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双酚A及其类似物会破坏前列腺癌中的中心体循环和微管动力学。

Bisphenol A and its analogues disrupt centrosome cycle and microtubule dynamics in prostate cancer.

作者信息

Ho Shuk-Mei, Rao Rahul, To Sarah, Schoch Emma, Tarapore Pheruza

机构信息

Department of Environmental HealthUniversity of Cincinnati Medical Center, Cincinnati, Ohio, USA

Center for Environmental GeneticsUniversity of Cincinnati Medical Center, Cincinnati, Ohio, USA.

出版信息

Endocr Relat Cancer. 2017 Feb;24(2):83-96. doi: 10.1530/ERC-16-0175. Epub 2016 Dec 20.

Abstract

Humans are increasingly exposed to structural analogues of bisphenol A (BPA), as BPA is being replaced by these compounds in BPA-free consumer products. We have previously shown that chronic and developmental exposure to BPA is associated with increased prostate cancer (PCa) risk in human and animal models. Here, we examine whether exposure of PCa cells (LNCaP, C4-2) to low-dose BPA and its structural analogues (BPS, BPF, BPAF, TBBPA, DMBPA and TMBPA) affects centrosome amplification (CA), a hallmark of cancer initiation and progression. We found that exposure to BPA, BPS, DMBPA and TBBPA, in descending order, increased the number of cells with CA, in a non-monotonic dose-response manner. Furthermore, cells treated with BPA and their analogues initiated centrosome duplication at 8 h after release from serum starvation, significantly earlier in G-1 phase than control cells. This response was attended by earlier release of nucleophosmin from unduplicated centrosomes. BPA-exposed cells exhibited increased expression of cyclin-dependent kinase CDK6 and decreased expression of CDK inhibitors (p21 and p27). Using specific antagonists for estrogen/androgen receptors, CA in the presence of BPA or its analogues was likely to be mediated via ESR1 signaling. Change in microtubule dynamics was observed on exposure to these analogues, which, for BPA, was accompanied by increased expression of centrosome-associated protein CEP350 Similar to BPA, chronic treatment of cells with DMBPA, but not other analogues, resulted in the enhancement of anchorage-independent growth. We thus conclude that selected BPA analogues, similar to BPA, disrupt centrosome function and microtubule organization, with DMBPA displaying the broadest spectrum of cancer-promoting effects.

摘要

随着双酚A(BPA)在不含BPA的消费品中被这些化合物所取代,人类越来越多地接触到BPA的结构类似物。我们之前已经表明,在人类和动物模型中,长期和发育期接触BPA与前列腺癌(PCa)风险增加有关。在此,我们研究PCa细胞(LNCaP、C4-2)暴露于低剂量BPA及其结构类似物(BPS、BPF、BPAF、TBBPA、DMBPA和TMBPA)是否会影响中心体扩增(CA),这是癌症起始和进展的一个标志。我们发现,暴露于BPA、BPS、DMBPA和TBBPA后,中心体扩增细胞的数量按降序排列以非单调剂量反应方式增加。此外,用BPA及其类似物处理的细胞在从血清饥饿状态释放后8小时开始中心体复制,在G-1期比对照细胞显著更早开始。这种反应伴随着核磷蛋白从未复制的中心体中更早释放。暴露于BPA的细胞中细胞周期蛋白依赖性激酶CDK6的表达增加,而CDK抑制剂(p21和p27)的表达降低。使用雌激素/雄激素受体的特异性拮抗剂,BPA或其类似物存在时的中心体扩增可能是通过ESR1信号介导的。暴露于这些类似物时观察到微管动力学的变化,对于BPA而言,这伴随着中心体相关蛋白CEP350表达的增加。与BPA类似,用DMBPA长期处理细胞,但不是其他类似物,导致非锚定依赖性生长增强。因此我们得出结论,所选的BPA类似物与BPA一样,会破坏中心体功能和微管组织,其中DMBPA表现出最广泛的促癌作用谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b5f/5226663/d68984ca892c/nihms840798f1.jpg

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