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整合配体-受体生物信息学和体外功能分析鉴定甲状腺乳头状癌中活跃的 TGFA/EGFR 信号通路。

Integrated ligand-receptor bioinformatic and in vitro functional analysis identifies active TGFA/EGFR signaling loop in papillary thyroid carcinomas.

机构信息

Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.

出版信息

PLoS One. 2010 Sep 22;5(9):e12701. doi: 10.1371/journal.pone.0012701.

Abstract

BACKGROUND

Papillary thyroid carcinoma (PTCs), the most frequent thyroid cancer, is usually not life threatening, but may recur or progress to aggressive forms resistant to conventional therapies. A more detailed understanding of the signaling pathways activated in PTCs may help to identify novel therapeutic approaches against these tumors. The aim of this study is to identify signaling pathways activated in PTCs.

METHODOLOGY/PRINCIPAL FINDINGS: We examined coordinated gene expression patterns of ligand/receptor (L/R) pairs using the L/R database DRLP-rev1 and five publicly available thyroid cancer datasets of gene expression on a total of 41 paired PTC/normal thyroid tissues. We identified 26 (up) and 13 (down) L/R pairs coordinately and differentially expressed. The relevance of these L/R pairs was confirmed by performing the same analysis on REarranged during Transfection (RET)/PTC1-infected thyrocytes with respect to normal thyrocytes. TGFA/EGFR emerged as one of the most tightly regulated L/R pair. Furthermore, PTC clinical samples analyzed by real-time RT-PCR expressed EGFR transcript levels similar to those of 5 normal thyroid tissues from patients with pathologies other than thyroid cancer, whereas significantly elevated levels of TGFA transcripts were only present in PTCs. Biochemical analysis of PTC cell lines demonstrated the presence of EGFR on the cell membrane and TGFA in conditioned media. Moreover, conditioned medium of the PTC cell line NIM-1 activated EGFR expressed on HeLa cells, culminating in both ERK and AKT phosphorylation. In NIM-1 cells harboring BRAF mutation, TGFA stimulated proliferation, contributing to PI3K/AKT activation independent of MEK/ERK signaling.

CONCLUSIONS/SIGNIFICANCE: We compiled a reliable list of L/R pairs associated with PTC and validated the biological role of one of the emerged L/R pair, the TGFA/EGFR, in this cancer, in vitro. These data provide a better understanding of the factors involved in the biology of PTCs and would be useful in developing combination therapeutic approaches against these cancers.

摘要

背景

甲状腺癌是最常见的甲状腺恶性肿瘤,通常不会危及生命,但可能会复发或进展为对抗传统疗法具有侵袭性的形式。更详细地了解甲状腺癌中激活的信号通路可能有助于确定针对这些肿瘤的新的治疗方法。本研究的目的是确定甲状腺癌中激活的信号通路。

方法/主要发现:我们使用 L/R 数据库 DRLP-rev1 和五个公开的甲状腺癌基因表达数据集,检查了配体/受体 (L/R) 对的协调基因表达模式,共对 41 对配对的甲状腺癌/正常甲状腺组织进行了分析。我们鉴定出 26 个(上调)和 13 个(下调)L/R 对协调且差异表达。通过对正常甲状腺细胞中经转染重排(RET)/PTC1 感染的甲状腺细胞进行相同的分析,证实了这些 L/R 对的相关性。TGFA/EGFR 是最受调控的 L/R 对之一。此外,通过实时 RT-PCR 分析的 PTC 临床样本表达的 EGFR 转录本水平与来自非甲状腺癌患者的 5 个正常甲状腺组织相似,而仅在 PTC 中存在明显升高的 TGFA 转录本。对 PTC 细胞系的生化分析表明,EGFR 存在于细胞膜上,而 TGFA 存在于条件培养基中。此外,PTC 细胞系 NIM-1 的条件培养基可激活 HeLa 细胞上表达的 EGFR,导致 ERK 和 AKT 磷酸化。在携带 BRAF 突变的 NIM-1 细胞中,TGFA 刺激增殖,导致 PI3K/AKT 激活独立于 MEK/ERK 信号传导。

结论/意义:我们编制了一份与甲状腺癌相关的可靠 L/R 对列表,并验证了其中一个 L/R 对,即 TGFA/EGFR,在这种癌症中的生物学作用,这是在体外进行的。这些数据提供了对甲状腺癌生物学相关因素的更好理解,并将有助于开发针对这些癌症的联合治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec66/2943897/9d2c91fe1572/pone.0012701.g001.jpg

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