细胞骨架调节剂Zyxin刺激非洲爪蟾胚胎细胞YAP的核易位

IF 1.7 4区 化学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
E. A. Parshina, E. E. Orlov, E. E. Voronezhskaya, N. Yu. Martynova, A. G. Zaraisky
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引用次数: 0

摘要

目的:研究非洲爪蟾胚胎发育过程中zyxin对yes相关蛋白(YAP)信号通路的影响。Zyxin是一种机械敏感的细胞骨架蛋白,可调节细胞对机械张力的反应,在肌动蛋白动力学调节中起关键作用。它在改变机械环境下向细胞核转移的能力使得它对控制细胞形态发生和组织结构所必需的基因表达至关重要。了解zyxin与信号通路的相互作用,特别是与YAP信号通路的相互作用,在包括癌症在内的各种病理条件下具有重要意义。方法:为了研究zyxin在YAP信号传导中的调控作用,我们采用形态学寡核苷酸微注射法制备了zyxin表达降低的胚胎模型,并采用合成mRNA注射法实现了zyxin的过表达。Western blot检测胚胎不同发育阶段的总YAP和磷酸化YAP (pYAP)水平。免疫组织化学分析用于评估YAP的亚细胞分布,特别是核与细胞质的比例。荧光素酶报告基因测定定量YAP转录活性对酶合蛋白表达水平改变的响应。结果和讨论:在对照胚胎中,尽管磷酸化的YAP水平增加,但总的YAP水平在整个发育阶段保持不变,表明途径活性降低。Zyxin敲低导致YAP水平在发育早期降低,而Zyxin过表达增强了YAP的核定位,提示Zyxin促进了YAP核易位。荧光素酶分析显示,在过表达zyxin的胚胎中,YAP转录活性增加,支持了zyxin通过机械张力调节增强YAP信号传导的假设。结论:这些结果表明,在胚胎发育过程中,zyxin在调节YAP信号通路中发挥了重要作用。zyxin-YAP相互作用对于细胞信号传导和形态发生至关重要,揭示了与细胞增殖失调相关的疾病(包括癌症)的潜在治疗靶点。未来的研究将阐明zyxin与其他YAP信号通路组分相互作用的机制基础及其对细胞动力学和发育的影响,促进我们对细胞力学生物学的理解,对再生医学和治疗干预具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cytoskeletal Regulator Zyxin Stimulates Nuclear Translocation of YAP in Xenopus laevis Embryonic Cells

Cytoskeletal Regulator Zyxin Stimulates Nuclear Translocation of YAP in Xenopus laevis Embryonic Cells

Objective: This study investigates the impact of zyxin on Yes-associated protein (YAP) signaling during embryonic development of the African clawed frog, Xenopus laevis. Zyxin, a mechanosensitive cytoskeletal protein, modulates cellular responses to mechanical tension and plays a pivotal role in actin dynamics regulation. Its ability to translocate to the nucleus in response to altered mechanical environments makes it critical for controlling gene expression essential for cellular morphogenesis and tissue architecture. Understanding zyxinʼs interactions with signaling pathways, particularly YAP signaling, is crucial given its implications in various pathological conditions, including cancer. Methods: To investigate zyxinʼs regulatory role in YAP signaling, we employed morpholino oligonucleotide microinjection to generate embryonic models with reduced zyxin expression and synthetic mRNA injection to achieve zyxin overexpression. Western blot analysis was performed to measure total YAP and phosphorylated YAP (pYAP) levels in embryos at various developmental stages. Immunohistochemical analysis was used to assess YAP subcellular distribution, specifically the nuclear-to-cytoplasmic ratio. Luciferase reporter assays quantified YAP transcriptional activity in response to altered zyxin expression levels. Results and Discussion: Total YAP levels remained constant across developmental stages in control embryos, despite increased phosphorylated YAP levels, indicating reduced pathway activity. Zyxin knockdown resulted in decreased YAP levels at early developmental stages, while zyxin overexpression enhanced nuclear localization of YAP, suggesting that zyxin promotes YAP nuclear translocation. Luciferase assays demonstrated increased YAP transcriptional activity in zyxin-overexpressing embryos, supporting the hypothesis that zyxin enhances YAP signaling through mechanical tension modulation. Conclusions: These results demonstrate zyxinʼs significant role in modulating YAP signaling pathways during embryonic development. The zyxin-YAP interaction is critical for proper cell signaling and morphogenesis, revealing potential therapeutic targets for diseases associated with dysregulated cell proliferation, including cancer. Future investigations will elucidate the mechanistic basis of zyxinʼs interactions with other YAP signaling pathway components and its influence on cellular dynamics and development, advancing our understanding of cellular mechanobiology with implications for regenerative medicine and therapeutic interventions.

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来源期刊
Russian Journal of Bioorganic Chemistry
Russian Journal of Bioorganic Chemistry 生物-生化与分子生物学
CiteScore
1.80
自引率
10.00%
发文量
118
审稿时长
3 months
期刊介绍: Russian Journal of Bioorganic Chemistry publishes reviews and original experimental and theoretical studies on the structure, function, structure–activity relationships, and synthesis of biopolymers, such as proteins, nucleic acids, polysaccharides, mixed biopolymers, and their complexes, and low-molecular-weight biologically active compounds (peptides, sugars, lipids, antibiotics, etc.). The journal also covers selected aspects of neuro- and immunochemistry, biotechnology, and ecology.
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