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热休克期间核仁中肌动蛋白结合蛋白的生物信息学分析

Bioinformatic Analysis of Actin-Binding Proteins in the Nucleolus During Heat Shock.

作者信息

Taniguchi Shinya, Torii Takeru, Goto Toshiyuki, Takeuchi Kohei, Katsumi Rine, Sumida Mako, Lee Sunmin, Sugimoto Wataru, Gessho Masaya, Itoh Katsuhiko, Hirata Hiroaki, Kawakami Junji, Miyoshi Daisuke, Kawauchi Keiko

机构信息

Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), Konan University, Kobe 650-0047, Japan.

Graduate School of Science, Technology and Innovation, Kobe University, Kobe 650-0047, Japan.

出版信息

Genes (Basel). 2024 Dec 9;15(12):1580. doi: 10.3390/genes15121580.

Abstract

BACKGROUND/OBJECTIVES: Actin plays a crucial role not only in the cytoplasm, but also in the nucleus, influencing various cellular behaviors, including cell migration and gene expression. Recent studies reveal that nuclear actin dynamics is altered by cellular stresses, such as DNA damage; however, the effect of heat shock on nuclear actin dynamics, particularly in the nucleolus, remains unclear. This study aims to elucidate the contribution of nucleolar actin to cellular responses under heat shock conditions.

METHODS

Nuclear actin dynamics in response to heat shock were investigated using nAC-GFP, a GFP-tagged actin chromobody, to visualize nuclear actin in HeLa cells. Bioinformatic analyses were also performed.

RESULTS

Heat shock induced the reversible assembly of nAC-GFP in the nucleolus, with disassembly occurring upon recovery in a heat shock protein (Hsp) 70-dependent manner. Because the nucleolus, formed via liquid-liquid phase separation (LLPS), sequesters misfolded proteins under heat shock to prevent irreversible aggregation, we hypothesized that nucleolar actin-binding proteins might also be sequestered in a similar manner. Using several databases, we identified 47 actin-binding proteins localized in the nucleolus and determined the proportion of intrinsically disordered regions (IDRs) known to promote LLPS. Our analysis revealed that many of these 47 proteins exhibited high levels of IDRs.

CONCLUSIONS

The findings from our bioinformatics analysis and further cellular studies may help elucidate new roles for actin in the heat shock response.

摘要

背景/目的:肌动蛋白不仅在细胞质中,而且在细胞核中都起着至关重要的作用,影响包括细胞迁移和基因表达在内的各种细胞行为。最近的研究表明,细胞应激(如DNA损伤)会改变核肌动蛋白的动态变化;然而,热休克对核肌动蛋白动态变化的影响,尤其是在核仁中的影响,仍不清楚。本研究旨在阐明核仁肌动蛋白在热休克条件下对细胞反应的作用。

方法

使用nAC-GFP(一种GFP标记的肌动蛋白染色单体)研究热休克反应中的核肌动蛋白动态变化,以可视化HeLa细胞中的核肌动蛋白。还进行了生物信息学分析。

结果

热休克诱导nAC-GFP在核仁中可逆组装,恢复时以热休克蛋白(Hsp)70依赖的方式发生解聚。由于通过液-液相分离(LLPS)形成的核仁在热休克时会隔离错误折叠的蛋白质以防止不可逆聚集,我们推测核仁肌动蛋白结合蛋白也可能以类似方式被隔离。使用多个数据库,我们鉴定了47种定位于核仁的肌动蛋白结合蛋白,并确定了已知促进LLPS的内在无序区域(IDR)的比例。我们的分析表明,这47种蛋白质中的许多都表现出高水平的IDR。

结论

我们的生物信息学分析和进一步的细胞研究结果可能有助于阐明肌动蛋白在热休克反应中的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5df0/11675300/21dee24999e6/genes-15-01580-g001.jpg

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