Molecular Science and Biomedicine Laboratory, State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, College of Chemistry and Chemical Engineering, Aptamer Engineering Center of Hunan Province, Hunan University, Changsha, Hunan 410082, China.
The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital), Institute of Basic Medicine and Cancer, Chinese Academy of Sciences, Hangzhou, Zhejiang 310022, China.
Proc Natl Acad Sci U S A. 2022 Apr 19;119(16):e2110500119. doi: 10.1073/pnas.2110500119. Epub 2022 Apr 11.
Metastasis contributes to the dismal prognosis of bladder cancer (BLCA). The mechanical status of the cell membrane is expected to mirror the ability of cell migration to promote cancer metastasis. However, the mechanical characteristics and underlying molecular profile associated with BLCA metastasis remain obscure. To study the unique cellular architecture and traits associated with cell migration, using a process called cell-based systematic evolution of ligands by exponential enrichment (cell-SELEX) we generated an aptamer-based molecular probe, termed spl3c, which identified cytoskeleton-associated protein 4 (CKAP4). CKAP4 was associated with tumor metastasis in BLCA, but we also found it to be a mechanical regulator of BLCA cells through the maintenance of a central-to-peripheral gradient of stiffness on the cell membrane. Notably, such mechanical traits were transportable through exosome-mediated intercellular CKAP4 trafficking, leading to significant enhancement of migration in recipient cells and, consequently, aggravating metastatic potential in vivo. Taken together, our study shows the robustness of this aptamer-based molecular tool for biomarker discovery, revealing the dominance of a CKAP4-induced central-to-peripheral gradient of membrane stiffness that benefits cell migration and delineating the role of exosomes in mediating mechanical signaling in BLCA metastasis.
转移导致膀胱癌(BLCA)预后不良。细胞膜的机械状态有望反映细胞迁移促进癌症转移的能力。然而,与 BLCA 转移相关的机械特性和潜在分子特征仍不清楚。为了研究与细胞迁移相关的独特细胞结构和特征,我们使用一种称为细胞指数富集配体系统进化(cell-SELEX)的过程生成了一种基于适配体的分子探针,称为 spl3c,它鉴定了细胞骨架相关蛋白 4(CKAP4)。CKAP4 与 BLCA 中的肿瘤转移有关,但我们还发现它通过维持细胞膜上从中部到外周的刚度梯度来机械调节 BLCA 细胞。值得注意的是,这些机械特征可以通过外体介导的 CKAP4 细胞间运输来传递,从而显著增强受体细胞的迁移,并因此加剧体内的转移潜力。总之,我们的研究表明这种基于适配体的分子工具在生物标志物发现方面的稳健性,揭示了 CKAP4 诱导的细胞膜刚度从中部到外周的梯度对细胞迁移有利的主导地位,并描绘了外体在介导 BLCA 转移中的机械信号中的作用。