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LncRNA LIMp27 通过 p27 在 p53 缺陷型癌细胞中调节 DNA 损伤反应。

LncRNA LIMp27 Regulates the DNA Damage Response through p27 in p53-Defective Cancer Cells.

机构信息

Translational Research Institute, Henan Provincial and Zhengzhou City Key laboratory of Non-coding RNA and Cancer Metabolism, Henan International Join Laboratory of Non-coding RNA and Metabolism in Cancer, Henan Provincial People's Hospital, Academy of Medical Sciences, Zhengzhou University, Zhengzhou, Henan, 450053, China.

Noncoding Cancer Biomarkers and Therapeutics Group, Cancer Detection & Therapy Research Program, Hunter Medical Research Institute, Callaghan, New South Wales, 2305, Australia.

出版信息

Adv Sci (Weinh). 2023 Mar;10(7):e2204599. doi: 10.1002/advs.202204599. Epub 2023 Jan 13.

Abstract

P53 inactivation occurs in about 50% of human cancers, where p53-driven p21 activity is devoid and p27 becomes essential for the establishment of the G1/S checkpoint upon DNA damage. Here, this work shows that the E2F1-responsive lncRNA LIMp27 selectively represses p27 expression and contributes to proliferation, tumorigenicity, and treatment resistance in p53-defective colon adenocarcinoma (COAD) cells. LIMp27 competes with p27 mRNA for binding to cytoplasmically localized hnRNA0, which otherwise stabilizes p27 mRNA leading to cell cycle arrest at the G0/G1 phase. In response to DNA damage, LIMp27 is upregulated in both wild-type and p53-mutant COAD cells, whereas cytoplasmic hnRNPA0 is only increased in p53-mutant COAD cells due to translocation from the nucleus. Moreover, high LIMp27 expression is associated with poor survival of p53-mutant but not wild-type p53 COAD patients. These results uncover an lncRNA mechanism that promotes p53-defective cancer pathogenesis and suggest that LIMp27 may constitute a target for the treatment of such cancers.

摘要

P53 失活发生在大约 50%的人类癌症中,在这些癌症中,p53 驱动的 p21 活性缺失,而 p27 成为 DNA 损伤后建立 G1/S 检查点所必需的。在这里,这项工作表明,E2F1 反应性 lncRNA LIMp27 选择性地上调 p27 的表达,并有助于增殖、致瘤性和对 p53 缺陷型结肠腺癌 (COAD) 细胞的治疗抵抗。LIMp27 与 p27 mRNA 竞争结合细胞质中的 hnRNA0,否则 hnRNA0 会稳定 p27 mRNA,导致细胞周期停滞在 G0/G1 期。在 DNA 损伤后,LIMp27 在野生型和 p53 突变型 COAD 细胞中均上调,而细胞质 hnRNPA0 仅在 p53 突变型 COAD 细胞中增加,因为它从核中转位到细胞质中。此外,高表达 LIMp27 与 p53 突变型 COAD 患者的不良生存相关,但与野生型 p53 COAD 患者无关。这些结果揭示了一种促进 p53 缺陷型癌症发病机制的 lncRNA 机制,并表明 LIMp27 可能成为治疗此类癌症的靶点。

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