荧光蛋白标签会影响相分离病毒蛋白的凝结特性。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
ACS Applied Electronic Materials Pub Date : 2024-07-01 Epub Date: 2024-05-29 DOI:10.1091/mbc.E24-01-0013
Russell J R Barkley, Jack C Crowley, Andrew J Brodrick, Warren R Zipfel, John S L Parker
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引用次数: 0

摘要

荧光蛋白(FP)标签被广泛用于可视化和表征生物分子凝聚物的特性,尽管这些标签对相分离的影响缺乏研究。在这里,我们对 µNS 的动态特性进行了表征。μNS 是一种病毒蛋白,被假定会发生相分离,也是哺乳动物正核病毒病毒工厂的主要成分。我们对 µNS 相分离的序列决定因素和成核过程很感兴趣,因此比较了 FP::µNS 和未标记蛋白质形成的凝聚物的大小和密度。我们发现液滴大小和密度的增加依赖于 FP,这表明 FP 标记可以促进 µNS 凝聚。为了进一步评估FP标签对µNS液滴形成的影响,我们将FP标签与µNS突变体融合,结果表明标签可诱导原本不凝结的蛋白质发生不同程度的相分离。通过将荧光构建体与未标记的 µNS 进行比较,我们发现 mNeonGreen 是对 µNS 凝聚干扰最小的 FP 标签。这些结果表明,FP 标记可以促进相分离,而且有些标记更适合于观察和表征生物分子凝聚物,同时将实验伪影降到最低。[媒体:见正文] [媒体:见正文] [媒体:见正文] [媒体:见正文] [媒体:见正文
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluorescent protein tags affect the condensation properties of a phase-separating viral protein.

Fluorescent protein (FP) tags are extensively used to visualize and characterize the properties of biomolecular condensates despite a lack of investigation into the effects of these tags on phase separation. Here, we characterized the dynamic properties of µNS, a viral protein hypothesized to undergo phase separation and the main component of mammalian orthoreovirus viral factories. Our interest in the sequence determinants and nucleation process of µNS phase separation led us to compare the size and density of condensates formed by FP::µNS to the untagged protein. We found an FP-dependent increase in droplet size and density, which suggests that FP tags can promote µNS condensation. To further assess the effect of FP tags on µNS droplet formation, we fused FP tags to µNS mutants to show that the tags could variably induce phase separation of otherwise noncondensing proteins. By comparing fluorescent constructs with untagged µNS, we identified mNeonGreen as the least artifactual FP tag that minimally perturbed µNS condensation. These results show that FP tags can promote phase separation and that some tags are more suitable for visualizing and characterizing biomolecular condensates with minimal experimental artifacts.

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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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