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A Novel Role for Wnt/Ca2+ Signaling in Actin Cytoskeleton Remodeling and Cell Motility in Prostate Cancer

机译:Wnt / Ca2 +信号传导在前列腺癌肌动蛋白细胞骨架重塑和细胞运动中的新作用。

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摘要

Wnt signaling is a critical regulatory pathway in development and disease. Very little is known about the mechanisms of Wnt signaling in prostate cancer, a leading cause of death in men. A quantitative analysis of the expression of Wnt5A protein in human tissue arrays, containing 600 prostate tissue cores, showed >50% increase in malignant compared to benign cores (p<0.0001). In a matched pair of prostate cancer and normal cell line, expression of Wnt5A protein was also increased. Calcium waves were induced in prostate cells in response to Wnt5A with a 3 fold increase in Flou-4 intensity. The activity of Ca2+/calmodulin dependent protein kinase (CaMKII), a transducer of the non-canonical Wnt/Ca2+ signaling, increased by 8 fold in cancer cells; no change was observed in β-catenin expression, known to activate the canonical Wnt/β-catenin pathway. Mining of publicly available human prostate cancer oligoarray datasets revealed that the expression of numerous genes (e.g., CCND1, CD44) under the control of β-catenin transcription is down-regulated. Confocal and quantitative electron microscopy showed that specific inhibition of CaMKII in cancer cells causes remodeling of the actin cytoskeleton, irregular wound edges and loose intercellular architecture and a 6 and 8 fold increase in the frequency and length of filopodia, respectively. Conversely, untreated normal prostate cells showed an irregular wound edge and loose intercellular architecture; incubation of normal prostate cells with recombinant Wnt5A protein induced actin remodeling with a regular wound edge and increased wound healing capacity. Live cell imaging showed that a functional consequence of CaMKII inhibition was 80% decrease in wound healing capacity and reduced cell motility in cancer cells. We propose that non-canonical Wnt/Ca2+ signaling via CaMKII acts as a novel regulator of structural plasticity and cell motility in prostate cancer.
机译:Wnt信号传导是发育和疾病中的关键调控途径。关于Wnt信号在前列腺癌中的知之甚少,前列腺癌是男性的主要死亡原因。对Wnt5A蛋白在包含600个前列腺组织核心的人体组织阵列中表达的定量分析表明,与良性核心相比,恶性肿瘤的增加率> 50%(p <0.0001)。在配对的前列腺癌和正常细胞系中,Wnt5A蛋白的表达也增加了。响应Wnt5A,在前列腺细胞中诱导了钙波,其中Flou-4强度增加了3倍。 Ca 2 + /钙调蛋白依赖性蛋白激酶(CaMKII)的活性,是非经典的Wnt / Ca 2 + 信号转导子,在癌细胞中增加了8倍;在已知激活经典Wnt /β-catenin途径的β-catenin表达中未观察到变化。公开获得的人类前列腺癌寡阵列数据集的挖掘显示,在β-catenin转录控制下的许多基因(例如CCND1,CD44)的表达被下调。共聚焦和定量电子显微镜显示癌细胞中CaMKII的特异性抑制导致肌动蛋白细胞骨架重塑,伤口边缘不规则和胞间结构松散,丝状伪足的频率和长度分别增加了6倍和8倍。相反,未经处理的正常前列腺细胞显示出不规则的伤口边缘和松散的细胞间结构;正常前列腺细胞与重组Wnt5A蛋白的孵育可诱导肌动蛋白重塑,并具有规则的伤口边缘和增加的伤口愈合能力。活细胞成像显示,CaMKII抑制的功能性后果是伤口愈合能力降低80%,癌细胞的细胞运动性降低。我们建议通过CaMKII的非经典Wnt / Ca 2 + 信号传导是前列腺癌结构可塑性和细胞运动性的新型调节剂。

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