PO.TB03.04 · 肿瘤生物学

表征基底样三阴性乳腺癌侵袭性的驱动因素

Characterizing drivers of invasiveness in basal-like triple negative breast cancer

海报缩略图:表征基底样三阴性乳腺癌侵袭性的驱动因素
编号 2110 展板 8 时间 4/20 09:00–12:00 区域 Section 27 主讲 Perrin Black, BS
分会场 Characterization of Metastases by Imaging and Profiling
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作者与单位 Authors & Affiliations

Perrin Black1, Destiny Ball1, Antonisha McIntosh1, Alayjha Edwards1, Sewedo Ajisegiri1, Nobelle I. Sakwe1, Ngoc Vuong1, Olga Korolkova2, Qingguo Wang2, Amos M. Sakwe3

1Biomedical Sciences, Meharry Medical College, Nashville, TN,2Meharry Medical College, Nashville, TN,3Assistant Professor, Cancer Biology, Meharry Medical College, Nashville, TN

摘要 Abstract

中文摘要
目的:与其他乳腺癌亚型相比,三阴性乳腺癌(TNBC)具有肿瘤生长具侵袭性、对治疗耐药、复发可能性更高以及总体预后更差的特点。TNBC的肿瘤微环境在分子层面具有异质性,含有数量不等的快速生长的基底样(BSL)细胞以及侵袭性的间质样(MSL)间质细胞和TNBC细胞。膜联蛋白A6(AnxA6)是一种多功能的钙依赖性支架蛋白,在MSL型TNBC细胞中高表达,而在BSL型TNBC中表达水平较低,并且参与细胞增殖、运动和耐药。目前尚不清楚AnxA6水平的改变如何影响MSL和BSL型TNBC细胞的侵袭性。我们假设AnxA6表达的改变对BSL和MSL两个TNBC亚组的侵袭性具有差异性贡献。 方法:采用短发夹RNA(shRNA)在模型MSL(BT-549)和BSL(MDA-468)TNBC细胞系的亲本(PAR)亚群中下调AnxA6。通过在Boyden小室中进行序贯侵袭实验,从对照细胞和AnxA6下调细胞中分离出这些细胞系(伴或不伴AnxA6下调)的侵袭性亚群(INV)。随后评估亲本亚群和侵袭性亚群的侵袭性标志物、癌症干细胞(CSC)表达、药物敏感性、癌蛋白表达及差异基因表达。 结果:与PAR亚群相比,BSL型TNBC的INV亚群中侵袭性以AnxA6依赖的方式增加。MSL和BSL型TNBC的INV亚群对阿霉素(doxorubicin)的敏感性均降低。流式细胞术显示BSL型TNBC的INV亚群中CD49f+/EpCAM+ CSC表达增加。碳酸酐酶IX(CA9)仅在BSL型TNBC的INV亚群中被发现上调,且下调CA9可导致BSL型TNBC的INV亚群侵袭性和活力下降。RNA测序及RT-qPCR验证显示,EDN2和PDXN在BSL型TNBC的INV亚群中上调,而BIRC3和PARP9在MSL型TNBC的INV亚群中上调。 结论:我们的数据表明,两个TNBC亚组的侵袭性亚群相对于其亲本对照会以差异化的方式修饰关键致癌基因。AnxA6表达的改变与MSL相对于BSL型TNBC细胞的差异性侵袭潜能和化疗敏感性相关。序贯侵袭实验成功分离出上调TNBC亚组依赖性生物标志物的侵袭性亚群。靶向本研究所鉴定的上调基因和蛋白,未来可能为治疗TNBC转移性疾病带来有前景的结果。
查看英文原文 English abstract
PURPOSE: Triple-negative breast cancer (TNBC) is characterized by aggressive tumor growth, resistance to treatment, higher likelihood of relapse, and overall worse prognosis when compared to other breast cancer subtypes. The TNBC tumor microenvironment is molecularly heterogeneous, containing various numbers of rapidly growing basal-like (BSL), and invasive mesenchymal-like (MSL) stromal and TNBC cells. Annexin A6 (AnxA6) is a multifunctional calcium-dependent scaffolding protein that is highly expressed in MSL TNBC cells but expressed at low levels in BSL TNBC, and is implicated in cell proliferation, motility, and drug resistance. It is currently unclear how altered AnxA6 levels influence the invasiveness of MSL and BSL TNBC cells. We hypothesize that altered expression of AnxA6 differentially contributes to the invasiveness of BSL and MSL TNBC subgroups. METHODS: Short hairpin RNAs were used to downregulate AnxA6 in parental (PAR) subpopulations of model MSL (BT-549) and BSL (MDA-468) TNBC cell lines. The invasive subpopulations (INV) of these cell lines with or without AnxA6 downregulation were isolated from control and AnxA6 downregulated cells by sequential invasion assays in Boyden chambers. The parental and invasive subpopulations were then assessed for markers of invasiveness, cancer stem cell (CSC) expression, drug sensitivity, oncoprotein expression, and differential gene expression. RESULTS: Invasiveness increased AnxA6-dependently in BSL TNBC INV subpopulations compared to the PAR population. Sensitivity to doxorubicin was decreased in the INV subpopulations of both MSL and BSL TNBC. Flow cytometry revealed an increase in CD49f+/EpCAM+ CSC expression among BSL TNBC INV subpopulations. Carbonic anhydrase IX (CA9) was found upregulated only in the INV subpopulations of BSL TNBC, and that downregulation of CA9 results in decreased invasiveness and viability within BSL TNBC INV subpopulations. RNA sequencing and RT-qPCR validation has revealed an upregulation of EDN2 and PDXN among INV BSL TNBC subpopulations, while BIRC3 and PARP9 were found to be upregulated in MSL TNBC INV subpopulations. CONCLUSION: Our data suggest that the invasive subpopulations of both TNBC subgroups differentially modify key oncogenes with respect to their parental controls. Altered AnxA6 expression is associated with differential invasive potential and sensitivity to chemotherapy for MSL versus BSL TNBC cells. Sequential invasion assays have successfully isolated invasive subpopulations that upregulate TNBC subgroup-dependent biomarkers. Targeting the upregulated genes and proteins identified in this study may yield promising results in the future for treating TNBC metastatic disease.
利益披露 Disclosure
P. Black, None.. D. Ball, None.. A. McIntosh, None.. A. Edwards, None.. S. Ajisegiri, None.. N. I. Sakwe, None.. N. Vuong, None.. O. Korolkova, None.. A. M. Sakwe, None.

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