首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >A novel cell-penetrating peptide derived from WT1 enhances p53 activity induces cell senescence and displays antimelanoma activity in xeno- and syngeneic systems
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A novel cell-penetrating peptide derived from WT1 enhances p53 activity induces cell senescence and displays antimelanoma activity in xeno- and syngeneic systems

机译:源自WT1的新型细胞穿透肽可增强p53活性诱导细胞衰老并在异种和同基因系统中显示出anlanlanoma活性

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摘要

The Wilms tumor protein 1 (WT1) transcription factor has been associated in malignant melanoma with cell survival and metastasis, thus emerging as a candidate for targeted therapy. A lysine–arginine rich peptide, WT1-pTj, derived from the ZF domain of WT1 was evaluated as an antitumor agent against A2058 human melanoma cells and B16F10-Nex2 syngeneic murine melanoma. Peptide WT1-pTj quickly penetrated human melanoma cells and induced senescence, recognized by increased SA-β-galactosidase activity, enhanced transcriptional activity of p53, and induction of the cell cycle inhibitors p21 and p27. Moreover, the peptide bound to p53 and competed with WT1 protein for binding to p53. WT1-pTj treatment led to sustained cell growth suppression, abrogation of clonogenicity and G2/M cell cycle arrest. Notably, in vivo studies showed that WT1-pTj inhibited both the metastases and subcutaneous growth of murine melanoma in syngeneic mice, and prolonged the survival of nude mice challenged with human melanoma cells. The 27-amino acid cell-penetrating WT1-derived peptide, depends on C3 and H16 for effective antimelanoma activity, inhibits proliferation of WT1-expressing human tumor cell lines, and may have an effective role in the treatment of WT1-expressing malignancies.
机译:Wilms肿瘤蛋白1(WT1)转录因子已在恶性黑色素瘤中与细胞存活和转移相关,因此成为靶向治疗的候选药物。来自WT1的ZF域的富含赖氨酸-精氨酸的肽WT1-pTj被评估为抗A2058人黑素瘤细胞和B16F10-Nex2同基因鼠类黑素瘤的抗肿瘤剂。肽WT1-pTj迅速穿透人黑素瘤细胞并诱导衰老,这被SA-β-半乳糖苷酶活性增强,p53转录活性增强以及细胞周期抑制剂p21和p27的诱导所识别。此外,该肽与p53结合并与WT1蛋白竞争与p53的结合。 WT1-pTj处理导致持续的细胞生长抑制,克隆性丧失和G2 / M细胞周期停滞。值得注意的是,体内研究表明,WT1-pTj抑制了同源小鼠的小鼠黑色素瘤的转移和皮下生长,并延长了受到人类黑色素瘤细胞攻击的裸鼠的存活。 WT27衍生的27个氨基酸的细胞肽依赖于C 3 和H 16 来获得有效的抗癌基因活性,抑制表达WT1的人类肿瘤细胞系的增殖,并可能在治疗WT1表达的恶性肿瘤中发挥有效作用。

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