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Altered CXCR3 isoform expression regulates prostate cancer cell migration and invasion

机译:改变的CXCR3亚型表达调节前列腺癌细胞的迁移和侵袭

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摘要

Background: Carcinoma cells must circumvent the normally suppressive signals to disseminate. While often considered 'stop' signals for adherent cells, CXCR3-binding chemokines have recently been correlated positively with cancer progression though the molecular basis remains unclear.Results: Here, we examined the expression and function of two CXCR3 variants in human prostate cancer biopsies and cell lines. Globally, both CXCR3 mRNA and protein were elevated in localized and metastatic human cancer biopsies compared to normal. Additionally, CXCR3A mRNA level was upregulated while CXCR3B mRNA was downregulated in these prostate cancer specimens. In contrast to normal prostate epithelial cells (RWPE-1), CXCR3A was up to half the receptor in the invasive and metastatic DU-145 and PC-3 prostate cancer cells, but not in the localized LNCaP cells. Instead of inhibiting cell migration as in RWPE-1 cells, the CXCR3 ligands CXCL4/PF4 and CXCL10/IP10 promoted cell motility and invasiveness in both DU-145 and PC-3 cells via PLCβ3 and μ-calpain activation. CXCR3-mediated diminution of cell motility in RWPE-1 cells is likely a result of cAMP upregulation and m-calpain inhibition via CXCR3B signal transduction. Interestingly, overexpression of CXCR3B in DU-145 cells decreased cell movement and invasion.Conclusion: These data suggest that the aberrant expression of CXCR3A and down-regulation of CXCR3B may switch a progression "stop" to a "go" signal to promote prostate tumor metastasis via stimulating cell migration and invasion. © 2012 Wu et al; licensee BioMed Central Ltd.
机译:背景:癌细胞必须避开正常的抑制信号才能传播。尽管通常被认为是粘附细胞的“终止”信号,但结合CXCR3的趋化因子与癌症进展呈正相关,尽管分子基础仍不清楚。结果:在这里,我们研究了两种CXCR3变体在人前列腺癌活检组织中的表达和功能。细胞系。在全球范围内,与正常人相比,在局部和转移性人类癌症活检中CXCR3 mRNA和蛋白质均升高。此外,在这些前列腺癌标本中,CXCR3A mRNA水平上调而CXCR3B mRNA下调。与正常前列腺上皮细胞(RWPE-1)相比,CXCR3A最多可达到浸润性和转移性DU-145和PC-3前列腺癌细胞中受体的一半,而不是局部LNCaP细胞中的受体。 CXCR3配体CXCL4 / PF4和CXCL10 / IP10不像RWPE-1细胞那样抑制细胞迁移,而是通过PLCβ3和μ-钙蛋白酶激活来促进DU-145和PC-3细胞的细胞运动性和侵袭性。 CXCR3介导的RWPE-1细胞中细胞运动的减弱可能是cAMP上调和通过CXCR3B信号转导抑制m-钙蛋白酶的结果。有趣的是,CXCR3B在DU-145细胞中的过度表达减少了细胞运动和侵袭。结论:这些数据表明CXCR3A的异常表达和CXCR3B的下调可能将进展“停止”转变为“去”信号,从而促进前列腺肿瘤。通过刺激细胞迁移和侵袭进行转移。 ©2012 Wu等;被许可人BioMed Central Ltd.

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    Wu Q; Dhir R; Wells A;

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