TOR1 AIP1 interacts with p53 to enhance cell cycle dysregulation in prostate cancer progression.

IF 3.5 2区 生物学 Q3 CELL BIOLOGY
Zhaofeng Li, Xueyu Li, Han Yang, Meixiang Huang, Zhu Liu, Zongliang Zhang, Kai Zhao, Xinbao Yin, Guanqun Zhu, Yulian Zhang, Zhenlin Wang, Qinglei Wang, Zaiqing Jiang, Suofei Zhang, Tianzhen He, Ke Wang
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Abstract

The cell cycle mechanism is an integration point where information is sent through an upstream signaling network, making it a potential target for cancer diagnosis and treatment. The LAP1 protein, encoded by the Tor1aip1 gene, is required to maintain the shape of the nuclear envelope and the progression of the cell cycle. The aim of this study was to determine the role of Tor1aip1 gene in PRAD development and its mechanism. We analyzed the expression and survival data of TOR1 AIP1 in PRAD patients in the TCGA database and verified the low expression of TOR1 AIP1 in prostate cancer by qPCR, western blot and immunohistology, which was correlated with the tumor stage and survival prognosis of PRAD. In addition, lentiviral vectors were used to mediate the up-regulation or down-regulation of TOR1 AIP1 expression in prostate cancer cells, and the effects of TOR1 AIP1 on tumor proliferation and related signaling pathways were investigated by cell counting kit- 8, colony formation assay, transwell assay, western blot, and flow cytometry. As a result, we found that TOR1 AIP1 enhances protein stability of p53 by directly interacting with p53, consequently inhibited tumor proliferation and invasion by inducing the cell cycle to be arrested in the S phase. Therefore, TOR1 AIP1 represents a promising therapeutic target in PRAD due to its ability to stabilize p53 and enhance its tumor-suppressive functions. Future studies should focus on elucidating its mechanisms, developing targeted therapies, and exploring its clinical potential in combination with existing treatments. By advancing our understanding of TOR1 AIP1, we may unlock new strategies for improving outcomes in PRAD patients.

TOR1 AIP1 与 p53 相互作用,加强了前列腺癌进展过程中的细胞周期失调。
细胞周期机制是信息通过上游信号网络发送的集成点,使其成为癌症诊断和治疗的潜在靶点。由Tor1aip1基因编码的LAP1蛋白是维持核膜形状和细胞周期进程所必需的。本研究的目的是确定Tor1aip1基因在PRAD发展中的作用及其机制。我们分析了TCGA数据库中TOR1 AIP1在PRAD患者中的表达和生存数据,通过qPCR、western blot和免疫组织学验证了TOR1 AIP1在前列腺癌中的低表达,与PRAD的肿瘤分期和生存预后相关。此外,采用慢病毒载体介导前列腺癌细胞中TOR1 AIP1表达的上调或下调,并通过细胞计数试剂盒- 8、集落形成实验、transwell实验、western blot和流式细胞术研究TOR1 AIP1对肿瘤增殖及相关信号通路的影响。因此,我们发现TOR1 AIP1通过直接与p53相互作用增强p53蛋白的稳定性,从而通过诱导细胞周期停留在S期抑制肿瘤的增殖和侵袭。因此,由于TOR1 AIP1能够稳定p53并增强其肿瘤抑制功能,因此它代表了PRAD中一个有希望的治疗靶点。未来的研究应集中于阐明其机制,开发靶向治疗,并探索其与现有治疗方法联合的临床潜力。通过加深对TOR1 AIP1的理解,我们可能会找到改善PRAD患者预后的新策略。
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来源期刊
Molecular and Cellular Biochemistry
Molecular and Cellular Biochemistry 生物-细胞生物学
CiteScore
8.30
自引率
2.30%
发文量
293
审稿时长
1.7 months
期刊介绍: Molecular and Cellular Biochemistry: An International Journal for Chemical Biology in Health and Disease publishes original research papers and short communications in all areas of the biochemical sciences, emphasizing novel findings relevant to the biochemical basis of cellular function and disease processes, as well as the mechanics of action of hormones and chemical agents. Coverage includes membrane transport, receptor mechanism, immune response, secretory processes, and cytoskeletal function, as well as biochemical structure-function relationships in the cell. In addition to the reports of original research, the journal publishes state of the art reviews. Specific subjects covered by Molecular and Cellular Biochemistry include cellular metabolism, cellular pathophysiology, enzymology, ion transport, lipid biochemistry, membrane biochemistry, molecular biology, nuclear structure and function, and protein chemistry.
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