大小依赖的方式克服 NPC 的熵障碍。
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C9orf72 polyPR interaction with the nuclear pore complex.

The C9orf72 gene associated with amyotrophic lateral sclerosis/frontotemporal dementia is translated to five dipeptide repeat proteins, among which poly-proline-arginine (PR) is the most toxic in cell and animal models, contributing to a variety of cellular defects. It has been proposed that polyPR disrupts nucleocytoplasmic transport (NCT) through several mechanisms including accumulation in the nuclear pore complex (NPC), accumulation in the nucleolus, and direct interactions with transport receptors. The NPC, which is the key regulator of transport between the cytoplasm and nucleus, plays a central role in these suggested mechanisms. Exploring polyPR interaction with the NPC provides valuable insight into the molecular details of polyPR-mediated NCT defects. To address this, we use coarse-grained molecular dynamics models of polyPR and the yeast NPC lined with intrinsically disordered FG-nucleoporins (FG-Nups). Our findings indicate no aggregation of polyPR within the NPC or permanent binding to FG-Nups. Instead, polyPR translocates through the NPC, following a trajectory through the central low-density region of the pore. In the case of longer polyPRs, we observe a higher energy barrier for translocation and a narrower translocation channel. Our study shows that polyPR and FG-Nups are mainly engaged in steric interactions inside the NPC with only a small contribution of specific cation-pi, hydrophobic, and electrostatic interactions, allowing polyPR to overcome the entropic barrier of the NPC in a size-dependent manner.

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来源期刊
Biophysical journal
Biophysical journal 生物-生物物理
CiteScore
6.10
自引率
5.90%
发文量
3090
审稿时长
2 months
期刊介绍: BJ publishes original articles, letters, and perspectives on important problems in modern biophysics. The papers should be written so as to be of interest to a broad community of biophysicists. BJ welcomes experimental studies that employ quantitative physical approaches for the study of biological systems, including or spanning scales from molecule to whole organism. Experimental studies of a purely descriptive or phenomenological nature, with no theoretical or mechanistic underpinning, are not appropriate for publication in BJ. Theoretical studies should offer new insights into the understanding ofexperimental results or suggest new experimentally testable hypotheses. Articles reporting significant methodological or technological advances, which have potential to open new areas of biophysical investigation, are also suitable for publication in BJ. Papers describing improvements in accuracy or speed of existing methods or extra detail within methods described previously are not suitable for BJ.
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