LBPO.TB02 · 肿瘤生物学 · Late-Breaking
胰腺癌转移受一段十一氨基酸序列的转录调控
Pancreatic cancer metastasis is transcriptionally regulated by an eleven amino-acid sequence
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:整合素alphavbeta6的表达与癌症侵袭增加、转移及不良生存相关。alphavbeta6激活潜在TGFbeta的能力可能导致人们假设TGFbeta驱动其转移倾向。
方法与结果:在胰腺导管腺癌(PDAC)的同基因原位研究中,我们发现beta6整合素亚基C端的11个氨基酸(aa)驱动一个转录程序,该程序对alphavbeta6表达所赋予的最大转移能力至关重要,且不依赖TGFbeta。因此,与alphavbeta6缺失的PDAC细胞系(TB32043)相比,表达alphavbeta6的TB32043b6使肺转移增加300%(p<0.05),肝转移增加200%,后者尚未完全达到统计学显著性。相反,表达删除了beta6亚基C端11aa的alphavbeta6的细胞(TB32043Δb6)向肺和肝的转移与alphavbeta6缺失的TB32043细胞相似。肿瘤组织的RNAseq分析显示这11aa调控一个由89个基因组成的表达特征,与转移能力增加相关。对49个上调基因的siRNA文库筛选显示,超过50%的基因调控增殖和/或3D侵袭。此外,对其中一个上调基因(一种SUMO E3连接酶)进行药理学抑制,抑制了肺转移的形成,但不影响原发肿瘤生长。
结论:对这11aa调控的基因特征的进一步分析将揭示胰腺癌及潜在其他癌症转移的更多新型调控因子,并可能为转移治疗提供新的治疗靶点。
查看英文原文 English abstract
Introduction: Expression of the integrin alphavbeta6 correlates with increased carcinoma invasion, metastasis and poor survival. The ability of alphavbeta6 to activate latent TGFbeta may lead to the assumption that TGFbeta drives its metastatic propensity.
Methods and Results: In syngeneic orthotopic studies of pancreatic ductal adenocarcinoma (PDAC) we have discovered that the c-terminal 11 amino-acids (aa) of the beta6 integrin subunit drives a transcriptional programme that is essential for the maximal metastatic abilities imparted by alphavbeta6 expression, and that it is TGFbeta-independent. Thus compared with alphavbeta6-null PDAC cell lines (TB32043), the alphavbeta6-expressing TB32043b6 increased metastasis to lung by 300% (p<0.05) and to liver by 200%, the latter not quite reaching statistical significance. In contrast cells expressing alphavbeta6 with the c-terminal 11aa of the beta6 subunit deleted (TB32043Δb6) metastasised to lung and liver similarly to the alphavbeta6-null TB32043 cells. RNAseq analysis of tumor tissues revealed the 11aa regulated an 89 gene expression signature correlating with increased metastatic ability. An siRNA library screen of the 49 upregulated genes showed over 50% of genes regulated proliferation and/or 3D invasion. Moreover, pharmacological inhibition of one of the upregulated genes, a SUMO E3 ligase, suppressed the formation of lung metastases but did not affect primary tumor growth.
Conclusion: Further analysis of the 11aa-regualted gene signature will reveal additional novel regulators of metastasis of pancreatic and potentially other cancers and could provide novel therapeutic targets for treatment of metastasis.
利益披露 Disclosure
G. Fuertes Marin, None..
D. DiBiagio, None..
R. P. Sontakke, None..
E. Maniati, None..
J. H. Benjamin, None..
G. J. Thomas, None..
J. F. Marshall, None.