首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Human cytomegalovirus gene expression during infection of primary hematopoietic progenitor cells: A model for latency
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Human cytomegalovirus gene expression during infection of primary hematopoietic progenitor cells: A model for latency

机译:原发性造血祖细胞感染过程中人类巨细胞病毒基因表达:潜伏期的模型。

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Human cytomegalovirus (HCMV) resides latently in hematopoietic cells of the bone marrow. Although viral genomes can be found in CD14+ monocytes and CD34+ progenitor cells, the primary reservoir for latent cytomegalovirus is unknown. We analyzed human hematopoietic subpopulations infected in vitro with a recombinant virus that expresses a green fluorescent protein marker gene. Although many hematopoietic cell subsets were infected in vitro, CD14+ monocytes and various CD34+ subpopulations were infected with the greatest efficiency. We have developed an in vitro system in which to study HCMV infection and latency in CD34+ cells cultured with irradiated stromal cells. Marker gene expression was substantially reduced by 4 days postinfection, and infectious virus was not made during the culture period. However, viral DNA sequences were maintained in infected CD34+ cells for >20 days in culture, and, importantly, virus replication could be reactivated by coculture with human fibroblasts. Using an HCMV gene array, we examined HCMV gene expression in CD34+ cells. The pattern of viral gene expression was distinct from that observed during productive or nonproductive infections. Some of these expressed viral genes may function in latency and are targets for further analysis. Altered gene expression in hematopoietic progenitors may be indicative of the nature and outcome of HCMV infection.
机译:人类巨细胞病毒(HCMV)潜伏在骨髓的造血细胞中。尽管可以在CD14 +单核细胞和CD34 +祖细胞中找到病毒基因组,但潜伏巨细胞病毒的主要储存库尚不清楚。我们分析了表达绿色荧光蛋白标记基因的重组病毒在体外感染的人类造血亚群。尽管在体外感染了许多造血细胞亚群,但CD14 +单核细胞和各种CD34 +亚群的感染效率最高。我们已经开发了一种体外系统,用于研究用照射的基质细胞培养的CD34 +细胞中的HCMV感染和潜伏期。感染后4天,标记基因的表达显着降低,并且在培养期间未产生感染性病毒。但是,病毒DNA序列在受感染的CD34 +细胞中可培养> 20天,而且重要的是,病毒复制可通过与人成纤维细胞共培养而重新激活。使用HCMV基因阵列,我们检查了CD34 +细胞中HCMV基因的表达。病毒基因表达的模式不同于生产性或非生产性感染期间观察到的模式。这些表达的病毒基因中的一些可能在潜伏期起作用,并且是进一步分析的目标。造血祖细胞中基因表达的改变可能表明HCMV感染的性质和结果。

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