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Characterization of a Merkel Cell Polyomavirus-Positive Merkel Cell Carcinoma Cell Line CVG-1

机译:默克尔细胞多瘤病毒阳性默克尔细胞癌细胞系CVG-1的表征

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摘要

Merkel cell polyomavirus (MCV) plays a causal role in ∼80% of Merkel cell carcinomas (MCC). MCV is clonally integrated into the MCC tumor genome, which results in persistent expression of large T (LT) and small T (sT) antigen oncoproteins encoded by the early locus. In MCV-positive MCC tumors, LT is truncated by premature stop codons or deletions that lead to loss of the C-terminal origin binding (OBD) and helicase domains important for replication. The N-terminal Rb binding domain remains intact. MCV-positive cell lines derived from MCC explants have been valuable tools to study the molecular mechanism of MCV-induced Merkel cell carcinogenesis. Although all cell lines have integrated MCV and express truncated LT antigens, the molecular sizes of the LT proteins differ between cell lines. The copy number of integrated viral genome also varies across cell lines, leading to significantly different levels of viral protein expression. Nevertheless, these cell lines share phenotypic similarities in cell morphology, growth characteristics, and neuroendocrine marker expression. Several low-passage MCV-positive MCC cell lines have been established since the identification of MCV. We describe a new MCV-positive MCV cell line, CVG-1, with features distinct from previously reported cell lines. CVG-1 tumor cells grow in more discohesive clusters in loose round cell suspension, and individual cells show dramatic size heterogeneity. It is the first cell line to encode an MCV sT polymorphism resulting in a unique leucine (L) to proline (P) substitution mutation at amino acid 144. CVG-1 possesses a LT truncation pattern near identical to that of MKL-1 cells differing by the last two C-terminal amino acids and also shows an LT protein expression level similar to MKL-1. Viral T antigen knockdown reveals that, like other MCV-positive MCC cell lines, CVG-1 requires T antigen expression for cell proliferation.
机译:默克尔细胞多瘤病毒(MCV)在约80%的默克尔细胞癌(MCC)中起因果作用。 MCV被克隆整合到MCC肿瘤基因组中,从而导致早期基因座编码的大T(LT)和小T(sT)抗原癌蛋白的持续表达。在MCV阳性MCC肿瘤中,LT被过早的终止密码子或缺失所截断,导致C末端起源结合(OBD)和解旋酶结构域的丢失对于复制很重要。 N-末端Rb结合结构域保持完整。源自MCC外植体的MCV阳性细胞系已成为研究MCV诱导默克尔细胞癌变的分子机制的有价值的工具。尽管所有细胞系均具有整合的MCV并表达截短的LT抗原,但LT蛋白的分子大小在细胞系之间有所不同。整合的病毒基因组的拷贝数在细胞系中也不同,导致病毒蛋白表达水平明显不同。然而,这些细胞系在细胞形态,生长特征和神经内分泌标记物表达方面具有表型相似性。自鉴定MCV以来,已建立了几种低代MCV阳性MCC细胞系。我们描述了一种新的MCV阳性MCV细胞系CVG-1,其功能与以前报道的细胞系不同。 CVG-1肿瘤细胞在松散的圆形细胞悬浮液中以更具歧义性的簇生长,并且单个细胞显示出巨大的大小异质性。它是第一个编码MCV sT多态性的细胞系,在氨基酸144处导致独特的亮氨酸(L)到脯氨酸(P)取代突变。CVG-1的LT截短模式与MKL-​​1细胞几乎相同最后两个C末端的氨基酸,也显示出与MKL-​​1类似的LT蛋白表达水平。病毒T抗原敲低表明,像其他MCV阳性MCC细胞系一样,CVG-1需要T抗原表达才能使细胞增殖。

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