Laboratory of Structural Dynamics, Stability and Folding of Proteins, Russian Academy of Sciences, St. Petersburg 194064, Russia.
Int J Mol Sci. 2023 Dec 19;25(1):39. doi: 10.3390/ijms25010039.
In recent years, the role of liquid-liquid phase separation (LLPS) and intrinsically disordered proteins (IDPs) in cellular molecular processes has received increasing attention from researchers. One such intrinsically disordered protein is TSPYL5, considered both as a marker and a potential therapeutic target for various oncological diseases. However, the role of TSPYL5 in intracellular processes remains unknown, and there is no clarity even in its intracellular localization. In this study, we characterized the intracellular localization and exchange dynamics with intracellular contents of TSPYL5 and its parts, utilizing TSPYL5 fusion proteins with EGFP. Our findings reveal that TSPYL5 can be localized in both the cytoplasm and nucleoplasm, including the nucleolus. The nuclear (nucleolar) localization of TSPYL5 is mediated by the nuclear/nucleolar localization sequences (NLS/NoLS) identified in the N-terminal intrinsically disordered region (4-27 aa), while its cytoplasmic localization is regulated by the ordered NAP-like domain (198-382 aa). Furthermore, our results underscore the significant role of the TSPYL5 N-terminal disordered region (1-198 aa) in the exchange dynamics with the nucleoplasm and its potential ability for phase separation. Bioinformatics analysis of the TSPYL5 interactome indicates its potential function as a histone and ribosomal protein chaperone. Taken together, these findings suggest a significant contribution of liquid-liquid phase separation to the processes involving TSPYL5, providing new insights into the role of this protein in the cell's molecular life.
近年来,液-液相分离(LLPS)和无规卷曲蛋白(IDPs)在细胞分子过程中的作用引起了研究人员的广泛关注。其中一种无规卷曲蛋白是 TSPYL5,它被认为是多种肿瘤疾病的标志物和潜在治疗靶点。然而,TSPYL5 在细胞内过程中的作用尚不清楚,甚至其细胞内定位也不清楚。在这项研究中,我们利用带有 EGFP 的 TSPYL5 融合蛋白,对 TSPYL5 及其部分蛋白的细胞内定位和与细胞内物质的交换动态进行了表征。我们的研究结果表明,TSPYL5 可以定位于细胞质和核质中,包括核仁。TSPYL5 的核(核仁)定位是由其 N 端无规卷曲区(4-27 个氨基酸)中鉴定出的核/核仁定位序列(NLS/NoLS)介导的,而其细胞质定位则由有序的 NAP 样结构域(198-382 个氨基酸)调节。此外,我们的结果强调了 TSPYL5 N 端无规卷曲区(1-198 个氨基酸)在与核质交换动力学中的重要作用及其潜在的相分离能力。TSPYL5 相互作用组的生物信息学分析表明,它可能具有组蛋白和核糖体蛋白伴侣的功能。总之,这些发现表明液-液相分离对涉及 TSPYL5 的过程有重要贡献,为该蛋白在细胞分子生命中的作用提供了新的见解。