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  4. ENO1 promotes lung cancer metastasis via HGFR and WNT signaling–driven epithelial-to-mesenchymal transition
 
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ENO1 promotes lung cancer metastasis via HGFR and WNT signaling–driven epithelial-to-mesenchymal transition

Journal
Cancer research
Journal Volume
81
Journal Issue
15
Date Issued
2021-08-01
Author(s)
Li, Hsin-Jung
Ke, Feng-Yi
Lin, Chia-Ching
Lu, Mei-Yi
Kuo, Yi-Huei
YI-PING WANG  
Liang, Kang-Hao
Lin, Shin-Chang
Chang, Ya-Hsuan
Chen, Hsuan-Yu
PAN-CHYR YANG  
Wu, Han-Chung
DOI
10.1158/0008-5472.CAN-20-3543
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/586047
URL
https://api.elsevier.com/content/abstract/scopus_id/85111623671
Abstract
ENO1 (α-enolase) expression is significantly correlated with reduced survival and poor prognosis in many cancer types, including lung cancer. However, the function of ENO1 in carcinogenesis remains elusive. In this study, we found that high expression of ENO1 is present in metastatic lung cancer cell lines and malignant tumors and is associated with poor overall survival of patients with lung cancer. Knockdown of ENO1 decreased cancer cell proliferation and invasiveness, whereas overexpression of ENO1 enhanced these processes. Moreover, ENO1 expression promoted tumor growth in orthotopic models and enhanced lung tumor metastasis in tail-vein injection models. These effects were mediated by upregulation of mesenchymal markers N-cadherin and vimentin and the epithelial-to-mesenchymal transition regulator SLUG, along with concurrent downregulation of E-cadherin. Mechanistically, ENO1 interacted with hepatocyte growth factor receptor (HGFR) and activated HGFR and Wnt signaling via increased phosphorylation of HGFR and the Wnt coreceptor LRP5/6. Activation of these signaling axes decreased GSK3β activity via Src-PI3K-AKT signaling and inactivation of the β-catenin destruction complex to ultimately upregulate SLUG and β-catenin. In addition, we generated a chimeric anti-ENO1 mAb (chENO1-22) that can decrease cancer cell proliferation and invasion. chENO1-22 attenuated cancer cell invasion by inhibiting ENO1-mediated GSK3β inactivation to promote SLUG protein ubiquitination and degradation. Moreover, chENO1-22 prevented lung tumor metastasis and prolonged survival in animal models. Taken together, these findings illuminate the molecular mechanisms underlying the function of ENO1 in lung cancer metastasis and support the therapeutic potential of a novel antibody targeting ENO1 for treating lung cancer. SIGNIFICANCE: This study shows that ENO1 promotes lung cancer metastasis via HGFR and WNT signaling and introduces a novel anti-ENO1 antibody for potential therapeutic use in lung cancer.
SDGs

[SDGs]SDG3

Other Subjects
Eno1 protein, mouse; enolase; scatter factor receptor; animal; epithelial mesenchymal transition; female; genetics; human; lung tumor; metabolism; metastasis; mouse; nonobese diabetic mouse; Wnt signaling; Animals; Epithelial-Mesenchymal Transition; Femal
Type
journal article

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