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Abi1 loss drives prostate tumorigenesis through activation of EMT and non-canonical WNT signaling

机译:ABI1损失通过激活EMT和非规范WNT信号传导驱动前列腺肿瘤内血

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Prostate cancer development involves various mechanisms, which are poorly understood but pointing to epithelial mesenchymal transition (EMT) as the key mechanism in progression to metastatic disease. ABI1, a member of WAVE complex and actin cytoskeleton regulator and adaptor protein, acts as tumor suppressor in prostate cancer but the role of ABI1 in EMT is not clear. To investigate the molecular mechanism by which loss of ABI1 contributes to tumor progression, we disrupted the ABI1 gene in the benign prostate epithelial RWPE-1 cell line and determined its phenotype. Levels of ABI1 expression in prostate organoid tumor cell lines was evaluated by Western blotting and RNA sequencing. ABI1 expression and its association with prostate tumor grade was evaluated in a TMA cohort of 505 patients and metastatic cell lines. Low ABI1 expression is associated with biochemical recurrence, metastasis and death (p?=?0.038). Moreover, ABI1 expression was significantly decreased in Gleason pattern 5 vs. pattern 4 (p?=?0.0025) and 3 (p?=?0.0012), indicating an association between low ABI1 expression and highly invasive prostate tumors. Disruption of ABI1 gene in RWPE-1 cell line resulted in gain of an invasive phenotype, which was characterized by a loss of cell-cell adhesion markers and increased migratory ability of RWPE-1 spheroids. Through RNA sequencing and protein expression analysis, we discovered that ABI1 loss leads to activation of non-canonical WNT signaling and EMT pathways, which are rescued by re-expression of ABI1. Furthermore, an increase in STAT3 phosphorylation upon ABI1 inactivation and the evidence of a high-affinity interaction between the FYN SH2 domain and ABI1 pY421 support a model in which ABI1 acts as a gatekeeper of non-canonical WNT-EMT pathway activation downstream of the FZD2 receptor. ABI1 controls prostate tumor progression and epithelial plasticity through regulation of EMT-WNT pathway. Here we discovered that ABI1 inhibits EMT through suppressing FYN-STAT3 activation downstream from non-canonical WNT signaling thus providing a novel mechanism of prostate tumor suppression.
机译:前列腺癌的发展涉及各种机制,其难以理解,但指向上皮间充质转换(EMT)作为转移性疾病的关键机制。 ABI1,波复合物和肌动蛋白细胞骨架调节剂和适配蛋白的成员,充当前列腺癌中的肿瘤抑制剂,但ABI1在EMT中的作用尚不清楚。为了探讨ABI1丧失的分子机制有助于肿瘤进展,我们在良性前列腺上皮RWPE-1细胞中扰乱了ABI1基因并确定了其表型。通过蛋白质印迹和RNA测序评估前列腺有机肿瘤细胞系中ABI1表达的水平。 ABI1表达及其与前列腺肿瘤等级的关联在505名患者和转移细胞系的TMA队列中评价。低abi1表达与生化复发,转移和死亡有关(p?= 0.038)。此外,Gleason模式5与图案4(p≤= 0.0025)和3(p?= 0.0012),表明低abi1表达和高度侵入性前列腺肿瘤之间的关联,表达显着降低。 RWPE-1细胞系中ABI1基因的破坏导致侵入性表型的增益,其特征在于细胞 - 细胞粘附标记物的损失以及RWPE-1球状体的迁移能力增加。通过RNA测序和蛋白质表达分析,我们发现ABI1损失导致非规范WNT信号传导和EMT途径的激活,这通过再表达ABI1来拯救。此外,对ABI1失活的STAT3磷酸化的增加和FYN SH2结构域和ABI1 PY421之间的高亲和力相互作用的证据支持该模型,其中ABI1作为FZD2下游的非规范WNT-EMT途径激活的守门器。受体。 ABI1通过调节EMT-WNT途径来控制前列腺肿瘤进展和上皮可塑性。在这里,我们发现ABI1通过抑制非规范WNT信号传导下游的Fyn-Stat3激活来抑制EMT,从而提供前列腺肿瘤抑制的新机制。

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