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Structure-Function Studies of the bHLH Phosphorylation Domain of TWIST1 in Prostate Cancer Cells

机译:前列腺癌细胞中TWIST1的bHLH磷酸化结构域的结构功能研究

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摘要

The TWIST1 gene has diverse roles in development and pathologic diseases such as cancer. TWIST1 is a dimeric basic helix-loop-helix (bHLH) transcription factor existing as TWIST1-TWIST1 or TWIST1-E12/47. TWIST1 partner choice and DNA binding can be influenced during development by phosphorylation of Thr125 and Ser127 of the Thr-Gln-Ser (TQS) motif within the bHLH of TWIST1. The significance of these TWIST1 phosphorylation sites for metastasis is unknown. We created stable isogenic prostate cancer cell lines overexpressing TWIST1 wild-type, phospho-mutants, and tethered versions. We assessed these isogenic lines using assays that mimic stages of cancer metastasis. In vitro assays suggested the phospho-mimetic Twist1-DQD mutation could confer cellular properties associated with pro-metastatic behavior. The hypo-phosphorylation mimic Twist1-AQA mutation displayed reduced pro-metastatic activity compared to wild-type TWIST1 in vitro, suggesting that phosphorylation of the TWIST1 TQS motif was necessary for pro-metastatic functions. In vivo analysis demonstrates that the Twist1-AQA mutation exhibits reduced capacity to contribute to metastasis, whereas the expression of the Twist1-DQD mutation exhibits proficient metastatic potential. Tethered TWIST1-E12 heterodimers phenocopied the Twist1-DQD mutation for many in vitro assays, suggesting that TWIST1 phosphorylation may result in heterodimerization in prostate cancer cells. Lastly, the dual phosphatidylinositide 3-kinase (PI3K)-mammalian target of rapamycin (mTOR) inhibitor BEZ235 strongly attenuated TWIST1-induced migration that was dependent on the TQS motif. TWIST1 TQS phosphorylation state determines the intensity of TWIST1-induced pro-metastatic ability in prostate cancer cells, which may be partly explained mechanistically by TWIST1 dimeric partner choice.
机译:TWIST1基因在癌症等发展和病理疾病中具有多种作用。 TWIST1是二聚体基本螺旋-环-螺旋(bHLH)转录因子,以TWIST1-TWIST1或TWIST1-E12 / 47的形式存在。在发育过程中,TWIST1的bHLH中的Thr-Gln-Ser(TQS)基序的Thr125和Ser127的磷酸化会影响TWIST1伴侣的选择和DNA结合。这些TWIST1磷酸化位点对转移的意义尚不清楚。我们创建了过表达TWIST1野生型,磷酸突变体和拴系版本的稳定等基因前列腺癌细胞系。我们使用模拟癌症转移阶段的分析评估了这些等基因系。体外测定表明,拟磷酸酯酶Twist1-DQD突变可赋予细胞与促转移行为相关的特性。与野生型TWIST1相比,次磷酸化模拟Twist1-AQA突变显示出降低的促转移活性,这表明TWIST1 TQS基序的磷酸化对于促转移功能是必需的。体内分析表明,Twist1-AQA突变表现出降低的促成转移能力,而Twist1-DQD突变的表达表现出充分的转移潜能。系留的TWIST1-E12异二聚体表型化了Twist1-DQD突变,可用于许多体外测定,表明TWIST1磷酸化可能导致前列腺癌细胞异二聚体化。最后,雷帕霉素(mTOR)抑制剂BEZ235的双重磷脂酰肌醇3激酶(PI3K)-哺乳动物靶标强烈减弱了TWIST1诱导的迁移,该迁移依赖于TQS基序。 TWIST1 TQS的磷酸化状态决定了TWIST1诱导的前列腺癌细胞转移能力的强度,这可以通过TWIST1二聚体伴侣选择的机制部分解释。

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