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July 5, 2017Clinical Cancer Research126 citationsOpen Access

Downregulation of Human Endogenous Retrovirus Type K (HERV-K) Viral env RNA in Pancreatic Cancer Cells Decreases Cell Proliferation and Tumor Growth

MLMing LiLRLaszlo RadvanyiBYBingnan Yin

Structured PICO

Does HERV-K knockdown reduce tumor growth and metastasis in pancreatic cancer models?

P
Population
Pancreatic cancer cell lines (7 lines), normal pancreatic cell lines (2 lines), pancreatic cancer patient biopsies, pancreatic cancer patient sera (N=106), and normal donor sera (N=40)
I
Intervention
shRNA targeting HERV-K env (knockdown)
C
Comparator
Control (implied, untreated or non-targeting shRNA)
O
Outcome
In vitro and in vivo tumor growth rates and metastasissurrogate

Knockdown of HERV-K env reduces pancreatic cancer cell proliferation and tumor growth via the RAS-ERK-RSK pathway, suggesting it as a potential therapeutic target and biomarker.

Abstract

Abstract Purpose: We investigated the role of the human endogenous retrovirus type K (HERV-K) envelope (env) gene in pancreatic cancer. Experimental Design: shRNA was employed to knockdown (KD) the expression of HERV-K in pancreatic cancer cells. Results: HERV-K env expression was detected in seven pancreatic cancer cell lines and in 80% of pancreatic cancer patient biopsies, but not in two normal pancreatic cell lines or uninvolved normal tissues. A new HERV-K splice variant was discovered in several pancreatic cancer cell lines. Reverse transcriptase activity and virus-like particles were observed in culture media supernatant obtained from Panc-1 and Panc-2 cells. HERV-K viral RNA levels and anti-HERV-K antibody titers were significantly higher in pancreatic cancer patient sera (N = 106) than in normal donor sera (N = 40). Importantly, the in vitro and in vivo growth rates of three pancreatic cancer cell lines were significantly reduced after HERV-K KD by shRNA targeting HERV-K env, and there was reduced metastasis to lung after treatment. RNA-Seq results revealed changes in gene expression after HERV-K env KD, including RAS and TP53. Furthermore, downregulation of HERV-K Env protein expression by shRNA also resulted in decreased expression of RAS, p-ERK, p-RSK, and p-AKT in several pancreatic cancer cells or tumors. Conclusions: These results demonstrate that HERV-K influences signal transduction via the RAS–ERK–RSK pathway in pancreatic cancer. Our data highlight the potentially important role of HERV-K in tumorigenesis and progression of pancreatic cancer, and indicate that HERV-K viral proteins may be attractive biomarkers and/or tumor-associated antigens, as well as potentially useful targets for detection, diagnosis, and immunotherapy of pancreatic cancer. Clin Cancer Res; 23(19); 5892–911. ©2017 AACR.

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Cite This Study

Li et al. (2017) studied this question.

synapsesocial.com/papers/6a7ccf5ddb34f8682b5bc490https://doi.org/10.1158/1078-0432.ccr-17-0001
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