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American Journal of Translational Research|December 4, 2009
Neuroendocrine differentiation in prostate cancerYin Sun, Junyang Niu, Jiaoti HuangThe Journal of Biological Chemistry|March 14, 2012
Overexpression of SKI oncoprotein leads to p53 degradation through regulation of MDM2 protein sumoylationBoxiao Ding, Yin Sun, Jiaoti HuangCurrent Opinion in Urology|February 7, 2013
Molecular pathology of prostate cancer revealed by next-generation sequencing: opportunities for genome-based personalized therapyJiaoti Huang, Jason K Wang, Yin SunThe Journal of Biological Chemistry|April 2, 2011
SYT-SSX1 (synovial sarcoma translocated) regulates PIASy ligase activity to cause overexpression of NCOA3 proteinYin Sun, Juanita Perera, Brian P Rubin, et al.Molecular Cancer Research : MCR|December 17, 2014
p53 Mutation Directs AURKA Overexpression via miR-25 and FBXW7 in Prostatic Small Cell Neuroendocrine CarcinomaZhen Li, Yin Sun, Xufeng Chen, et al.Endocrine-Related Cancer|August 25, 2012
Arsenic trioxide synergizes with everolimus (Rad001) to induce cytotoxicity of ovarian cancer cells through increased autophagy and apoptosisNan Liu, Sheng Tai, Boxiao Ding, et al.Frontiers in Oncology|January 10, 2022
Glycosylation Changes in Prostate Cancer ProgressionWilliam Butler, Jiaoti HuangPrecision Clinical Medicine|April 12, 2021
Neuroendocrine cells of the prostate: Histology, biological functions, and molecular mechanismsWilliam Butler, Jiaoti HuangPrecision Clinical Medicine|October 11, 2019
The expanded role of fatty acid metabolism in cancer: new aspects and targetsMing Chen, Jiaoti HuangThe Journal of Biological Chemistry|December 7, 2006
Phosphatidylinositol 3-kinase-AKT-mammalian target of rapamycin pathway is essential for neuroendocrine differentiation of prostate cancerChengyu Wu, Jiaoti HuangPageof 91