4.4 Article

A Computational Systems Biology Approach Identifies SLUG as a Mediator of Partial Epithelial-Mesenchymal Transition (EMT)

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CELLS TISSUES ORGANS
卷 211, 期 6, 页码 689-702

出版社

KARGER
DOI: 10.1159/000512520

关键词

Hybrid epithelial; mesenchymal phenotypes; SLUG; Cancer systems biology; Epithelial-mesenchymal transition; Mathematical modeling; Phenotypic stability factor

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Epithelial-mesenchymal plasticity plays a crucial role in aggressive tumor progression, and cells in hybrid epithelial/mesenchymal phenotype exhibit greater aggressiveness. The study reveals that SLUG can stabilize cells in the hybrid epithelial/mesenchymal phenotype, functioning as a phenotypic stability factor. This finding has important implications for understanding metastasis mechanisms.
Epithelial-mesenchymal plasticity comprises reversible transitions among epithelial, hybrid epithelial/mesenchymal (E/M) and mesenchymal phenotypes, and underlies various aspects of aggressive tumor progression such as metastasis, therapy resistance, and immune evasion. The process of cells attaining one or more hybrid E/M phenotypes is termed as partial epithelial mesenchymal transition (EMT). Cells in hybrid E/M phenotype(s) can be more aggressive than those in either fully epithelial or mesenchymal state. Thus, identifying regulators of hybrid E/M phenotypes is essential to decipher the rheostats of phenotypic plasticity and consequent accelerators of metastasis. Here, using a computational systems biology approach, we demonstrate that SLUG (SNAIL2) - an EMT-inducing transcription factor - can inhibit cells from undergoing a complete EMT and thus stabilize them in hybrid E/M phenotype(s). It expands the parametric range enabling the existence of a hybrid E/M phenotype, thereby behaving as a phenotypic stability factor. Our simulations suggest that this specific property of SLUG emerges from the topology of the regulatory network it forms with other key regulators of epithelial-mesenchymal plasticity. Clinical data suggest that SLUG associates with worse patient prognosis across multiple carcinomas. Together, our results indicate that SLUG can stabilize hybrid E/M phenotype(s).

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