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KDM5A silencing transcriptionally suppresses the FXYD3-PI3K/AKT axis to inhibit angiogenesis in hepatocellular cancer via miR-433 up-regulation.
Ma, Yu-Shui; Wu, Ting-Miao; Qian, Bin; Liu, Yu-Shan; Ding, Hua; Fan, Ming-Ming; Liu, Ji-Bin; Yu, Fei; Wang, Hui-Min; Shi, Yi; Gu, Li-Peng; Li, Liu; Tian, Lin-Lin; Wang, Pei-Yao; Wang, Gao-Ren; Wu, Zhi-Jun; Zou, Qi-Fei; Ling, Chang-Chun; Fu, Da.
Afiliación
  • Ma YS; Central Laboratory for Medical Research, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Wu TM; Department of Radiology, The Forth Affiliated Hospital of Anhui Medical University, Hefei, China.
  • Qian B; Cancer Institute, Nantong Tumor Hospital, Nantong, China.
  • Liu YS; Department of Radiology, The Forth Affiliated Hospital of Anhui Medical University, Hefei, China.
  • Ding H; Department of General Surgery, Shanghai Eighth People's Hospital, Shanghai, China.
  • Fan MM; Department of Pathology, Nantong Tumor Hospital, Nantong, China.
  • Liu JB; Department of Radiotherapy, Nantong Tumor Hospital, Nantong, China.
  • Yu F; Department of Biliary Surgery IV, Eastern Hepatobiliary Surgery Hospital, Shanghai, China.
  • Wang HM; Cancer Institute, Nantong Tumor Hospital, Nantong, China.
  • Shi Y; Department of Nuclear Medicine, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Gu LP; Cancer Institute, Nantong Tumor Hospital, Nantong, China.
  • Li L; Cancer Institute, Nantong Tumor Hospital, Nantong, China.
  • Tian LL; Central Laboratory for Medical Research, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Wang PY; Central Laboratory for Medical Research, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Wang GR; Central Laboratory for Medical Research, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Wu ZJ; Central Laboratory for Medical Research, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
  • Zou QF; Department of Radiotherapy, Nantong Tumor Hospital, Nantong, China.
  • Ling CC; Department of Oncology, Nantong Second People's Hospital, Nantong, China.
  • Fu D; Department of Biliary Surgery IV, Eastern Hepatobiliary Surgery Hospital, Shanghai, China.
J Cell Mol Med ; 25(8): 4040-4052, 2021 04.
Article en En | MEDLINE | ID: mdl-33621431
Hepatocellular cancer (HCC) has been reported to belong to one of the highly vascularized solid tumours accompanied with angiogenesis of human umbilical vein endothelial cells (HUVECs). KDM5A, an attractive drug target, plays a critical role in diverse physiological processes. Thus, this study aims to investigate its role in angiogenesis and underlying mechanisms in HCC. ChIP-qPCR was utilized to validate enrichment of H3K4me3 and KDM5A on the promotor region of miR-433, while dual luciferase assay was carried out to confirm the targeting relationship between miR-433 and FXYD3. Scratch assay, transwell assay, Edu assay, pseudo-tube formation assay and mice with xenografted tumours were conducted to investigate the physiological function of KDM5A-miR-433-FXYD3-PI3K-AKT axis in the progression of HCC after loss- and gain-function assays. KDM5A p-p85 and p-AKT were highly expressed but miR-433 was down-regulated in HCC tissues and cell lines. Depletion of KDM5A led to reduced migrative, invasive and proliferative capacities in HCC cells, including growth and a lowered HUVEC angiogenic capacity in vitro. Furthermore, KDM5A suppressed the expression of miR-433 by demethylating H3K4me3 on its promoterregion. miR-433 negatively targeted FXYD3. Depleting miR-433 or re-expressing FXYD3 restores the reduced migrative, invasive and proliferative capacities, and lowers the HUVEC angiogenic capacity caused by silencing KDM5A. Therefore, KDM5A silencing significantly suppresses HCC tumorigenesis in vivo, accompanied with down-regulated miR-433 and up-regulated FXYD3-PI3K-AKT axis in tumour tissues. Lastly, KDM5A activates the FXYD3-PI3K-AKT axis to enhance angiogenesis in HCC by suppressing miR-433.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Carcinoma Hepatocelular / Fosfatidilinositol 3-Quinasas / MicroARNs / Proteínas Proto-Oncogénicas c-akt / Proteína 2 de Unión a Retinoblastoma / Proteínas de la Membrana / Proteínas de Neoplasias / Neovascularización Patológica Tipo de estudio: Prognostic_studies Idioma: En Revista: J Cell Mol Med Asunto de la revista: BIOLOGIA MOLECULAR Año: 2021 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Carcinoma Hepatocelular / Fosfatidilinositol 3-Quinasas / MicroARNs / Proteínas Proto-Oncogénicas c-akt / Proteína 2 de Unión a Retinoblastoma / Proteínas de la Membrana / Proteínas de Neoplasias / Neovascularización Patológica Tipo de estudio: Prognostic_studies Idioma: En Revista: J Cell Mol Med Asunto de la revista: BIOLOGIA MOLECULAR Año: 2021 Tipo del documento: Article País de afiliación: China