scholarly journals Differential expression of microRNAs in Marek's disease virus-transformed T-lymphoma cell lines

2009 ◽  
Vol 90 (7) ◽  
pp. 1551-1559 ◽  
Author(s):  
Yongxiu Yao ◽  
Yuguang Zhao ◽  
Lorraine P. Smith ◽  
Charles H. Lawrie ◽  
Nigel J. Saunders ◽  
...  

MicroRNAs (miRNAs) are increasingly recognized to play crucial roles in regulation of gene expression in different biological events, including many sporadic forms of cancer. However, despite the involvement of several viruses in inducing cancer, only a limited number of studies have been carried out to examine the miRNA expression signatures in virus-induced neoplasia, particularly in herpesvirus-induced tumours where virus-encoded miRNAs also contribute significantly to the miRNome of the tumour cell. Marek's disease (MD) is a naturally occurring, rapid-onset CD4+ T-cell lymphoma of poultry, induced by the highly contagious Marek's disease virus (MDV). High levels of expression of virus-encoded miRNAs and altered expression of several host-encoded miRNAs were demonstrated in the MDV-transformed lymphoblastoid cell line MSB-1. In order to identify the miRNA expression signature specific to MDV-transformed cells, we examined the global miRNA expression profiles in seven distinct MDV-transformed cell lines by microarray analysis. This study revealed that, in addition to the high levels of MDV-encoded miRNAs, these MD tumour-derived lymphoblastoid cell lines showed altered expression of several host-encoded miRNAs. Comparison of the miRNA expression profiles of these cell lines with the MDV-negative, retrovirus-transformed AVOL-1 cell line showed that miR-150 and miR-223 are downregulated irrespective of the viral aetiology, whereas downregulation of miR-155 was specific for MDV-transformed tumour cells. Thus, increased expression of MDV-encoded miRNAs with specific downregulation of miR-155 can be considered as unique expression signatures for MD tumour cells. Analysis of the functional targets of these miRNAs would contribute to the understanding of the molecular pathways of MD oncogenicity.

Blood ◽  
2011 ◽  
Vol 118 (21) ◽  
pp. 1488-1488
Author(s):  
Xiaomei Chen ◽  
Wei Xiong ◽  
Xiangjun Chen ◽  
Cong Lu ◽  
Fang Liu ◽  
...  

Abstract Abstract 1488 Microvesicles (MVs) released by leukemia cells constitute an important part of the leukemia microenvironment. As a cell-to-cell communication tool, MVs transfer microRNA(miRNA) between cells. MVs miRNAs may be valuable not only as a diagnostic tool but may also provide an insight in the role of miRNAs playing in the underlying of pathophysiologic processes of various leukemia. It is worth evaluating whether MVs possess some unique miRNA content depending on their corresponding leukemia origin that could be applicable in diagnosis. Hence, we determined the miRNA expression profiles of ALL-derived MVs using Agilent miRNA microarray analysis. The five miRNAs obtained by microarray profiling were validated using real-time PCR. The putative target genes were predicted by bioformation software. Here, we provided MVs miRNA patterns derived from the healthy controls, B-ALL cell line Nalm 6 cells and T-ALL cell line Jurkat cells. We identified 182 dysregulated miRNAs in MVs derived from Nalm 6 cells as compared with MVs from normal controls (P<0.05); both up regulated(123/182) and down regulated(59/182) expressions were observed. Likewise 166 miRNAs were significantly differentially expressed in MVs derived from Jurkat cells versus MVs from normal peripheral blood (P<0.05), 114 miRNAs of which (114/166) were up expression and 52 miRNAs (52/166) were down expression. We also fould that 44 miRNAs were only detected in B-ALL-derived MVs. MiR-1290, miR-1246, miR-1268, miR-1226, and miR-424 were top 5 expressed in Nalm 6 derived MVs, suggesting that those miRNAs may play an important role in B-ALL. We observed that 16 miRNAs detected only in T cell derived MVs. MiR-96 is up regulated in MVs from T-ALL cells but not expressed in B-ALL. Specific and functional target sites for miR-96, exist in the 3'-UTR of the miRNA that encodes the putative tumor suppressor transcription factor FOXO1. The expression signatures of miR-96 could discriminate B-ALL from T-ALL. In contrast, the MVs from B-ALL cell line, shared 100 miRNAs with MVs from T-ALL cell line, suggestting that those miRNAs play roles in both B-and T-ALL. Of 100 miRNAs, 99 miRNAs were high expression, indicating that miRNAs were active in ALL. This obsearvation suggusted that miRNA differential expression in MVs were partially significantly related to subtypes of acute lymphoblastic leukemia. Intriguing is that miR1290 is top higher expression both in MVs derived from Nalm6 cells and from Jurkat cells; miR-1290 is 475-fold higher expressed in Nalm 6 derived MVs versus MVs from normal cells, whereas this miRNA is 245-fold higher expressed in Jurkat cells. Five of these miRNAs were selected to be further assayed and validated by PCR. The qRT-PCR results correlated well with the microarray data. In addition, we found seven miRNAs(miR-148b, miR-484, miR-let-7f, let-7a, miR-223, miR16 and miR-27b) were located near the 11q23 chromosomal region. With bioinformatic tools (TargetScan), we predicted potential target genes for those miRNAs that exhibited altered expression in MVs from B-ALL and T-ALL. The p85 subunit of phosphatidylinositol 3-kinase (PI3-K) was found to be a potential target of miR-320. Of particular interest, we found that protein tyrosine phosphatase-like member b (PTPLB) may be a potential target of miR-1290. The 474-fold increase in miR-1290 in MVs from Nalm 6 cells, indicating that miR-1290 may participate in the modulation of leukemia by targeting PTPLB, a specific, negative regulator of p210 bcr-abl signal. In conclusion, we identified miRNAs and found that miRNA expression profiles were ALL subtype-specific. Altered miRNA expression levels may lead to an inappropriate expression of target oncoproteins or target tumor suppressors, thereby facilitating the development of leukemia. These findings expanded the potential diagnostic markers of leukemia and provided useful information to ALL pathogenesis. Disclosures: No relevant conflicts of interest to declare.


2009 ◽  
Vol 90 (5) ◽  
pp. 1164-1171 ◽  
Author(s):  
Luke S. Lambeth ◽  
Yongxiu Yao ◽  
Lorraine P. Smith ◽  
Yuguang Zhao ◽  
Venugopal Nair

MicroRNAs (miRNAs) are a class of short RNAs that function as post-transcriptional suppressors of protein expression and are involved in a variety of biological processes, including oncogenesis. Several recent studies have implicated the involvement of miR-221 and miR-222 in tumorigenesis as these miRNAs are upregulated in a number of cancers and affect the expression of cell cycle regulatory proteins such as the cyclin-dependent kinase (cdk) inhibitor p27Kip1. Marek's disease virus (MDV) is a highly oncogenic herpesvirus that affects poultry, causing acute neoplastic disease with lymphomatous lesions in several organs. MDV-encoded oncogenes such as Meq are directly implicated in the neoplastic transformation of T cells and have been well studied. More recently, however, the involvement of both host and virus-encoded miRNAs in the induction of MD lymphomas is being increasingly recognized. We analysed the miRNA expression profiles in the MDV-transformed lymphoblastoid cell line MSB-1 and found that endogenous miRNAs miR-221 and miR-222 were significantly upregulated. Demonstration of the conserved binding sites for these miRNAs in the chicken p27Kip1 3′-untranslated region sequence and the repression of luciferase activity of reporter constructs indicated that miR-221 and miR-222 target p27Kip1 in these cells. We also found that overexpression of miR-221 and miR-222 decreased p27Kip1 levels and that treatment with retrovirally expressed antagomiRs partially alleviated this suppression. These data show that an oncogenic herpesvirus, as in the case of many cancers, can exploit the miRNA machinery for suppressing cell cycle regulatory molecules such as p27Kip1 in the induction and progression of T-cell lymphomas.


Genes ◽  
2019 ◽  
Vol 10 (2) ◽  
pp. 115 ◽  
Author(s):  
Julie Hicks ◽  
Hsiao-Ching Liu

Marek’s Disease is a lymphoproliferative disease of chickens caused by Marek’s Disease Virus. Similar to other herpesviruses, Marek’s Disease Virus (MDV) encodes its own small non-coding regulatory RNAs termed microRNAs (miRNAs). We previously found that the expression profile of these viral miRNAs is affected by vaccination with Herpesvirus of Turkeys (HVT). To further characterize miRNA-mediated gene regulation in MDV infections, in the current study we examine the impact of HVT vaccination on cellular miRNA expression in MDV-infected specific-pathogen-free (SPF) chickens. We used small RNA-seq to identify 24 cellular miRNAs that exhibited altered splenic expression in MDV infected chickens (42 dpi) compared to age-matched uninfected birds. We then used Real Time-quantitative PCR (RT-qPCR) to develop expression profiles of a select group of these host miRNAs in chickens receiving the HVT vaccine and in vaccinated chickens subsequently infected with MDV. As was seen with viral miRNA, host miRNAs had unique splenic expression profiles between chickens infected with HVT, MDV, or co-infected birds. We also discovered a group of transcription factors, using a yeast one-hybrid screen, which regulates immune responses and cell growth pathways and also likely regulates the expression of these cellular miRNAs. Overall, this study suggests cellular miRNAs are likely a critical component of both protection from and progression of Marek’s Disease.


Author(s):  
Gabriela Pereira Branco ◽  
Renan Valieris ◽  
Lucas Venezian Povoa ◽  
Luiza Ferreira de Araújo ◽  
Gustavo Ribeiro Fernandes ◽  
...  

2017 ◽  
Vol 41 (4) ◽  
pp. 1519-1531 ◽  
Author(s):  
Beibei Bie ◽  
Jin Sun ◽  
Jun Li ◽  
Ying Guo ◽  
Wei Jiang ◽  
...  

Background/Aims: Baicalein has been shown to possess significant anti-hepatoma activity by inhibiting cell proliferation. Whether the anti-proliferative effect of baicalein is related to its modulation of miRNA expression in hepatocellular carcinoma (HCC) is still unknown. Methods: The anti-proliferative effects of baicalein on HCC cell line Bel-7402 was assessed by detecting the proliferation activity, cell cycle distribution, expression changes of p21/CDKN1A, P27/CDKN1B, total Akt and phosphoryted AKT. Microarray analysis was conducted to determine the miRNA expression profiles in baicalein-treated or untreated Bel-7402 cells and then validated by qRT-PCR in two HCC cell lines (Bel-7402 and Hep3B). The gain-of-function of miR-3127-5p was performed by detecting anti-proliferative effects after transfecting miRNA mimics in cells. Finally, the expression level of miR-3127-5p in different HCC cell lines was determined by qRT-PCR. Results: Baicalein was able to inhibit the proliferation of Bel-7402 cells by inducing cell cycle arrest at the S and G2/M phase via up-regulating the expression of p21/CDKN1A and P27/CDKN1B and suppressing the PI3K/Akt pathway. Baicalein could alter the miRNA expression profiles in Bel-7402 cells. Putative target genes for differentially expressed miRNAs could be enriched in terms of cell proliferation regulation, cell cycle arrest and were mainly involved in MAPK, PI3K-Akt, Wnt, Hippo and mTOR signaling pathways. MiR- 3127-5p, one of up-regulated miRNAs, exhibits low expression level in several HCC cell lines and its overexpression could inhibit cell growth of Bel-7402 and Hep3B cell lines by inducing S phase arrest by up-regulating the expression of p21and P27 and repressing the PI3K/Akt pathway. Conclusions: Modulation of miRNA expression may be an important mechanism underlying the anti-hepatoma effects of baicalein.


2019 ◽  
Vol 93 (17) ◽  
Author(s):  
Yaoyao Zhang ◽  
Na Tang ◽  
Jun Luo ◽  
Man Teng ◽  
Katy Moffat ◽  
...  

ABSTRACT MicroRNAs (miRNAs) are small noncoding RNAs with profound regulatory roles in many areas of biology, including cancer. MicroRNA 155 (miR-155), one of the extensively studied multifunctional miRNAs, is important in several human malignancies such as diffuse large B cell lymphoma and chronic lymphocytic leukemia. Moreover, miR-155 orthologs KSHV-miR-K12-11 and MDV-miR-M4, encoded by Kaposi’s sarcoma-associated herpesvirus (KSHV) and Marek’s disease virus (MDV), respectively, are also involved in oncogenesis. In MDV-induced T-cell lymphomas and in lymphoblastoid cell lines derived from them, MDV-miR-M4 is highly expressed. Using excellent disease models of infection in natural avian hosts, we showed previously that MDV-miR-M4 is critical for the induction of T-cell lymphomas as mutant viruses with precise deletions were significantly compromised in their oncogenicity. However, those studies did not elucidate whether continued expression of MDV-miR-M4 is essential for maintaining the transformed phenotype of tumor cells. Here using an in situ CRISPR/Cas9 editing approach, we deleted MDV-miR-M4 from the MDV-induced lymphoma-derived lymphoblastoid cell line MDCC-HP8. Precise deletion of MDV-miR-M4 was confirmed by PCR, sequencing, quantitative reverse transcription-PCR (qRT-PCR), and functional analysis. Continued proliferation of the MDV-miR-M4-deleted cell lines demonstrated that MDV-miR-M4 expression is not essential for maintaining the transformed phenotype, despite its initial critical role in the induction of lymphomas. Ability to examine the direct role of oncogenic miRNAs in situ in tumor cell lines is valuable in delineating distinct determinants and pathways associated with the induction or maintenance of transformation in cancer cells and will also contribute significantly to gaining further insights into the biology of oncogenic herpesviruses. IMPORTANCE Marek’s disease virus (MDV) is an alphaherpesvirus associated with Marek’s disease (MD), a highly contagious neoplastic disease of chickens. MD serves as an excellent model for studying virus-induced T-cell lymphomas in the natural chicken hosts. Among the limited set of genes associated with MD oncogenicity, MDV-miR-M4, a highly expressed viral ortholog of the oncogenic miR-155, has received extensive attention due to its direct role in the induction of lymphomas. Using a targeted CRISPR-Cas9-based gene editing approach in MDV-transformed lymphoblastoid cell lines, we show that MDV-miR-M4, despite its critical role in the induction of tumors, is not essential for maintaining the transformed phenotype and continuous proliferation. As far as we know, this was the first study in which precise editing of an oncogenic miRNA was carried out in situ in MD lymphoma-derived cell lines to demonstrate that it is not essential in maintaining the transformed phenotype.


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