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MZF1-AS1/NSUN2 promotes the peritoneal metastasis of gastric cancer by enhancing the stability of RAB13 mRNA.

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Gastric cancer : official journal of the International Gastric Cancer Association and the Japanese Gastric Cancer Association 📖 저널 OA 36.2% 2024: 7/17 OA 2025: 45/96 OA 2026: 11/61 OA 2024~2026 2026 Vol.29(1) p. 97-112
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Zhang Q, Zhang R, Liu L, Shen Y, Huo X, Nan Y

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Peritoneal metastasis (PM) is a major contributor to poor prognosis in advanced gastric cancer (GC), yet its molecular mechanisms remain insufficiently understood.

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APA Zhang Q, Zhang R, et al. (2026). MZF1-AS1/NSUN2 promotes the peritoneal metastasis of gastric cancer by enhancing the stability of RAB13 mRNA.. Gastric cancer : official journal of the International Gastric Cancer Association and the Japanese Gastric Cancer Association, 29(1), 97-112. https://doi.org/10.1007/s10120-025-01690-y
MLA Zhang Q, et al.. "MZF1-AS1/NSUN2 promotes the peritoneal metastasis of gastric cancer by enhancing the stability of RAB13 mRNA.." Gastric cancer : official journal of the International Gastric Cancer Association and the Japanese Gastric Cancer Association, vol. 29, no. 1, 2026, pp. 97-112.
PMID 41343127 ↗

Abstract

Peritoneal metastasis (PM) is a major contributor to poor prognosis in advanced gastric cancer (GC), yet its molecular mechanisms remain insufficiently understood. The results of bioinformatic analysis and clinical sample validation reveal that LncRNA MZF1-AS1 is significantly upregulated in GC tissues, particularly in peritoneal metastases, and is associated with worse overall and post-progression survival. MZF1-AS1 enhances malignant phenotypes and PM of GC cells in vitro and in vivo. Mechanistically, RAB13 is demonstrated as a functional effector of MZF1-AS1 via RNA-seq. MZF1-AS1 enhances RAB13 expression by promoting its mRNA stability, thereby facilitating GC cell proliferation, EMT, migration, invasion, and stemness. Further, RNA pulldown and Mass Spectrometry reveal that MZF1-AS1 directly binds to NSUN2. MZF1-AS1 strengthens the interaction between NSUN2 and RAB13 mRNA, promoting NSUN2-mediated m5C modification and stabilizing RAB13 mRNA. Our findings uncover a novel epi-transcriptomic mechanism by which MZF1-AS1 promotes GC progression via NSUN2-dependent m5C methylation of RAB13 mRNA, offering new insights into PM pathogenesis and highlighting potential therapeutic targets for advanced GC.

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