PO.MCB07.04 · 分子与细胞生物学
ETS1协调一种混合型EMT程序以驱动UASCC的转移和免疫逃逸
ETS1 orchestrates a hybrid EMT program to drive metastasis and immune evasion in UASCC
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
肿瘤内转录异质性(ITH)是侵袭性癌症的一个决定性特征,然而不同的ITH程序在上呼吸消化道鳞状细胞癌(UASCC)中驱动转移和免疫逃逸的机制仍知之甚少。通过对癌细胞系和患者肿瘤进行单细胞RNA测序,我们鉴定出一种与转移潜能密切相关的混合型上皮-间质转化(hEMT)程序。我们确定转录因子ETS1是该hEMT状态的主调控因子,可直接激活促侵袭和促转移基因网络,并在体内促进远处播散。除了在转移中的作用外,ETS1还出人意料地通过转录诱导STAT1和PD-L1(CD274)建立了一种免疫冷微环境,导致T细胞浸润减少和免疫检查点表达升高。在临床上,ETS1高表达肿瘤在多个独立队列中持续与不良生存和对免疫检查点阻断的应答减弱相关联。通过一项针对性药物筛选,我们发现ETS1高表达的癌症对HSP90抑制(如Alvespimycin)表现出选择性易感性,后者通过破坏HIF1A驱动的转录降低ETS1表达。总之,这些发现将ETS1界定为UASCC中转移进展和免疫逃逸的核心驱动因素,并提名HSP90抑制剂作为针对ETS1驱动疾病状态的一种有前景的治疗策略。
查看英文原文 English abstract
Intratumoral transcriptional heterogeneity (ITH) is a defining feature of aggressive cancers, yet the mechanisms by which distinct ITH programs drive metastasis and immune escape in upper aerodigestive squamous cell carcinoma (UASCC) remain poorly understood. Using single-cell RNA sequencing of cancer cell lines and patient tumors, we identified a hybrid epithelial-mesenchymal transition (hEMT) program strongly associated with metastatic potential. We determined that the transcription factor ETS1 functions as a master regulator of this hEMT state, directly activating pro-invasive and pro-metastatic gene networks and promoting distant dissemination in vivo. Beyond its role in metastasis, ETS1 unexpectedly established an immune-cold microenvironment by transcriptionally inducing STAT1 and PD-L1 (CD274), leading to reduced T-cell infiltration and elevated immune checkpoint expression. Clinically, ETS1-high tumors were consistently linked to poor survival and diminished responses to immune checkpoint blockade across multiple independent cohorts. Through a focused drug screen, we found that ETS1-high cancers exhibit selective vulnerability to HSP90 inhibition (e.g., Alvespimycin), which reduces ETS1 expression via disruption of HIF1A-driven transcription. Together, these findings define ETS1 as a central driver of both metastatic progression and immune evasion in UASCC and nominate HSP90 inhibitors as a promising therapeutic strategy for ETS1-driven disease states.
利益披露 Disclosure
C. Nam, None..
T. Wenger, None..
D. Arnaudov, None..
T. Tilton, None..
E. Pan, None..
Y. Park, None..
U. K. Sinha, None..
D. Lin, None.