首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Targeted Disruption of a Ring-infected Erythrocyte Surface Antigen (RESA)-like Export Protein Gene in Plasmodium falciparum Confers Stable Chondroitin 4-Sulfate Cytoadherence Capacity
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Targeted Disruption of a Ring-infected Erythrocyte Surface Antigen (RESA)-like Export Protein Gene in Plasmodium falciparum Confers Stable Chondroitin 4-Sulfate Cytoadherence Capacity

机译:恶性疟原虫中环感染的红细胞表面抗原(RESA)样输出蛋白基因的靶向破坏赋予稳定的硫酸软骨素4细胞粘附能力。

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摘要

The Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) family proteins mediate the adherence of infected erythrocytes to microvascular endothelia of various organs, including the placenta, thereby contributing to cerebral, placental, and other severe malaria pathogenesis. Several parasite proteins, including KAHRP and PfEMP3, play important roles in the cytoadherence by mediating the clustering of PfEMP1 in rigid knoblike structures on the infected erythrocyte surface. The lack of a subtelomeric region of chromosome 2 that contains kahrp and pfemp3 causes reduced cytoadherence. In this study, microarray transcriptome analysis showed that the absence of a gene cluster, comprising kahrp, pfemp3, and four other genes, results in the loss of parasitized erythrocytes adhering to chondroitin 4-sulfate (C4S). The role of one of these genes, PF3D7_0201600/PFB0080c, which encodes PHISTb (Plasmodium helical interspersed subtelomeric b) domain-containing RESA-like protein 1 expressed on the infected erythrocyte surface, was investigated. Disruption of PFB0080c resulted in increased var2csa transcription and VAR2CSA surface expression, leading to higher C4S-binding capacity of infected erythrocytes. Further, PFB0080c-knock-out parasites stably maintained the C4S adherence through many generations of growth. Although the majority of PFB0080c-knock-out parasites bound to C4S even after culturing for 6 months, a minor population bound to both C4S and CD36. These results strongly suggest that the loss of PFB0080c markedly compromises the var gene switching process, leading to a marked reduction in the switching rate and additional PfEMP1 expression by a minor population of parasites. PFB0080c interacts with VAR2CSA and modulates knob-associated Hsp40 expression. Thus, PFB0080c may regulate VAR2CSA expression through these processes. Overall, we conclude that PFB0080c regulates PfEMP1 expression and the parasite's cytoadherence.
机译:恶性疟原虫红细胞膜蛋白1(PfEMP1)家族蛋白介导被感染的红细胞粘附于包括胎盘在内的各种器官的微血管内皮,从而促成脑,胎盘和其他严重疟疾的发病机理。包括KAHRP和PfEMP3在内的几种寄生虫蛋白通过介导PfEMP1在受感染红细胞表面上刚性结节状结构中的聚集而在细胞粘附中发挥重要作用。缺少包含kahrp和pfemp3的2号染色体的亚端粒区域导致细胞粘附减少。在这项研究中,微阵列转录组分析显示,缺少包含kahrp,pfemp3和其他四个基因的基因簇,会导致粘附于硫酸软骨素4(C4S)的寄生红细胞的丢失。研究了这些基因之一PF3D7_0201600 / PFB0080c的作用,该基因编码在感染的红细胞表面表达的含PHISTb(疟原虫螺旋穿插的亚端粒b)域的RESA样蛋白1。 PFB0080c的破坏导致var2csa转录和VAR2CSA表面表达增加,从而导致感染的红细胞具有更高的C4S结合能力。此外,PFB0080c敲除寄生虫通过多代生长稳定地维持了C4S的依从性。尽管大多数PFB0080c敲除寄生虫甚至在培养6个月后仍与C4S结合,但少数群体同时与C4S和CD36结合。这些结果有力地表明,PFB0080c的缺失显着损害了var基因的转换过程,从而导致转换速率的显着降低以及少量寄生虫导致了额外的PfEMP1表达。 PFB0080c与VAR2CSA相互作用并调节与旋钮相关的Hsp40表达。因此,PFB0080c可通过这些过程调节VAR2CSA的表达。总的来说,我们得出结论,PFB0080c调节PfEMP1表达和寄生虫的细胞粘附。

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