Suppr超能文献

星形孢菌素通过肌动蛋白解聚、粘着斑大小减小和Snail1诱导增强PMC42-LA细胞中表皮生长因子介导的上皮-间质转化——一种交叉调节模型。

Staurosporine augments EGF-mediated EMT in PMC42-LA cells through actin depolymerisation, focal contact size reduction and Snail1 induction - a model for cross-modulation.

作者信息

Hugo Honor J, Wafai Razan, Blick Tony, Thompson Erik W, Newgreen Donald F

机构信息

Embryology Laboratory, Murdoch Children's Research Institute, Royal Children's Hospital, Parkville, Australia.

出版信息

BMC Cancer. 2009 Jul 15;9:235. doi: 10.1186/1471-2407-9-235.

Abstract

BACKGROUND

A feature of epithelial to mesenchymal transition (EMT) relevant to tumour dissemination is the reorganization of actin cytoskeleton/focal contacts, influencing cellular ECM adherence and motility. This is coupled with the transcriptional repression of E-cadherin, often mediated by Snail1, Snail2 and Zeb1/deltaEF1. These genes, overexpressed in breast carcinomas, are known targets of growth factor-initiated pathways, however it is less clear how alterations in ECM attachment cross-modulate to regulate these pathways. EGF induces EMT in the breast cancer cell line PMC42-LA and the kinase inhibitor staurosporine (ST) induces EMT in embryonic neural epithelial cells, with F-actin de-bundling and disruption of cell-cell adhesion, via inhibition of aPKC.

METHODS

PMC42-LA cells were treated for 72 h with 10 ng/ml EGF, 40 nM ST, or both, and assessed for expression of E-cadherin repressor genes (Snail1, Snail2, Zeb1/deltaEF1) and EMT-related genes by QRT-PCR, multiplex tandem PCR (MT-PCR) and immunofluorescence +/- cycloheximide. Actin and focal contacts (paxillin) were visualized by confocal microscopy. A public database of human breast cancers was assessed for expression of Snail1 and Snail2 in relation to outcome.

RESULTS

When PMC42-LA were treated with EGF, Snail2 was the principal E-cadherin repressor induced. With ST or ST+EGF this shifted to Snail1, with more extreme EMT and Zeb1/deltaEF1 induction seen with ST+EGF. ST reduced stress fibres and focal contact size rapidly and independently of gene transcription. Gene expression analysis by MT-PCR indicated that ST repressed many genes which were induced by EGF (EGFR, CAV1, CTGF, CYR61, CD44, S100A4) and induced genes which alter the actin cytoskeleton (NLF1, NLF2, EPHB4). Examination of the public database of breast cancers revealed tumours exhibiting higher Snail1 expression have an increased risk of disease-recurrence. This was not seen for Snail2, and Zeb1/deltaEF1 showed a reverse correlation with lower expression values being predictive of increased risk.

CONCLUSION

ST in combination with EGF directed a greater EMT via actin depolymerisation and focal contact size reduction, resulting in a loosening of cell-ECM attachment along with Snail1-Zeb1/deltaEF1 induction. This appeared fundamentally different to the EGF-induced EMT, highlighting the multiple pathways which can regulate EMT. Our findings add support for a functional role for Snail1 in invasive breast cancer.

摘要

背景

上皮-间质转化(EMT)与肿瘤扩散相关的一个特征是肌动蛋白细胞骨架/粘着斑的重组,影响细胞与细胞外基质(ECM)的粘附和运动。这与E-钙粘蛋白的转录抑制相关,通常由Snail1、Snail2和Zeb1/δEF1介导。这些基因在乳腺癌中过表达,是生长因子启动途径的已知靶点,然而,尚不清楚ECM附着的改变如何交叉调节以调控这些途径。表皮生长因子(EGF)可诱导乳腺癌细胞系PMC42-LA发生EMT,激酶抑制剂星形孢菌素(ST)可通过抑制非典型蛋白激酶C(aPKC)诱导胚胎神经上皮细胞发生EMT,导致F-肌动蛋白解聚和细胞间粘附破坏。

方法

用10 ng/ml EGF、40 nM ST或两者联合处理PMC42-LA细胞72小时,通过实时定量聚合酶链反应(QRT-PCR)、多重串联PCR(MT-PCR)和免疫荧光(±放线菌酮)评估E-钙粘蛋白抑制基因(Snail1、Snail2、Zeb1/δEF1)和EMT相关基因的表达。通过共聚焦显微镜观察肌动蛋白和粘着斑(桩蛋白)。评估人类乳腺癌公共数据库中Snail1和Snail2的表达与预后的关系。

结果

用EGF处理PMC42-LA时,诱导产生的主要E-钙粘蛋白抑制因子是Snail2。用ST或ST + EGF处理时,这一情况转变为Snail1,ST + EGF处理时出现更极端的EMT和Zeb1/δEF1诱导。ST迅速且独立于基因转录减少应力纤维和粘着斑大小。MT-PCR基因表达分析表明,ST抑制许多由EGF诱导的基因(表皮生长因子受体(EGFR)、小窝蛋白1(CAV1)、结缔组织生长因子(CTGF)、富含半胱氨酸的血管生成素61(CYR61)、CD44、S100钙结合蛋白A4(S100A4)),并诱导改变肌动蛋白细胞骨架的基因(NLF1、NLF2、 Ephrin B4受体(EPHB4))。对乳腺癌公共数据库的研究发现,Snail1表达较高的肿瘤疾病复发风险增加。Snail2未出现这种情况,Zeb1/δEF1则呈负相关,较低的表达值预示风险增加。

结论

ST与EGF联合通过肌动蛋白解聚和粘着斑大小减小引导更显著的EMT,导致细胞与ECM附着松弛以及Snail1-Zeb1/δEF1诱导。这似乎与EGF诱导的EMT根本不同,突出了可调控EMT的多种途径。我们的研究结果支持Snail1在浸润性乳腺癌中的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a19/2717979/766e32c4a21a/1471-2407-9-235-1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验