4.5 Article

High glucose-ROS conditions enhance the progression in cholangiocarcinoma via upregulation of MAN2A2 and CHD8

期刊

CANCER SCIENCE
卷 112, 期 1, 页码 254-264

出版社

WILEY
DOI: 10.1111/cas.14719

关键词

CHD8; cholangiocarcinoma; high glucose; reactive oxygen species

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资金

  1. TRF Senior Research Scholar Grant [RTA5780012]
  2. Faculty of Medicine, Khon Kaen University [IN58208]
  3. MRG Researcher grant, Thailand Research Fund [MRG6180074]
  4. Khon Kaen University [KKU6200020003]
  5. JSPS KAKENHI [20KK0185]
  6. Grants-in-Aid for Scientific Research [20KK0185] Funding Source: KAKEN

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The study demonstrated that high glucose conditions promote the progression of cholangiocarcinoma through ROS-mediated upregulation of MAN2A2 and CHD8. CHD8 regulates cell proliferation and migration by controlling the expression of MAN2A2.
Diabetes is a major risk factor in the development and progression of several cancers including cholangiocarcinoma (CCA). However, the molecular mechanism by which hyperglycemia potentiates progression of CCA is not clearly understood. Here, we showed that a high glucose condition significantly increased reactive oxygen species (ROS) production and promoted aggressive phenotypes of CCA cells, including proliferation and migration activities. Mannosidase alpha class 2a member 2 (MAN2A2), was upregulated at both mRNA and protein levels in a high glucose- and ROS-dependent manner. In addition, cell proliferation and migration were significantly reduced by MAN2A2 knockdown. Based on our proteome and in silico analyses, we further found that chromodomain helicase DNA-binding protein 8 (CHD8) was induced by ROS signaling and regulated MAN2A2 expression. Overexpression of CHD8 increased MAN2A2 expression, while CHD8 knockdown dramatically reduced proliferation and migration as well as MAN2A2 expression in CCA cells. Moreover, both MAN2A2 and CHD8 were highly expressed with positive correlation in CCA tumor tissues. Collectively, these data suggested that high glucose conditions promote CCA progression through ROS-mediated upregulation of MAN2A2 and CHD8. Thus, glucose metabolism is a promising therapeutic target to control tumor progression in patients with CCA and diabetes.

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