Pan Jiajia, Chen Yuanyuan, Ye Yan, Li Peipei, Ni Feifei, He Haizhen
Department of Gynecological Protection, The Wenzhou Third Clinical Institute Affiliated To Wenzhou Medical University, Wenzhou People's Hospital, Wenzhou Maternal and Child Health Care Hospital, No.57, Cang Hou Lane, Lucheng District, Wenzhou, 325000, Zhejiang Province, China.
Cancer Metab. 2025 Jun 18;13(1):31. doi: 10.1186/s40170-025-00398-y.
Obesity exacerbates the severity of cervical intraepithelial neoplasia (CIN), potentially through metabolic alterations. This study investigates how the Kisspeptin/GPR54 signaling pathway mediates mitochondrial energy metabolism in obesity-related CIN.
A clinical analysis of 980 samples was conducted to assess the correlation between Body Mass Index (BMI) and CIN grade. Transcriptomic analysis identified KISS1R as a key gene. Functional assays in cervical cancer (CC) cell lines, including CCK-8, wound healing, and Transwell assays, were used to evaluate the effects of KISS1 modulation. Mitochondrial function was assessed via oxygen consumption rate (OCR) and extracellular acidification rate (ECAR) assays. A high-fat diet-induced CIN mouse model was used to investigate the in vivo effects.
BMI positively correlated with CIN grade, with elevated KISS1R expression in higher CIN grades. Overexpression of KISS1 enhanced CC cell proliferation and migration by reprogramming mitochondrial energy metabolism. In high-fat environments, KISS1 silencing and mitochondrial activator PQQ modulated CC cell behavior. Activation of Kisspeptin/GPR54 in obese CIN mice exacerbated cervical lesions.
The Kisspeptin/GPR54 signaling pathway enhances mitochondrial energy metabolism, promoting obesity-related CIN grade. These findings provide a potential molecular mechanism linking obesity to CC and suggest new therapeutic targets.
肥胖可能通过代谢改变加剧宫颈上皮内瘤变(CIN)的严重程度。本研究探讨了 kisspeptin/GPR54 信号通路如何介导肥胖相关 CIN 中的线粒体能量代谢。
对 980 份样本进行临床分析,以评估体重指数(BMI)与 CIN 分级之间的相关性。转录组分析确定 KISS1R 为关键基因。在宫颈癌(CC)细胞系中进行功能测定,包括 CCK-8、伤口愈合和 Transwell 测定,以评估 KISS1 调节的作用。通过耗氧率(OCR)和细胞外酸化率(ECAR)测定评估线粒体功能。使用高脂饮食诱导的 CIN 小鼠模型研究体内效应。
BMI 与 CIN 分级呈正相关,在较高 CIN 分级中 KISS1R 表达升高。KISS1 的过表达通过重新编程线粒体能量代谢增强了 CC 细胞的增殖和迁移。在高脂环境中,KISS1 沉默和线粒体激活剂 PQQ 调节了 CC 细胞行为。肥胖 CIN 小鼠中 kisspeptin/GPR54 的激活加剧了宫颈病变。
kisspeptin/GPR54 信号通路增强线粒体能量代谢,促进肥胖相关的 CIN 分级。这些发现提供了将肥胖与 CC 联系起来的潜在分子机制,并提出了新的治疗靶点。