Yang Han, Zhang Zongliang, Feng Ninghan, Zhao Kai, Zhang Yulian, Yin Xinbao, Zhu Guanqun, Wang Zhenlin, Yan Xuechuan, Li Xueyu, Li Zhaofeng, Wang Qinglei, Qi Yixin, Zhao Peng, He Tianzhen, Wang Ke
Department of Urology, The Affiliated Hospital of Qingdao University, Qingdao, China.
Department of Urology, Jiangnan University Medical Center, Wuxi, China.
Cell Death Dis. 2025 Jul 12;16(1):517. doi: 10.1038/s41419-025-07848-x.
Cancer is characterized by chromosomal instability (CIN), which leads to tumor heterogeneity and other malignant features. CIN is caused by abnormal centromere and kinetochore function, which results in aneuploidy, rearrangements, and micronucleus production. Centromere and kinetochore gene misexpression plays a vital role in tumor progression. Here we show that Centromere Protein T (CENPT) is highly expressed in renal carcinoma (RCC) and promotes the tumor proliferation and metastasis of RCC. CENPT is found to be critical for regulating the glutathione (GSH) metabolism pathway because it interacts with γ-glutamyl-cysteine ligase catalytic subunit (GCLC), consequently reducing reactive oxygen species levels and inhibiting ferroptosis. Mechanistically, CENPT increases the catalytic activity of GCLC by directly binding to GCLC ∆213-424aa competitively with glutamate-cysteine ligase modifier subunit (GCLM), consequently induces the GSH synthesis. In turn, GSH increases CENPT expression via transcriptional regulation mediated by the transcription factor ATF2, forming a CENPT-GCLC-GSH feedback loop that enhances the pro-carcinogenic effect of this axis in RCC. Our study identifies CENPT a potential target for RCC via forming a CENPT-GCLC-GSH feedback loop to inhibit ferroptosis. This may support a promising treatment strategy for RCC.
癌症的特征是染色体不稳定(CIN),这会导致肿瘤异质性和其他恶性特征。CIN是由着丝粒和动粒功能异常引起的,会导致非整倍体、重排和微核产生。着丝粒和动粒基因的错误表达在肿瘤进展中起着至关重要的作用。在此我们表明,着丝粒蛋白T(CENPT)在肾癌(RCC)中高表达,并促进RCC的肿瘤增殖和转移。研究发现CENPT对调节谷胱甘肽(GSH)代谢途径至关重要,因为它与γ-谷氨酰半胱氨酸连接酶催化亚基(GCLC)相互作用,从而降低活性氧水平并抑制铁死亡。机制上,CENPT通过与谷氨酸-半胱氨酸连接酶修饰亚基(GCLM)竞争性地直接结合GCLC ∆213-424aa来增加GCLC的催化活性,从而诱导GSH合成。反过来,GSH通过转录因子ATF2介导的转录调控增加CENPT表达,形成一个CENPT-GCLC-GSH反馈环,增强该轴在RCC中的促癌作用。我们的研究通过形成CENPT-GCLC-GSH反馈环来抑制铁死亡,确定CENPT是RCC的一个潜在靶点。这可能为RCC提供一种有前景的治疗策略。