PO.ET02.11 · 实验与分子治疗
研究SIX1作为头颈部鳞状细胞癌中同类首创EMT降解剂的驱动因子和靶点
Investigating SIX1 as a driver and target for a first in-class EMT degrader in head-and-neck squamous cell carcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
头颈部鳞状细胞癌(HNSCC)晚期阶段的预后仍然较差,患者遭受严重的治疗相关不良反应。在此,我们初步研究了胚胎转录因子SIX1是否驱动HNSCC,以及是否可作为同类首创EMT降解剂的靶点。虽然SIX1在胚胎发育期间是必需的,但它在成人组织中不再表达或仅微弱表达。然而,许多癌症显示出SIX1的重新激活,导致各种促肿瘤效应,如增殖增加和上皮-间质转化(EMT)的诱导。这使得SIX1,尤其结合其在正常组织中缺失或低表达的特点,成为一个潜在的治疗靶点。为此,我们通过一家CRO开发了一种SIX1特异性PROTAC(ELX19)。在本项目中,我们应用序贯免疫荧光分析患者组织,并采用体外实验检测ELX19对SIX1降解的效率并检测相关表型效应。36标志物免疫荧光板证实了癌组织中SIX1表达升高,并显示SIX1与免疫抑制性免疫浸润之间存在相关性,凸显了SIX1与HNSCC进展之间潜在的机制联系。关于该PROTAC,ELX19在纳摩尔和低微摩尔范围(取决于细胞系)导致高效的SIX1降解,并诱导了治疗上理想的效应,如顺铂作用下凋亡的增加。总之,这些初步结果表明SIX1作为HNSCC治疗选择的潜力——这是患者迫切需要的选择。
查看英文原文 English abstract
Prognosis for head-and-neck squamous cell carcinoma (HNSCC) remains poor in advanced stages, and patients suffer from severe treatment-associated adverse effects. Here, we have preliminarily investigated whether the embryonic transcription factor SIX1 drives HNSCC and could serve as a target for a first-in-class EMT degrader. While SIX1 is required during embryonic development, it is no longer or only weakly expressed in adult tissue. However, many cancers show a reactivation of SIX1, leading to various pro-tumorigenic effects such as an increase in proliferation and an induction of epithelial-mesenchymal transition (EMT). This makes SIX1, particularly combined with its absent or low expression in normal tissue, a potentially therapeutic target. For this purpose, we developed a SIX1-specific PROTAC (ELX19) through a CRO. In this project, we have applied sequential immunofluorescence for the analysis of patient tissue, and in vitro assays to test the efficiency of the SIX1 degradation through ELX19 and detect associated phenotypic effects. The 36-marker immunofluorescence panel confirmed an increased SIX1 expression in cancer tissue and showed a correlation between SIX1 and an immunosuppressive immune infiltrate, highlighting potential mechanistic links between SIX1 and HNSC progression. Regarding the PROTAC, ELX19 led to an efficient SIX1 degradation in the nanomolar and low micromolar range (depending on the cell line) and induced therapeutically desirable effects, such as an increase in apoptosis under cisplatin. In conclusion, these preliminary results indicate the potential of SIX1 as a therapeutic option in HNSCC - an option that patients urgently need.
利益披露 Disclosure
V. Scharfenberger, None..
A. Faili, None..
L. Z. Miehe, None..
E. Weber, None..
S. Heydarzadeh, None..
R. Buettner, None..
T. Lerbs, None.