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首页> 外文期刊>MBio >CRISPR/Cas9 Genome Editing Reveals That the Intron Is Not Essential for var2csa Gene Activation or Silencing in Plasmodium falciparum
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CRISPR/Cas9 Genome Editing Reveals That the Intron Is Not Essential for var2csa Gene Activation or Silencing in Plasmodium falciparum

机译:CRISPR / Cas9基因组编辑显示,内含子不是 var2csa 基因激活或恶性疟原虫沉默所必需的。

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ABSTRACT Plasmodium falciparum relies on monoallelic expression of 1 of 60 var virulence genes for antigenic variation and host immune evasion. Each var gene contains a conserved intron which has been implicated in previous studies in both activation and repression of transcription via several epigenetic mechanisms, including interaction with the var promoter, production of long noncoding RNAs (lncRNAs), and localization to repressive perinuclear sites. However, functional studies have relied primarily on artificial expression constructs. Using the recently developed P.?falciparum clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 system, we directly deleted the var2csa P.?falciparum 3D7_1200600 (Pf3D7_1200600) endogenous intron, resulting in an intronless var gene in a natural, marker-free chromosomal context. Deletion of the var2csa intron resulted in an upregulation of transcription of the var2csa gene in ring-stage parasites and subsequent expression of the PfEMP1 protein in late-stage parasites. Intron deletion did not affect the normal temporal regulation and subsequent transcriptional silencing of the var gene in trophozoites but did result in increased rates of var gene switching in some mutant clones. Transcriptional repression of the intronless var2csa gene could be achieved via long-term culture or panning with the CD36 receptor, after which reactivation was possible with chondroitin sulfate A (CSA) panning. These data suggest that the var2csa intron is not required for silencing or activation in ring-stage parasites but point to a subtle role in regulation of switching within the var gene family. IMPORTANCE Plasmodium falciparum is the most virulent species of malaria parasite, causing high rates of morbidity and mortality in those infected. Chronic infection depends on an immune evasion mechanism termed antigenic variation, which in turn relies on monoallelic expression of 1 of ~60 var genes. Understanding antigenic variation and the transcriptional regulation of monoallelic expression is important for developing drugs and/or vaccines. The var gene family encodes the antigenic surface proteins that decorate infected erythrocytes. Until recently, studying the underlying genetic elements that regulate monoallelic expression in P.?falciparum was difficult, and most studies relied on artificial systems such as episomal reporter genes. Our study was the first to use CRISPR/Cas9 genome editing for the functional study of an important, conserved genetic element of var genes—the intron—in an endogenous, episome-free manner. Our findings shed light on the role of the var gene intron in transcriptional regulation of monoallelic expression.
机译:摘要恶性疟原虫依赖于60个var毒力基因中的1个的单等位基因表达来进行抗原变异和宿主免疫逃避。每个var基因都包含一个保守的内含子,该内含子在先前的研究中通过几种表观遗传机制参与了转录的激活和抑制,包括与var启动子的相互作用,长非编码RNA(lncRNAs)的产生以及定位于抑制性核周位点。但是,功能研究主要依赖于人工表达构建体。使用最新开发的恶性疟原虫簇状规则间隔的短回文重复序列(CRISPR)/ Cas9系统,我们直接删除了var2csa恶性疟原虫3D7_1200600(Pf3D7_1200600)内源内含子,从而在天然的无标记的无内含子var基因中产生了染色体背景。 var2csa内含子的删除导致var2csa基因在环状寄生虫中的转录上调,并导致PfEMP1蛋白在晚期寄生虫中的后续表达。内含子缺失不影响滋养体中var基因的正常时间调控和随后的转录沉默,但确实导致某些突变体克隆中var基因转换的速率增加。可以通过长期培养或用CD36受体淘选来实现无内含子var2csa基因的转录抑制,此后可以通过硫酸软骨素A(CSA)淘选重新激活。这些数据表明,var2csa内含子不是在环状寄生虫中沉默或激活所必需的,而是指出了在var基因家族中调控开关的微妙作用。重要信息恶性疟原虫是疟原虫中最具毒性的物种,在被感染者中导致较高的发病率和死亡率。慢性感染取决于称为抗原变异的免疫逃逸机制,而抗原变异又依赖于〜60个var基因之一的单等位基因表达。了解抗原变异和单等位基因表达的转录调控对于开发药物和/或疫苗很重要。 var基因家族编码装饰感染的红细胞的抗原表面蛋白。直到最近,研究调节恶性疟原虫单等位基因表达的潜在遗传元件还是很困难的,并且大多数研究都依赖于人工系统,例如游离型报告基因。我们的研究是第一个使用CRISPR / Cas9基因组编辑功能以内源性,无附加体的方式对var基因的重要保守基因元件(内含子)进行功能研究的研究。我们的发现揭示了var基因内含子在单等位基因表达的转录调控中的作用。

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