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在SOPH综合征方面利用AlphaFold对NBAS进行蛋白质变体-表型研究。

Protein-Variant-Phenotype Study of NBAS Using AlphaFold in the Aspect of SOPH Syndrome.

作者信息

Zhozhikov Leonid, Vasilev Filipp, Maksimova Nadezhda

机构信息

Research Laboratory of "Molecular Medicine and Human Genetics", Institute of Medicine, Ammosov North-Eastern Federal University, Yakutsk, Republic of Sakha (Yakutia), Russia.

出版信息

Proteins. 2025 Apr;93(4):871-884. doi: 10.1002/prot.26764. Epub 2024 Dec 6.

Abstract

NBAS gene variants cause phenotypically distinct and nonoverlapping conditions, SOPH syndrome and ILFS2. NBAS is a so-called "moonlighting" protein responsible for retrograde membrane trafficking and nonsense-mediated decay. However, its three-dimensional model and the nature of its possible interactions with other proteins have remained elusive. Here, we used AlphaFold to predict protein-protein interaction (PPI) sites and mapped them to NBAS pathogenic variants. We repeated in silico milestone studies of the NBAS protein to explain the multisystem phenotype of its variants, with particular emphasis on the SOPH variant (p.R1914H). We revealed the putative binding sites for the main interaction partners of NBAS and assessed the implications of these binding sites for the subdomain architecture of the NBAS protein. Using AlphaFold, we disclosed the far-reaching impact of NBAS variants on the development of each phenotypic trait in patients with NBAS-related pathologies.

摘要

NBAS基因变异会导致表型不同且不重叠的病症,即SOPH综合征和ILFS2。NBAS是一种所谓的“兼职”蛋白,负责逆向膜运输和无义介导的衰变。然而,其三维模型及其与其他蛋白质可能的相互作用性质仍不清楚。在这里,我们使用AlphaFold预测蛋白质-蛋白质相互作用(PPI)位点,并将它们映射到NBAS致病变体上。我们重复了对NBAS蛋白的计算机里程碑研究,以解释其变体的多系统表型,特别强调SOPH变体(p.R1914H)。我们揭示了NBAS主要相互作用伙伴的假定结合位点,并评估了这些结合位点对NBAS蛋白亚结构域结构的影响。使用AlphaFold,我们揭示了NBAS变体对NBAS相关病症患者每种表型特征发展的深远影响。

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