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首页> 外文期刊>Glycobiology. >Virus-induced transcriptional activation of host FUT genes associated with neo-expression of Ley in cytomegalovirus-infected and sialyl-Lex in varicella-zoster virus-infected diploid human cells.
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Virus-induced transcriptional activation of host FUT genes associated with neo-expression of Ley in cytomegalovirus-infected and sialyl-Lex in varicella-zoster virus-infected diploid human cells.

机译:病毒诱导的宿主FUT基因的转录激活与Ley在巨细胞病毒感染的新表达和唾液酸-Lex在水痘带状疱疹病毒感染的二倍体人类细胞中的新表达有关。

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摘要

Cell surface carbohydrate structures including sialyl-Lewis X (sLe(x)) and Lewis Y (Le(y)) are important ligands in normal and malignant tissues. The aim here was to determine the possible influence on the expression of such antigens by two viruses varicella-zoster virus (VZV) and cytomegalovirus (CMV) involved in persistent infections of humans. We found that infection of human diploid fibroblasts with both viruses resulted in transcriptional activation of several fucosyltransferase (FUT) genes that were either dormant or expressed at low levels in uninfected cells. Both viruses induced FUT3, FUT5, and FUT6, encoding alpha1,3- and/or alpha1,4-specific fucosyltransferases. CMV, but not VZV, induced transcription of FUT1 (encoding an alpha1,2-specific fucosyltransferase), FUT7, and FUT9. The changes in transcription of FUT genes were expectedly associated with expression of Le(y) in CMV-infected cells and sLe(x) in the VZV-infected fibroblasts although no expression of these antigens was observed in uninfected cells. One major explanation for this difference between CMV- and VZV-infected cells was that CMV, but not VZV, induced expression of FUT1, necessary for Le(y) expression. The induced carbohydrate antigens in CMV- and VZV-infected cells could be of significance for virus spread and possible escape from immune responses.
机译:细胞表面的碳水化合物结构,包括唾液酸化的刘易斯X(sLe(x))和刘易斯Y(Le(y))是正常和恶性组织中的重要配体。此处的目的是确定参与人类持续感染的两种水痘带状疱疹病毒(VZV)和巨细胞病毒(CMV)对此类抗原表达的可能影响。我们发现两种病毒感染人二倍体成纤维细胞会导致几个岩藻糖基转移酶(FUT)基因的转录激活,这些基因在未感染细胞中处于休眠状态或以低水平表达。两种病毒都诱导编码α1,3-和/或α1,4-特异性岩藻糖基转移酶的FUT3,FUT5和FUT6。 CMV而不是VZV诱导FUT1(编码alpha1,2-特异性岩藻糖基转移酶),FUT7和FUT9的转录。尽管未感染的细胞中未观察到这些抗原的表达,但预期FUT基因转录的变化与CMV感染的细胞中Le(y)的表达以及VZV感染的成纤维细胞中sLe(x)的表达有关。对CMV感染细胞和VZV感染细胞之间这种差异的一个主要解释是,CMV而不是VZV诱导了Le(y)表达所必需的FUT1表达。在CMV和VZV感染的细胞中诱导的糖类抗原可能对病毒传播和可能逃避免疫反应具有重要意义。

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