Department of Mathematics and Statistics, Indian Institute of Technology Kanpur, Kanpur, 208016, India.
Bull Math Biol. 2024 Mar 30;86(5):48. doi: 10.1007/s11538-024-01277-1.
Carcinomas often utilize epithelial-mesenchymal transition (EMT) programs for cancer progression and metastasis. Numerous studies report SNAIL-induced miR200/Zeb feedback circuit as crucial in regulating EMT by placing cancer cells in at least three phenotypic states, viz. epithelial (E), hybrid (h-E/M), mesenchymal (M), along the E-M phenotypic spectrum. However, a coherent molecular-level understanding of how such a tiny circuit controls carcinoma cell entrance into and residence in various states is lacking. Here, we use molecular binding data and mathematical modeling to report that the miR200/Zeb circuit can essentially utilize combinatorial cooperativity to control E-M phenotypic plasticity. We identify minimal combinatorial cooperativities that give rise to E, h-E/M, and M phenotypes. We show that disrupting a specific number of miR200 binding sites on Zeb as well as Zeb binding sites on miR200 can have phenotypic consequences-the circuit can dynamically switch between two (E, M) and three (E, h-E/M, M) phenotypes. Further, we report that in both SNAIL-induced and SNAIL knock-out miR200/Zeb circuits, cooperative transcriptional feedback on Zeb as well as Zeb translation inhibition due to miR200 are essential for the occurrence of intermediate h-E/M phenotype. Finally, we demonstrate that SNAIL can be dispensable for EMT, and in the absence of SNAIL, the transcriptional feedback can control cell state transition from E to h-E/M, to M state. Our results thus highlight molecular-level regulation of EMT in miR200/Zeb circuit and we expect these findings to be crucial to future efforts aiming to prevent EMT-facilitated dissemination of carcinomas.
癌通常利用上皮-间充质转化(EMT)程序进行癌症进展和转移。许多研究报告称,SNAIL 诱导的 miR200/Zeb 反馈回路在调节 EMT 中至关重要,它将癌细胞置于至少三种表型状态,即上皮(E)、混合(h-E/M)、间充质(M),沿着 E-M 表型谱。然而,对于这样一个微小的电路如何控制癌细胞进入和驻留在各种状态的一致的分子水平理解还缺乏。在这里,我们使用分子结合数据和数学建模来报告 miR200/Zeb 电路可以利用组合协同作用来控制 E-M 表型可塑性。我们确定了产生 E、h-E/M 和 M 表型的最小组合协同性。我们表明,破坏 Zeb 上的 miR200 结合位点以及 miR200 上的 Zeb 结合位点的特定数量可以产生表型后果-电路可以在两种(E、M)和三种(E、h-E/M、M)表型之间动态切换。此外,我们报告说,在 SNAIL 诱导和 SNAIL 敲除 miR200/Zeb 电路中,Zeb 上的协同转录反馈以及由于 miR200 导致的 Zeb 翻译抑制对于中间 h-E/M 表型的发生是必不可少的。最后,我们证明 SNAIL 对于 EMT 是可有可无的,并且在没有 SNAIL 的情况下,转录反馈可以控制细胞状态从 E 到 h-E/M,再到 M 状态的转变。我们的研究结果突出了 miR200/Zeb 电路中 EMT 的分子水平调节,我们预计这些发现对于未来旨在预防 EMT 促进的癌症扩散的努力至关重要。