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旨在阐明上皮-间质转化与干性之间的联系。

Towards elucidating the connection between epithelial-mesenchymal transitions and stemness.

作者信息

Jolly Mohit Kumar, Huang Bin, Lu Mingyang, Mani Sendurai A, Levine Herbert, Ben-Jacob Eshel

机构信息

Center for Theoretical Biological Physics, Rice University, Houston, TX 77005-1827, USA Department of Bioengineering, Rice University, Houston, TX 77005-1827, USA.

Center for Theoretical Biological Physics, Rice University, Houston, TX 77005-1827, USA Department of Chemistry, Rice University, Houston, TX 77005-1827, USA.

出版信息

J R Soc Interface. 2014 Dec 6;11(101):20140962. doi: 10.1098/rsif.2014.0962.

Abstract

Epithelial cells undergoing epithelial-to-mesenchymal transitions have often been shown to behave as cancer stem cells, but the precise molecular connection remains elusive. At the genetic level, stemness is governed by LIN28/let-7 double inhibition switch, whereas EMT/MET is controlled by miR-200/ZEB double inhibition circuit and LIN28 is inhibited by miR-200, coupling the two modules. Here, using a specially devised theoretical framework to investigate the dynamics of the LIN28/let-7 system, we show that it can operate as a three-way switch (between low, high and intermediate LIN28 levels termed the D, U and hybrid D/U states) similar to the three-way operation of the miR-200/ZEB circuit that allows for the existence of a hybrid epithelial/mesenchymal (E/M) phenotype. We find significant correspondence between the existence of the three states of the two circuits: E-D, M-U and E/M-D/U. Incorporating the activation of OCT4 by LIN28, we find that the hybrid E/M phenotype has high likelihood (when compared with either the E or M states) to gain stemness. Combining the LIN28/let-7 regulation by NF-κB and c-MYC, we find that NF-κB, but not c-MYC, elevates the likelihood of E/M phenotype to gain stemness. Our results are consistent with emerging concept that partial EMT can lead to stemness.

摘要

经历上皮-间质转化的上皮细胞常常被证明表现为癌症干细胞,但其精确的分子联系仍不清楚。在基因水平上,干性由LIN28/let-7双重抑制开关控制,而EMT/MET由miR-200/ZEB双重抑制回路控制,且LIN28被miR-200抑制,从而将这两个模块联系起来。在此,我们使用一个专门设计的理论框架来研究LIN28/let-7系统的动力学,结果表明它可以作为一个三向开关(在低、高和中间LIN28水平之间,分别称为D、U和混合D/U状态)运行,类似于miR-200/ZEB回路的三向运行,这使得混合上皮/间质(E/M)表型得以存在。我们发现这两个回路的三种状态之间存在显著对应关系:E-D、M-U和E/M-D/U。将LIN28对OCT4的激活纳入其中,我们发现混合E/M表型(与E或M状态相比)获得干性的可能性很高。结合NF-κB和c-MYC对LIN28/let-7的调控,我们发现NF-κB而非c-MYC提高了E/M表型获得干性的可能性。我们的结果与部分EMT可导致干性这一新兴概念一致。

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