Conserved E2F mediated metastasis in mouse models of breast cancer and HER2 positive patients

J. Rennhack, E. Andrechek
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引用次数: 17

Abstract

To improve breast cancer patient outcome work must be done to understand and block tumor metastasis. This study leverages bioinformatics techniques and traditional genetic screens to create a novel method of discovering potential contributors of tumor progression with a focus on tumor metastasis. A database of 1172 of expression data from a variety of mouse models of breast cancer was assembled and queried using previously defined oncogenic activity signatures. This analysis revealed high activity of the E2F family of transcription factors in the MMTV-Neu mouse model. A genetic cross of MMTV-Neu mice into an E2F1 null, E2F2 null, or E2F3 heterozygous background revealed significant changes in tumor progression specifically reductions in tumor latency and metastasis with E2F1 or E2F2 loss. These findings were found to be conserved in human HER2 positive patients. Patients with high E2F1 activity were shown to have worse outcomes such as relapse free survival and distant metastasis free survival. This study shows conserved mechanisms of tumor progression in human breast cancer subtypes and analogous mouse models and underlies the importance of increased research into the characterization of and comparisons between mouse and human tumors to identify which mouse models resemble each subtype of human breast cancer.
保守的E2F介导的乳腺癌小鼠模型和HER2阳性患者转移
为了改善乳腺癌患者的预后,必须了解和阻止肿瘤转移。本研究利用生物信息学技术和传统的基因筛选来创造一种新的方法来发现肿瘤进展的潜在因素,重点是肿瘤转移。收集了来自多种乳腺癌小鼠模型的1172个表达数据的数据库,并使用先前定义的致癌活性特征进行了查询。该分析显示,在MMTV-Neu小鼠模型中,E2F家族转录因子具有高活性。MMTV-Neu小鼠在E2F1缺失、E2F2缺失或E2F3杂合背景下的遗传杂交显示,肿瘤进展发生了显著变化,特别是在E2F1或E2F2缺失的情况下,肿瘤潜伏期和转移减少。这些发现在人类HER2阳性患者中被发现是保守的。高E2F1活性的患者有较差的预后,如无复发生存和无远处转移生存。这项研究显示了人类乳腺癌亚型和类似小鼠模型中肿瘤进展的保守机制,并表明了对小鼠和人类肿瘤的特征和比较进行更多研究的重要性,以确定哪种小鼠模型与人类乳腺癌的每种亚型相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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