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1 "Adipogenesis"
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Original Article
Implication of PHF2 Expression in Clear Cell Renal Cell Carcinoma
Cheol Lee, Bohyun Kim, Boram Song, Kyung Chul Moon
J Pathol Transl Med. 2017;51(4):359-364.   Published online June 13, 2017
DOI: https://doi.org/10.4132/jptm.2017.03.16
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  • 9 Web of Science
  • 10 Crossref
AbstractAbstract PDF
Background
Clear cell renal cell carcinoma (CCRCC) is presumed to be associated with adipogenic differentiation. Histone modification is known to be important for adipogenesis, and the function of histone demethylase plant homeodomain finger 2 (PHF2) has been noted. In addition, PHF2 may act as a tumor suppressor via epigenetic regulation of p53 and is reported to be reduced in colon cancer and stomach cancer tissues. In this study, we examined PHF2 expression in CCRCC specimens by immunohistochemistry.
Methods
We studied 254 CCRCCs and 56 non-neoplastic renal tissues from patients who underwent radical or partial nephrectomy between 2000 and 2003 at the Seoul National University Hospital. Tissue microarray blocks were prepared, and immunohistochemical staining for PHF2 was performed.
Results
Among 254 CCRCC cases, 150 cases (59.1%) showed high expression and 104 cases (40.1%) showed low expression. High expression of PHF2 was significantly correlated with a low Fuhrman nuclear grade (p < .001), smaller tumor size (p < .001), low overall stage (p = .003), longer cancer-specific survival (p = .002), and progression-free survival (p < .001) of the patients. However, it was not an independent prognostic factor in multivariate analysis adjusted for Fuhrman nuclear grade and overall stage.
Conclusions
Our study showed that low expression of PHF2 is associated with aggressiveness and poor prognosis of CCRCC.

Citations

Citations to this article as recorded by  
  • The role of histone methylation in renal cell cancer: an update
    Yanguang Hou, Yan Yuan, Yanze Li, Lei Wang, Juncheng Hu, Xiuheng Liu
    Molecular Biology Reports.2023; 50(3): 2735.     CrossRef
  • Phosphorylation of PHF2 by AMPK releases the repressive H3K9me2 and inhibits cancer metastasis
    Ying Dong, Hao Hu, Xuan Zhang, Yunkai Zhang, Xin Sun, Hanlin Wang, Weijuan Kan, Min-jia Tan, Hong Shi, Yi Zang, Jia Li
    Signal Transduction and Targeted Therapy.2023;[Epub]     CrossRef
  • HIF-1α-mediated augmentation of miRNA-18b-5p facilitates proliferation and metastasis in osteosarcoma through attenuation PHF2
    Peng Luo, Yan-dong Zhang, Feng He, Chang-jun Tong, Kai Liu, He Liu, Shi-zhuang Zhu, Jian-zhou Luo, Bing Yuan
    Scientific Reports.2022;[Epub]     CrossRef
  • Integration of meta-analysis and supervised machine learning for pattern recognition in breast cancer using epigenetic data
    Reza Panahi, Esmaeil Ebrahimie, Ali Niazi, Alireza Afsharifar
    Informatics in Medicine Unlocked.2021; 24: 100629.     CrossRef
  • PHF2 regulates homology-directed DNA repair by controlling the resection of DNA double strand breaks
    Ignacio Alonso-de Vega, Maria Cristina Paz-Cabrera, Magdalena B Rother, Wouter W Wiegant, Cintia Checa-Rodríguez, Juan Ramón Hernández-Fernaud, Pablo Huertas, Raimundo Freire, Haico van Attikum, Veronique A J Smits
    Nucleic Acids Research.2020; 48(9): 4915.     CrossRef
  • Emerging of lysine demethylases (KDMs): From pathophysiological insights to novel therapeutic opportunities
    Sarder Arifuzzaman, Mst Reshma Khatun, Rabeya Khatun
    Biomedicine & Pharmacotherapy.2020; 129: 110392.     CrossRef
  • Biology and targeting of the Jumonji-domain histone demethylase family in childhood neoplasia: a preclinical overview
    Tyler S. McCann, Lays M. Sobral, Chelsea Self, Joseph Hsieh, Marybeth Sechler, Paul Jedlicka
    Expert Opinion on Therapeutic Targets.2019; 23(4): 267.     CrossRef
  • MiR-221 Promotes Hepatocellular Carcinoma Cells Migration via Targeting PHF2
    Yi Fu, Mingyan Liu, Fengxia Li, Li Qian, Ping Zhang, Fengwei Lv, Wenting Cheng, Ruixing Hou
    BioMed Research International.2019; 2019: 1.     CrossRef
  • PHF2 histone demethylase prevents DNA damage and genome instability by controlling cell cycle progression of neural progenitors
    Stella Pappa, Natalia Padilla, Simona Iacobucci, Marta Vicioso, Elena Álvarez de la Campa, Claudia Navarro, Elia Marcos, Xavier de la Cruz, Marian A. Martínez-Balbás
    Proceedings of the National Academy of Sciences.2019; 116(39): 19464.     CrossRef
  • Plant homeodomain finger protein 2 as a novel IKAROS target in acute lymphoblastic leukemia
    Zheng Ge, Yan Gu, Qi Han, Justin Sloane, Qinyu Ge, Goufeng Gao, Jinlong Ma, Huihui Song, Jiaojiao Hu, Baoan Chen, Sinisa Dovat, Chunhua Song
    Epigenomics.2018; 10(1): 59.     CrossRef

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