Extracellular Vesicle-Mediated Transfer of LncRNA IGFL2-AS1 Confers Sunitinib Resistance in Renal Cell Carcinoma

Author:

Pan Yihui1ORCID,Lu Xuanxuan2ORCID,Shu Guannan1ORCID,Cen Junjie1ORCID,Lu Jun1ORCID,Zhou Mi3ORCID,Huang Kangbo14ORCID,Dong Jiaqi3ORCID,Li Jiaying1ORCID,Lin Haishan1ORCID,Song Hongde1ORCID,Xu Quanhui1ORCID,Han Hui4ORCID,Chen Zhenhua1ORCID,Chen Wei1ORCID,Luo Junhang1ORCID,Wei Jinhuan1ORCID,Zhang Jiaxing3ORCID

Affiliation:

1. 1Department of Urology, First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

2. 2Department of Food Science and Engineering, Jinan University, Guangzhou, China.

3. 3Department of Oncology, First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

4. 4Department of Urology, Sun Yat-Sen University Cancer Center, Guangzhou, China.

Abstract

Abstract Sunitinib resistance remains a serious challenge to the treatment of advanced and metastatic renal cell carcinoma (RCC), yet the mechanisms underlying this resistance are not fully understood. Here, we report that the long noncoding RNA IGFL2-AS1 is a driver of therapy resistance in RCC. IGFL2-AS1 was highly upregulated in sunitinib-resistant RCC cells and was associated with poor prognosis in patients with clear cell RCC (ccRCC) who received sunitinib therapy. IGFL2-AS1 enhanced TP53INP2 expression by competitively binding to hnRNPC, a multifunctional RNA-binding protein that posttranscriptionally suppresses TP53INP2 expression through alternative splicing. Upregulated TP53INP2 enhanced autophagy and ultimately led to sunitinib resistance. Meanwhile, IGFL2-AS1 was packaged into extracellular vesicles through hnRNPC, thus transmitting sunitinib resistance to other cells. N6-methyladenosine modification of IGFL2-AS1 was critical for its interaction with hnRNPC. In a patient-derived xenograft model of sunitinib-resistant ccRCC, injection of chitosan-solid lipid nanoparticles containing antisense oligonucleotide-IGFL2-AS1 successfully reversed sunitinib resistance. These findings indicate a novel molecular mechanism of sunitinib resistance in RCC and suggest that IGFL2-AS1 may serve as a prognostic indicator and potential therapeutic target to overcome resistance. Significance: Extracellular vesicle-packaged IGFL2-AS1 promotes sunitinib resistance by regulating TP53INP2-triggered autophagy, implicating this lncRNA as a potential therapeutic target in renal cell carcinoma.

Funder

National Natural Science Foundation of China

Pearl River S and T Nova Program of Guangzhou

Natural Science Foundation of Guangdong Province

China Postdoctoral Science Foundation

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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