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疟原虫裂殖子中入侵基因的随机表达。

Stochastic expression of invasion genes in Plasmodium falciparum schizonts.

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore, 637551, Singapore.

出版信息

Nat Commun. 2022 May 30;13(1):3004. doi: 10.1038/s41467-022-30605-z.

Abstract

Genetically identical cells are known to exhibit differential phenotypes in the same environmental conditions. These phenotypic variants are linked to transcriptional stochasticity and have been shown to contribute towards adaptive flexibility of a wide range of unicellular organisms. Here, we investigate transcriptional heterogeneity and stochastic gene expression in Plasmodium falciparum by performing the quasilinear multiple annealing and looping based amplification cycles (MALBAC) based amplification and single cell RNA sequencing of blood stage schizonts. Our data reveals significant transcriptional variations in the schizont stage with a distinct group of highly variable invasion gene transcripts being identified. Moreover, the data reflects several diversification processes including putative developmental "checkpoint"; transcriptomically distinct parasite sub-populations and transcriptional switches in variable gene families (var, rifin, phist). Most of these features of transcriptional variability are preserved in isogenic parasite cell populations (albeit with a lesser amplitude) suggesting a role of epigenetic factors in cell-to-cell transcriptional variations in human malaria parasites. Lastly, we apply quantitative RT-PCR and RNA-FISH approach and confirm stochastic expression of key invasion genes, such as, msp1, msp3, msp7, eba181 and ama1 which represent prime candidates for invasion-blocking vaccines.

摘要

已知在相同的环境条件下,遗传相同的细胞表现出不同的表型。这些表型变体与转录随机性有关,并已被证明有助于多种单细胞生物的适应性灵活性。在这里,我们通过进行准线性多重退火和环化扩增循环(MALBAC)扩增以及血期裂殖体的单细胞 RNA 测序,研究了疟原虫裂殖体中的转录异质性和随机基因表达。我们的数据显示裂殖体阶段存在显著的转录变化,并且确定了一组高度可变的入侵基因转录本。此外,该数据反映了几个多样化过程,包括假定的发育“检查点”;转录上不同的寄生虫亚群和可变基因家族(var、rifin、phist)中的转录开关。这些转录变异性的大多数特征在同源寄生虫细胞群中得到保留(尽管幅度较小),这表明在人类疟原虫中,表观遗传因素在细胞间转录变异性中起作用。最后,我们应用定量 RT-PCR 和 RNA-FISH 方法,证实了关键入侵基因(如 msp1、msp3、msp7、eba181 和 ama1)的随机表达,这些基因是入侵阻断疫苗的主要候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2fd/9151791/772ea78445f8/41467_2022_30605_Fig1_HTML.jpg

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