A Twist in the Tale: TWIST1-SOX2 Axis Governs ABCG2-Mediated Paclitaxel Resistance of Breast Cancer Stem Cells

P. Mukherjee, U. Chatterji
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Abstract

Epithelial-mesenchymal transition (EMT) is an important process during development by which epithelial cellsb acquire mesenchymal, fibroblast-like properties and show reduced intercellular adhesion and increased motility.The identification of epithelial-mesenchymal plasticity of breast cancer stem cells provided another level of complexity regarding development of strategies to eliminate these lethal seeds of breast cancer. In determining the association between Sox2, cell migration and expression of EMT markers, we found a persistently high expression of Twist1 and its apparent lack of EMT-like properties during migratory arrest of MDA-MB-231 cells, even after paclitaxel treatment of Sox2-silenced cells. The role of Sox2-dependent Twist1 in maintaining stemness was more prominent when Sox2 expression was high in brCSCs. It can be presumed now that Twist1 expression in presence or absence of Sox2 defines the precise mechanism underlying the possible role of Twist1 in crossroads of pluripotency and EMT of breast cancer stem cells. cancer stem cells comparison their normal counterpart, SOX2, TWIST1 and ABCG2, which are significantly upregulated in paclitaxel-treated triple negative breast tumors. This cascade topluripotency and stemness properties of breast CSCs, mammosphere migratory propensity. Silencing SOX2 with siRNA leads to the down regulation of ABCG2 and TWIST1, confirming that SOX2 governs the expression of these two major CSC markers. Further, paclitaxel treatment in conjunction to si-SOX2, led to i) increased chemosensitivity of breast CSCs to the drug, regulates epithelial-to-mesenchymal transition (EMT) and induces migratory arrest that sustains even after drug removal, simulating a post-chemo treatment condition in patients, and iii) reduces the sphere forming efficiency of CSCs, thus rendering them more susceptible to the anti-cancer effects of paclitaxel.
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故事中的一个转折:TWIST1-SOX2轴调控abcg2介导的乳腺癌干细胞紫杉醇耐药
上皮-间充质转化(epithelial -mesenchymal transition, EMT)是上皮细胞在发育过程中获得间充质、成纤维细胞样特性并表现出细胞间粘附减少和运动性增加的重要过程。乳腺癌干细胞上皮-间充质可塑性的鉴定为消除这些致死性乳腺癌种子的策略的发展提供了另一个层次的复杂性。在确定Sox2、细胞迁移和EMT标志物表达之间的关系时,我们发现在MDA-MB-231细胞迁移停滞期间,即使在紫杉醇处理Sox2沉默细胞后,Twist1的持续高表达和明显缺乏EMT样特性。当Sox2在brCSCs中高表达时,依赖于Sox2的Twist1在维持茎干性中的作用更为突出。现在可以推测,在Sox2存在或不存在的情况下,Twist1的表达确定了Twist1在乳腺癌干细胞多能性和EMT交叉过程中可能发挥的作用的确切机制。在紫杉醇治疗的三阴性乳腺肿瘤中,SOX2、TWIST1和ABCG2的表达显著上调。这级联到乳腺CSCs的多能性和干性特性,乳腺球体迁移倾向。用siRNA沉默SOX2导致ABCG2和TWIST1的下调,证实SOX2调控这两种主要CSC标志物的表达。此外,紫杉醇与si-SOX2联合治疗,导致i)增加乳腺CSCs对药物的化疗敏感性,调节上皮到间质转化(EMT),诱导迁移停止,即使在药物去除后仍持续,模拟患者化疗后的情况,iii)降低CSCs的球形成效率,从而使它们更容易受到紫杉醇抗癌作用的影响。
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