Xiong Shun, Liu Zhaoping, Yao Jiangchen, Huang Shaobin, Ding Xuan, Yu Han, Lin Ting, Zhang Xiaohong, Zhao Feijun
MOE Key Lab of Rare Pediatric Diseases & Institute of Pathogenic Biology and Key Laboratory of Special Pathogen Prevention and Control of Hunan Province, Hengyang Medical College, University of South China, Hengyang, China.
Department of Clinical Laboratory Medicine, The First Affiliated Hospital, Hengyang Medical College, University of South China, Hengyang, China.
Cell Commun Signal. 2025 May 9;23(1):219. doi: 10.1186/s12964-025-02211-1.
Syphilis, caused by Treponema pallidum (Tp), represents a significant public health challenge. The clinical manifestations of syphilis are attributed to local inflammatory responses induced by Tp, notably monocyte infiltration into local lesions and the secretion of inflammatory cytokines. However, the mechanisms driving cytokine production in response to Tp infection remain largely unknown. Given that increased glycolysis is associated with inflammatory responses, we aimed to investigate the role of glycolysis in Tp-induced secretion of inflammatory cytokines. In this study, we found that Tp promotes the secretion of inflammatory cytokines IL-6, IL-8, and CCL2 from monocytes while enhancing glycolysis through increased GLUT1 plasma membrane expression and glucose uptake. Importantly, inhibiting glycolysis and GLUT1 reduced the Tp-induced secretion of monocyte inflammatory cytokines. Additionally, Tp significantly increased HIF-1α expression and induced its nuclear translocation, thereby promoting glycolysis by upregulating the expression of GLUT1 and LDHA glycolytic enzymes. Knockdown of HIF-1α inhibits Tp-induced monocyte cytokine secretion, highlighting the crucial role of HIF-1α-mediated glycolysis in the cytokine response to Tp. Also, expression of HIF-1α and an increase in glycolysis were confirmed in patients with syphilis. In conclusion, we demonstrated that HIF-1α-regulated GLUT1-mediated glycolysis enhances inflammatory cytokine secretion following Tp infection. Our findings not only elucidate the mechanism of glycolysis in Tp-induced inflammatory responses in monocytes but also contribute to the development of a potential biomarker in syphilis diagnosis and treatment.
梅毒由梅毒螺旋体(Tp)引起,是一项重大的公共卫生挑战。梅毒的临床表现归因于Tp诱导的局部炎症反应,特别是单核细胞浸润到局部病变以及炎症细胞因子的分泌。然而,响应Tp感染驱动细胞因子产生的机制在很大程度上仍不清楚。鉴于糖酵解增加与炎症反应相关,我们旨在研究糖酵解在Tp诱导的炎症细胞因子分泌中的作用。在本研究中,我们发现Tp促进单核细胞分泌炎症细胞因子IL-6、IL-8和CCL2,同时通过增加GLUT1质膜表达和葡萄糖摄取来增强糖酵解。重要的是,抑制糖酵解和GLUT1可减少Tp诱导的单核细胞炎症细胞因子分泌。此外,Tp显著增加HIF-1α表达并诱导其核转位,从而通过上调GLUT1和LDHA糖酵解酶的表达促进糖酵解。敲低HIF-1α可抑制Tp诱导的单核细胞细胞因子分泌,突出了HIF-1α介导的糖酵解在对Tp的细胞因子反应中的关键作用。此外,在梅毒患者中证实了HIF-1α的表达和糖酵解的增加。总之,我们证明HIF-1α调节的GLUT1介导的糖酵解增强了Tp感染后的炎症细胞因子分泌。我们的发现不仅阐明了糖酵解在Tp诱导的单核细胞炎症反应中的机制,也为梅毒诊断和治疗中潜在生物标志物的开发做出了贡献。