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Changes in var gene mRNA levels during erythrocytic development in two phenotypically distinct Plasmodium falciparum parasites

机译:在两个表型不同的恶性疟原虫的红细胞发育过程中var基因mRNA水平的变化

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Background The var multigene family encodes PfEMP1, which are expressed on the surface of infected erythrocytes and bind to various host endothelial receptors. Antigenic variation of PfEMP1 plays a key role in malaria pathogenesis, a process partially controlled at the level of var gene transcription. Transcriptional levels, throughout the intra-erythrocytic cycle, of 59 var genes of the NF54 clone were measured simultaneously by quantitative real-time PCR. The timing of var transcript abundance, the number of genes transcribed and whether transcripts were correctly spliced for protein expression were determined. Two parasite populations were studied; an unselected population of NF54 and a selected population, NF54VAR2CSA, to compare both the transcription of var2csa and the expression pattern of the corresponding protein. Methods Synchronized parasites were harvested at different time points along the 48 hours intra-erythrocytic cycle for extraction of RNA and for analysis of expression of variant surface antigens by flow cytometry. Total RNA from each parasite sample was extracted and cDNA synthesized. Quantitative real-time PCR was performed using gene-specific primers for all var genes. Samples for flow cytometry were labelled with rabbit IgG targeting DBL5ε of VAR2CSA and serum IgG from malaria-exposed men and pregnant women. Results var transcripts were detected at all time points of the intra-erythrocytic cycle by quantitative real-time PCR, although transcription peaked in ring-stage parasites. There was no difference in the timing of appearance of group A, B or C transcripts, and dominant and subdominant var transcripts appeared to be correctly spliced at all time points. VAR2CSA appeared on the surface of infected erythrocytes 16 hours after invasion, consistent with previous studies of other PfEMP1. Transcription of the pseudogene var1csa could not be detected in NF54VAR2CSA cells. Conclusion The optimal sampling point for analysis of var transcripts using quantitative real-time PCR is the ring-stage, which is encouraging for the analysis of fresh clinical isolates. The data presented here indicate that there is no promiscuous transcription of var genes at the individual cell level and that it is possible to correlate dominant transcripts with adhesion phenotype and clinical markers of malaria severity.
机译:背景var多基因家族编码PfEMP1,该PfEMP1在感染的红细胞表面表达并与各种宿主内皮受体结合。 PfEMP1的抗原变异在疟疾发病机理中起着关键作用,疟疾发病过程是部分控制于var基因转录水平的过程。在整个红细胞内循环期间,通过定量实时PCR同时测量了NF54克隆的59个var基因的转录水平。确定var转录物丰度的时间,转录的基因数目以及转录物是否正确剪接以表达蛋白质。研究了两个寄生虫种群。未选择的NF54群体和选定的NF54VAR2CSA群体,以比较var2csa的转录和相应蛋白质的表达模式。方法在48小时内的红细胞周期内的不同时间点采集同步寄生虫,以提取RNA并通过流式细胞仪分析表面抗原的表达。从每个寄生虫样品中提取总RNA,并合成cDNA。使用所有var基因的基因特异性引物进行实时定量PCR。用于流式细胞术的样品用靶向VAR2CSA的DBL5ε的兔IgG和来自疟疾接触过的男性和孕妇的血清IgG标记。结果通过定量实时PCR,在红细胞内循环的所有时间点都检测到了转录本,尽管转录在环形阶段的寄生虫中达到了峰值。 A,B或C组转录本的出现时间没有差异,显性和显性的var转录本似乎在所有时间点都被正确剪接。侵袭后16小时,VAR2CSA出现在受感染的红细胞表面,与先前对其他PfEMP1的研究一致。在NF54VAR2CSA细胞中未检测到假基因var1csa的转录。结论使用定量实时PCR分析var转录本的最佳采样点是环形,这对于分析新鲜的临床分离株是令人鼓舞的。此处提供的数据表明,在单个细胞水平上没有var基因的混杂转录,并且有可能使显性转录物与粘附表型和疟疾严重程度的临床标志物相关联。

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