Inhibition of 15-PGDH causes Kras-driven tumor expansion through prostaglandin E2-ALDH1 signaling in the pancreas

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作者
Kota Arima
Masaki Ohmuraya
Keisuke Miyake
Mayu Koiwa
Tomoyuki Uchihara
Daisuke Izumi
Feng Gao
Atsuko Yonemura
Luke Bu
Hirohisa Okabe
Katsunori Imai
Daisuke Hashimoto
Yoshifumi Baba
Akira Chikamoto
Yo-ichi Yamashita
Toru Furukawa
Kimi Araki
Hideo Baba
Takatsugu Ishimoto
机构
[1] Kumamoto University,Department of Gastroenterological Surgery, Graduate School of Medical Sciences
[2] Kumamoto University,International Research Center for Medical Sciences
[3] Hyogo College of Medicine,Department of Genetics
[4] Tohoku University Graduate School of Medicine,Department of Histopathology
[5] Kumamoto University,Institute of Resource Development and Analysis
来源
Oncogene | 2019年 / 38卷
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摘要
The accumulation of prostaglandin E2 (PGE2) during chronic inflammation has been implicated in the progression of several cancers. Cyclooxygenase is the key synthesizing enzyme of PGE2, although the degradation enzyme 15-hydroxyprostaglandin dehydrogenase (15-PGDH) has received considerable attention recently. We investigated the molecular mechanisms of pancreatic ductal adenocarcinoma (PDAC) progression via 15-PGDH downregulation. Here, we found that 15-PGDH expression was inversely correlated with ALDH1, an important cancer stem cell-associated marker indicative of poor prognosis in humans. Moreover, we demonstrated that pharmacological inhibition of 15-PGDH enhanced CYP26A1 expression, leading to depletion of all-trans retinoic acid (ATRA) and expansion of the ALDH1-positive subset in both human PDAC cells and tumor cells of KrasLSL-G12D/+; Ptf1aCre/+ (KC) mice. Furthermore, genetic deletion of 15-Pgdh in KC mice showed PGE2 accumulation and ATRA depletion in the pancreas, resulting in PDAC with high levels of Aldh1 and Ki-67. Finally, ATRA replacement suppressed 15-PGDH inhibition-induced tumor progression in KC mice, and ATRA treatment attenuated Aldh1 activity in tumor cells isolated from the pancreas of 15-Pgdh−/− KC mice. These findings provide evidence that 15-PGDH inhibition enhances KRAS-driven tumor progression via ATRA depletion in the pancreas. Therefore, ATRA replacement could be a potential strategy for PDAC treatment.
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页码:1211 / 1224
页数:13
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