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piR-RCC通过促进YBX-1细胞质定位抑制肾细胞癌进展。

piR-RCC Suppresses Renal Cell Carcinoma Progression by Facilitating YBX-1 Cytoplasm Localization.

作者信息

Wang Ruyue, Li Fan, Lin Yudong, Lu Zeyi, Luo Wenqin, Xu Zhehao, Zhu Ziwei, Lu Yi, Mao Xudong, Li Yang, Shen Zhinian, Lu Haohua, Chen Yining, Xia Liqun, Wang Mingchao, Ding Lifeng, Li Gonghui

机构信息

Department of Urology, Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou, 310016, China.

出版信息

Adv Sci (Weinh). 2025 Aug;12(30):e14398. doi: 10.1002/advs.202414398. Epub 2025 May 24.

Abstract

PIWI-interacting RNAs (piRNAs), a novel category of small non-coding RNAs, are widely expressed in eukaryotes and deregulated in several pathologies, including cancer. Little is known about their function and mechanism in renal cell carcinoma (RCC) progression. Herein, a down-regulated piRNA in RCC, termed piR-hsa-28489 (designated as piR-RCC), is identified to impede RCC progression both in vivo and in vitro. Mechanistically, piR-RCC directly interacts with Y-box binding protein 1 (YBX-1), thus impeding p-AKT-mediated YBX-1 phosphorylation and its subsequent nuclear translocation. Moreover, YBX-1 coordinates the transcription of ETS homologous factor (EHF) as a repressor factor. Consequently, piR-RCC enhances EHF expression, leading to the inhibition of RCC proliferation and metastasis. Based on these, a biomimetic nanoparticle platform is constructed to achieve RCC-specific targeted delivery of piR-RCC. The nanoparticles are fabricated using a cell membrane coating derived from cancer cells and used to encapsulate and deliver piR-RCC plasmids to renal orthotopic implantation in mice, hindering RCC progression. This study illustrates piR-RCC/YBX-1/EHF signaling axis in RCC, offering a promising therapeutic avenue for RCC.

摘要

PIWI相互作用RNA(piRNA)是一类新型的小非编码RNA,在真核生物中广泛表达,并且在包括癌症在内的多种病理状态下失调。关于它们在肾细胞癌(RCC)进展中的功能和机制知之甚少。在此,在RCC中鉴定出一种下调的piRNA,称为piR-hsa-28489(命名为piR-RCC),其在体内和体外均能阻碍RCC进展。机制上,piR-RCC直接与Y盒结合蛋白1(YBX-1)相互作用,从而阻碍p-AKT介导的YBX-1磷酸化及其随后的核转位。此外,YBX-1作为一种抑制因子协调ETS同源因子(EHF)的转录。因此,piR-RCC增强EHF表达,导致RCC增殖和转移受到抑制。基于此,构建了一种仿生纳米颗粒平台,以实现piR-RCC对RCC的特异性靶向递送。这些纳米颗粒是使用源自癌细胞的细胞膜包被制备的,并用于将piR-RCC质粒封装并递送至小鼠肾原位植入物,从而阻碍RCC进展。本研究阐明了RCC中的piR-RCC/YBX-1/EHF信号轴,为RCC提供了一条有前景的治疗途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89e3/12376648/e3e8abd32d32/ADVS-12-e14398-g009.jpg

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