Expression and mutational analysis of MET in human solid cancers

自分泌信号 癌症研究 肝细胞生长因子 生物 受体酪氨酸激酶 癌变 血管生成 旁分泌信号 肿瘤进展 癌症 转移 组织微阵列 信号转导 酪氨酸激酶 受体 细胞生物学 遗传学
作者
C. Patrick,Maria Tretiakova,Alexander C. Mackinnon,Nithya Ramnath,Candace S. Johnson,Sascha Dietrich,Tanguy Y. Seiwert,James G. Christensen,Ramasamy Jagadeeswaran,Thomas Krausz,Everett E. Vokes,Aliya N. Husain,Ravi Salgia
出处
期刊:Genes, Chromosomes and Cancer [Wiley]
卷期号:47 (12): 1025-1037 被引量:281
标识
DOI:10.1002/gcc.20604
摘要

MET receptor tyrosine kinase and its ligand hepatocyte growth factor (HGF) regulate a variety of cellular functions, many of which can be dysregulated in human cancers. Activated MET signaling can lead to cell motility and scattering, angiogenesis, proliferation, branching morphogenesis, invasion, and eventual metastasis. We performed systematic analysis of the expression of the MET receptor and its ligand HGF in tumor tissue microarrays (TMA) from human solid cancers. Standard immunohistochemistry (IHC) and a computerized automated scoring system were used. DNA sequencing for MET mutations in both nonkinase and kinase domains was also performed. MET was differentially overexpressed in human solid cancers. The ligand HGF was widely expressed in both tumors, primarily intratumoral, and nonmalignant tissues. The MET/HGF likely is functional and may be activated in autocrine fashion in vivo. MET and stem cell factor (SCF) were found to be positively stained in the bronchioalevolar junctions of lung tumors. A number of novel mutations of MET were identified, particularly in the extracellular semaphorin domain and the juxtamembrane domain. MET-HGF pathway can be assayed in TMAs and is often overexpressed in a wide variety of human solid cancers. MET can be activated through overexpression, mutation, or autocrine signaling in malignant cells. Mutations in the nonkinase regions of MET might play an important role in tumorigenesis and tumor progression. MET would be an important therapeutic antitumor target to be inhibited, and in lung cancer, MET may represent a cancer early progenitor cell marker.
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