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恶性疟原虫红细胞膜蛋白 1 的多样性——分而治之。

Plasmodium falciparum erythrocyte membrane protein 1 diversity in seven genomes--divide and conquer.

机构信息

Center for Biological Sequence Analysis, Department of Systems Biology, Technical University of Denmark, Lyngby, Denmark.

出版信息

PLoS Comput Biol. 2010 Sep 16;6(9):e1000933. doi: 10.1371/journal.pcbi.1000933.

Abstract

The var gene encoded hyper-variable Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) family mediates cytoadhesion of infected erythrocytes to human endothelium. Antibodies blocking cytoadhesion are important mediators of malaria immunity acquired by endemic populations. The development of a PfEMP1 based vaccine mimicking natural acquired immunity depends on a thorough understanding of the evolved PfEMP1 diversity, balancing antigenic variation against conserved receptor binding affinities. This study redefines and reclassifies the domains of PfEMP1 from seven genomes. Analysis of domains in 399 different PfEMP1 sequences allowed identification of several novel domain classes, and a high degree of PfEMP1 domain compositional order, including conserved domain cassettes not always associated with the established group A-E division of PfEMP1. A novel iterative homology block (HB) detection method was applied, allowing identification of 628 conserved minimal PfEMP1 building blocks, describing on average 83% of a PfEMP1 sequence. Using the HBs, similarities between domain classes were determined, and Duffy binding-like (DBL) domain subclasses were found in many cases to be hybrids of major domain classes. Related to this, a recombination hotspot was uncovered between DBL subdomains S2 and S3. The VarDom server is introduced, from which information on domain classes and homology blocks can be retrieved, and new sequences can be classified. Several conserved sequence elements were found, including: (1) residues conserved in all DBL domains predicted to interact and hold together the three DBL subdomains, (2) potential integrin binding sites in DBLα domains, (3) an acylation motif conserved in group A var genes suggesting N-terminal N-myristoylation, (4) PfEMP1 inter-domain regions proposed to be elastic disordered structures, and (5) several conserved predicted phosphorylation sites. Ideally, this comprehensive categorization of PfEMP1 will provide a platform for future studies on var/PfEMP1 expression and function.

摘要

var 基因编码的高变区恶性疟原虫红细胞膜蛋白 1(PfEMP1)家族介导感染红细胞与人类内皮细胞的细胞黏附。阻断细胞黏附的抗体是地方性人群获得疟疾免疫力的重要介质。基于 PfEMP1 的疫苗的开发模拟自然获得的免疫力,取决于对进化的 PfEMP1 多样性的透彻理解,平衡抗原变异与保守受体结合亲和力。本研究重新定义和重新分类了来自 7 个基因组的 PfEMP1 结构域。对 399 个不同 PfEMP1 序列的结构域分析允许鉴定出几个新的结构域类,并具有高度的 PfEMP1 结构域组成顺序,包括与已建立的 PfEMP1 A-E 组划分并不总是相关的保守结构域盒。应用了一种新的迭代同源块(HB)检测方法,可识别 628 个保守的最小 PfEMP1 构建块,平均描述 PfEMP1 序列的 83%。使用 HBs 确定了结构域类之间的相似性,并在许多情况下发现 Duffy 结合样(DBL)结构域亚类是主要结构域类的杂种。与此相关,在 DBL 亚结构域 S2 和 S3 之间发现了一个重组热点。引入了 VarDom 服务器,可从中检索有关结构域类和同源块的信息,并对新序列进行分类。发现了几个保守的序列元件,包括:(1)所有 DBL 结构域中保守的残基,预测这些残基相互作用并将三个 DBL 亚结构域结合在一起,(2)DBLα 结构域中潜在的整合素结合位点,(3)在 A 组 var 基因中保守的酰化基序,提示 N 端 N-豆蔻酰化,(4)PfEMP1 结构域间区域被提议为弹性无序结构,以及(5)几个保守的预测磷酸化位点。理想情况下,这种对 PfEMP1 的全面分类将为未来关于 var/PfEMP1 表达和功能的研究提供一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e21/2940729/51f2e8baa4f2/pcbi.1000933.g001.jpg

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