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Gleason Score 3+4=7 Prostate Carcinomas Detected by MRI-Targeted Biopsies Contain Higher Percentage of Pattern 4 and Are Less Likely to Be Upgraded in Radical Prostatectomies [Meeting Abstract]
Zhao, Yani; Deng, Fang-Ming; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming
ISI:000394467301366
ISSN: 1530-0285
CID: 2517582
Clinical Significance of Tertiary Pattern 4 in Gleason 3+3=6 Adenocarcinoma of the Prostate [Meeting Abstract]
Barna, Nicholas; Ettel, Mark; Chen, Fei; Lee, Peng; Huang, Hongying; Melamed, Jonathan; Zhou, Ming; Deng, Fang-Ming
ISI:000394467301129
ISSN: 1530-0285
CID: 2517522
Gleason Score 7 and 8 Prostate Cancer with Cribriform Morphology Diagnosed in Prostate Biopsy Is More Likely to Have Seminal Vesicle Invasion and Pelvic Lymph Node Metastasis in Radical Prostatectomy [Meeting Abstract]
Wang, Ling; Deng, Fang-Ming; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming
ISI:000393724401340
ISSN: 1530-0307
CID: 2506732
Comparison of Standard and MRI Targeted Biopsy in Anterior Predominant Prostate Cancer [Meeting Abstract]
Peng, Yu-Ching; Wang, Ying; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming; Deng, Fang-Ming
ISI:000393724401274
ISSN: 1530-0307
CID: 2506722
Gleason Score 3+4=7 Prostate Carcinomas Detected by MRI-Targeted Biopsies Contain Higher Percentage of Pattern 4 and Are Less Likely to Be Upgraded in Radical Prostatectomies [Meeting Abstract]
Zhao, Yani; Deng, Fang-Ming; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming
ISI:000393724401366
ISSN: 1530-0307
CID: 2506762
Clinical Significance of Tertiary Pattern 4 in Gleason 3+3=6 Adenocarcinoma of the Prostate [Meeting Abstract]
Barna, Nicholas; Ettel, Mark; Chen, Fei; Lee, Peng; Huang, Hongying; Melamed, Jonathan; Zhou, Ming; Deng, Fang-Ming
ISI:000393724401129
ISSN: 1530-0307
CID: 2506702
MRI-Targeted Prostate Biopsy Detects More Cribriform Prostate Carcinoma Than Standard Sextant Prostate Biopsy [Meeting Abstract]
Wang, Ying; Deng, Fang-Ming; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming
ISI:000393724401341
ISSN: 1530-0307
CID: 2506742
Prostate Neuroendocrine Tumors: Clinicopathological Study of 15 Cases with Emphasis on the Neuroendocrine Tumors of the "Intermemdiate Grade" and Overlapping Features [Meeting Abstract]
Zhao, Yani; Deng, Fang-Ming; Huang, Hongying; Lee, Peng; Melamed, Jonathan; Zhou, Ming
ISI:000393724401365
ISSN: 1530-0307
CID: 2506752
LncRNA MEG3 downregulation mediated by DNMT3b contributes to nickel malignant transformation of human bronchial epithelial cells via modulating PHLPP1 transcription and HIF-1alpha translation
Zhou, C; Huang, C; Wang, J; Huang, H; Li, J; Xie, Q; Liu, Y; Zhu, J; Li, Y; Zhang, D; Zhu, Q; Huang, C
Long noncoding RNAs (lncRNAs) are emerging as key factors in various fundamental cellular biological processes, and many of them are likely to have functional roles in tumorigenesis. Maternally expressed gene 3 (MEG3) is an imprinted gene located at 14q32 that encodes a lncRNA, and the decreased MEG3 expression has been reported in multiple cancer tissues. However, nothing is known about the alteration and role of MEG3 in environmental carcinogen-induced lung tumorigenesis. Our present study, for the first time to the best of our knowledge, discovered that environmental carcinogen nickel exposure led to MEG3 downregulation, consequently initiating c-Jun-mediated PHLPP1 transcriptional inhibition and hypoxia-inducible factor-1alpha (HIF-1alpha) protein translation upregulation, in turn resulting in malignant transformation of human bronchial epithelial cells. Mechanistically, MEG3 downregulation was attributed to nickel-induced promoter hypermethylation via elevating DNMT3b expression, whereas PHLPP1 transcriptional inhibition was due to the decreasing interaction of MEG3 with its inhibitory transcription factor c-Jun. Moreover, HIF-1alpha protein translation was upregulated via activating the Akt/p70S6K/S6 axis resultant from PHLPP1 inhibition in nickel responses. Collectively, we uncover that nickel exposure results in DNMT3b induction and MEG3 promoter hypermethylation and expression inhibition, further reduces its binding to c-Jun and in turn increasing c-Jun inhibition of PHLPP1 transcription, leading to the Akt/p70S6K/S6 axis activation, and HIF-1alpha protein translation, as well as malignant transformation of human bronchial epithelial cells. Our studies provide a significant insight into understanding the alteration and role of MEG3 in nickel-induced lung tumorigenesis.Oncogene advance online publication, 6 March 2017; doi:10.1038/onc.2017.14.
PMCID:5525547
PMID: 28263966
ISSN: 1476-5594
CID: 2476982
Tumor-suppressor NFkappaB2 p100 interacts with ERK2 and stabilizes PTEN mRNA via inhibition of miR-494
Wang, Y; Xu, J; Gao, G; Li, J; Huang, H; Jin, H; Zhu, J; Che, X; Huang, C
Emerging evidence from The Cancer Genome Atlas has revealed that nuclear factor kappaB2 (nfkappab2) gene encoding p100 is genetically deleted or mutated in human cancers, implicating NFkappaB2 as a potential tumor suppressor. However, the molecular mechanism underlying the antitumorigenic action of p100 remains poorly understood. Here we report that p100 inhibits cancer cell anchorage-independent growth, a hallmark of cellular malignancy, by stabilizing the tumor-suppressor phosphatase and tensin homolog (PTEN) mRNA via a mechanism that is independent of p100's inhibitory role in NFkappaB activation. We further demonstrate that the regulatory effect of p100 on PTEN expression is mediated by its downregulation of miR-494 as a result of the inactivation of extracellular signal-regulated kinase 2 (ERK2), in turn leading to inhibition of c-Jun/activator protein-1-dependent transcriptional activity. Furthermore, we identify that p100 specifically interacts with non-phosphorylated ERK2 and prevents ERK2 phosphorylation and nuclear translocation. Moreover, the death domain at C-terminal of p100 is identified as being crucial and sufficient for its interaction with ERK2. Taken together, our findings provide novel mechanistic insights into the understanding of the tumor-suppressive role for NFkappaB2 p100.Oncogene advance online publication, 21 December 2015; doi:10.1038/onc.2015.470.
PMCID:4916044
PMID: 26686085
ISSN: 1476-5594
CID: 1884082