首页> 外文期刊>BMC Veterinary Research >Effect of gga-miR-155 on cell proliferation, apoptosis and invasion of Marek’s disease virus (MDV) transformed cell line MSB1 by targeting RORA
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Effect of gga-miR-155 on cell proliferation, apoptosis and invasion of Marek’s disease virus (MDV) transformed cell line MSB1 by targeting RORA

机译:GGA-miR-155对MAREK疾病病毒(MDV)转化细胞系MSB1的细胞增殖,细胞凋亡和侵袭的影响通过靶向RORA

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Marek’s disease (MD) is caused by the oncogenic Marek’s disease virus (MDV), and is a highly contagious avian infection with a complex underlying pathology that involves lymphoproliferative neoplasm formation. MicroRNAs (miRNAs) act as oncogenes or tumor suppressors in most cancers. The gga-miR-155 is downregulated in the MDV-infected chicken tissues or lymphocyte lines, although its exact role in tumorigenesis remains unclear. The aim of this study was to analyze the effects of gga-miR-155 on the proliferation, apoptosis and invasiveness of an MDV-transformed lymphocyte line MSB1 and elucidate the underlying mechanisms. The expression level of gga-miR-155 was manipulated in MSB1 cells using specific mimics and inhibitors. While overexpression of gga-miR-155 increased proliferation, decreased the proportion of G1 phase cells relative to that in S and G2 phases, reduced apoptosis rates and increased invasiveness. However, its downregulation had the opposite effects. Furthermore, gga-miR-155 directly targeted the RORA gene and downregulated its expression in the MSB1 cells. The gga-miR-155 promotes the proliferation and invasiveness of the MDV-transformed lymphocyte line MSB1 and inhibits apoptosis by targeting the RORA gene.
机译:MAREK的疾病(MD)是由致癌的MAREK病毒(MDV)引起的,并且是一种高度传染性的禽类感染,具有复杂的潜在病理,涉及淋巴抑制性肿瘤形成。 MicroRNA(miRNA)在大多数癌症中充当癌癌或肿瘤抑制剂。 GGA-miR-155在MDV感染的鸡肉组织或淋巴细胞系中下调,尽管其在肿瘤发生中的确切作用仍然尚不清楚。本研究的目的是分析GGA-miR-155对MDV转化的淋巴细胞系MSB1的增殖,细胞凋亡和侵袭性的影响,并阐明潜在机制。使用特定的模拟物和抑制剂在MSB1细胞中操纵GGA-miR-155的表达水平。虽然GGA-miR-155的过度表达增加了增殖,但降低了G1相相对于S和G2阶段的比例,降低了凋亡率和增加的侵袭性。然而,其下调具有相反的影响。此外,GGA-miR-155直接靶向RORA基因并下调其在MSB1细胞中的表达。 GGA-miR-155促进MDV转化的淋巴细胞系MSB1的增殖和侵袭性,并通过靶向RORA基因来抑制细胞凋亡。

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