首页> 外文期刊>Malaria Journal >Remarkable stability in patterns of blood-stage gene expression during episodes of non-lethal Plasmodium yoelii malaria
【24h】

Remarkable stability in patterns of blood-stage gene expression during episodes of non-lethal Plasmodium yoelii malaria

机译:非致命性约氏疟原虫疟疾发作期间血液阶段基因表达模式的显着稳定性

获取原文
           

摘要

Background Microarray studies using in vitro cultures of synchronized, blood-stage Plasmodium falciparum malaria parasites have revealed a ‘just-in-time’ cascade of gene expression with some indication that these transcriptional patterns remain stable even in the presence of external stressors. However, direct analysis of transcription in P. falciparum blood-stage parasites obtained from the blood of infected patients suggests that parasite gene expression may be modulated by factors present in the in vivo environment of the host. The aim of this study was to examine changes in gene expression of the rodent malaria parasite, Plasmodium yoelii 17X, while varying the in vivo setting of replication. Methods Using P. yoelii 17X parasites replicating in vivo, differential gene expression in parasites isolated from individual mice, from independent infections, during ascending, peak and descending parasitaemia and in the presence and absence of host antibody responses was examined using P. yoelii DNA microarrays. A genome-wide analysis to identify coordinated changes in groups of genes associated with specific biological pathways was a primary focus, although an analysis of the expression patterns of two multi-gene families in P. yoelii, the yir and pyst-a families, was also completed. Results Across experimental conditions, transcription was surprisingly stable with little evidence for distinct transcriptional states or for consistent changes in specific pathways. Differential gene expression was greatest when comparing differences due to parasite load and/or host cell availability. However, the number of differentially expressed genes was generally low. Of genes that were differentially expressed, many involved biologically diverse pathways. There was little to no differential expression of members of the yir and pyst-a multigene families that encode polymorphic proteins associated with the membrane of infected erythrocytes. However, a relatively large number of these genes were expressed during blood-stage infection regardless of experimental condition. Conclusions Taken together, these results indicate that 1) P. yoelii gene expression remains stable in the presence of a changing host environment, and 2) concurrent expression of a large number of the polymorphic yir and pyst-a genes, rather than differential expression in response to specific host factors, may in itself limit the effectiveness of host immune responses.
机译:背景技术使用同步血样恶性疟原虫疟原虫的体外培养物进行的微阵列研究显示,基因表达“及时”级联,这表明即使在存在外部应激源的情况下,这些转录方式仍保持稳定。然而,直接分析从感染患者血液中获得的恶性疟原虫血期寄生虫的转录,表明寄生虫基因表达可能受到宿主体内环境中存在因素的调节。这项研究的目的是检查啮齿动物疟疾寄生虫约氏疟原虫17X基因表达的变化,同时改变体内复制的环境。方法使用体内复制的约氏疟原虫17X寄生虫,使用约氏疟原虫DNA芯片检测从个别小鼠,独立感染,上升,高峰和下降的寄生虫病期间,存在和不存在宿主抗体反应的寄生虫中分离的寄生虫的差异基因表达。 。全基因组分析可以识别与特定生物途径相关的基因组中的协调变化,这是主要的研究重点,尽管分析了约氏疟原虫中的两个多基因家族,即yir和pyst-a家族的表达模式。也完成了。结果在整个实验条件下,转录都出乎意料地稳定,几乎没有证据表明不同的转录状态或特定途径的一致变化。当比较由于寄生虫负荷和/或宿主细胞可用性引起的差异时,差异基因表达最大。但是,差异表达基因的数量通常很少。在差异表达的基因中,许多涉及生物学上不同的途径。 yir和pyst-a多基因家族的成员几乎没有差异表达,该家族编码与感染的红细胞膜相关的多态蛋白。但是,无论实验条件如何,在血液感染期间都会表达相对大量的这些基因。结论综上所述,这些结果表明:1)在宿主环境变化的情况下,约氏疟原虫基因表达保持稳定; 2)大量多态性yir和pyst-a基因同时表达,而不是在大肠杆菌中差异表达。对特定宿主因素的免疫应答本身可能会限制宿主免疫应答的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号