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The Autotaxin—Lysophosphatidic Acid Axis Promotes Lung Carcinogenesis

自交轴蛋白 溶血磷脂酸 癌变 肺癌 癌症研究 生物 发病机制 癌症 受体 免疫学 医学 内科学 生物化学 遗传学
作者
Christiana Magkrioti,Nikos Oikonomou,Eleanna Kaffe,Marios-Angelos Mouratis,Nikos Xylourgidis,Iliana Barbayianni,Petros Megadoukas,Vaggelis Harokopos,Christos Valavanis,Jerold Chun,Alexandra Kosma,Georgios T. Stathopoulos,Evangelos Bouros,Demosthenes Bouros,Konstantinos Syrigos,Vassilis Aidinis
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:78 (13): 3634-3644 被引量:54
标识
DOI:10.1158/0008-5472.can-17-3797
摘要

Pathogenesis and progression of lung cancer are governed by complex interactions between the environment and host genetic susceptibility, which is further modulated by genetic and epigenetic changes. Autotaxin (ATX, ENPP2) is a secreted glycoprotein that catalyzes the extracellular production of lysophosphatidic acid (LPA), a growth-factor-like phospholipid that is further regulated by phospholipid phosphatases (PLPP). LPA's pleiotropic effects in almost all cell types are mediated through at least six G-protein coupled LPA receptors (LPAR) that exhibit overlapping specificities, widespread distribution, and differential expression profiles. Here we use both preclinical models of lung cancer and clinical samples (from patients and healthy controls) to investigate the expression levels, activity, and biological role of the above components of the ATX/LPA axis in lung cancer. ENPP2 was genetically altered in 8% of patients with lung cancer, whereas increased ATX staining and activity were detected in patient biopsies and sera, respectively. Moreover, PLPP3 expression was consistently downregulated in patients with lung cancer. Comparable observations were made in the two most widely used animal models of lung cancer, the carcinogen urethane-induced and the genetically engineered K-rasG12D -driven models, where genetic deletion of Enpp2 or Lpar1 resulted in disease attenuation, thus confirming a procarcinogenic role of LPA signaling in the lung. Expression profiling data analysis suggested that metabolic rewiring may be implicated in the procarcinogenic effects of the ATX/LPA axis in K-ras- G12D -driven lung cancer pathogenesis.Significance: These findings establish the role of ATX/LPA in lung carcinogenesis, thus expanding the mechanistic links between pulmonary fibrosis and cancer. Cancer Res; 78(13); 3634-44. ©2018 AACR.
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