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恶性疟原虫中利菲蛋白、斯蒂沃尔蛋白和Pfmc-2TM超家族内的高变异性。

Hypervariability within the Rifin, Stevor and Pfmc-2TM superfamilies in Plasmodium falciparum.

作者信息

Lavazec Catherine, Sanyal Sohini, Templeton Thomas J

机构信息

Department of Microbiology and Immunology, Weill Cornell Medical College and the Program in Immunology and Microbial Pathogenesis, Weill Graduate School of Medical Sciences of Cornell University, New York, NY 10021, USA.

出版信息

Nucleic Acids Res. 2006;34(22):6696-707. doi: 10.1093/nar/gkl942. Epub 2006 Dec 5.

DOI:10.1093/nar/gkl942
PMID:17148488
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1751529/
Abstract

The human malaria parasite, Plasmodium falciparum, possesses a broad repertoire of proteins that are proposed to be trafficked to the erythrocyte cytoplasm or surface, based upon the presence within these proteins of a Pexel/VTS erythrocyte-trafficking motif. This catalog includes large families of predicted 2 transmembrane (2TM) proteins, including the Rifin, Stevor and Pfmc-2TM superfamilies, of which each possesses a region of extensive sequence diversity across paralogs and between isolates that is confined to a proposed surface-exposed loop on the infected erythrocyte. Here we express epitope-tagged versions of the 2TM proteins in transgenic NF54 parasites and present evidence that the Stevor and Pfmc-2TM families are exported to the erythrocyte membrane, thus supporting the hypothesis that host immune pressure drives antigenic diversity within the loop. An examination of multiple P.falciparum isolates demonstrates that the hypervariable loop within Stevor and Pfmc-2TM proteins possesses sequence diversity across isolate boundaries. The Pfmc-2TM genes are encoded within large amplified loci that share profound nucleotide identity, which in turn highlight the divergences observed within the hypervariable loop. The majority of Pexel/VTS proteins are organized together within sub-telomeric genome neighborhoods, and a mechanism must therefore exist to differentially generate sequence diversity within select genes, as well as within highly defined regions within these genes.

摘要

人类疟原虫恶性疟原虫拥有大量蛋白质,基于这些蛋白质中存在Pexel/VTS红细胞转运基序,推测这些蛋白质会被转运到红细胞细胞质或表面。该目录包括大量预测的双跨膜(2TM)蛋白家族,包括Rifin、Stevor和Pfmc-2TM超家族,每个家族在旁系同源物之间以及分离株之间都拥有一个广泛的序列多样性区域,该区域局限于感染红细胞上一个假定的表面暴露环。在这里,我们在转基因NF54寄生虫中表达了2TM蛋白的表位标签版本,并提供证据表明Stevor和Pfmc-2TM家族被输出到红细胞膜,从而支持宿主免疫压力驱动环内抗原多样性的假设。对多个恶性疟原虫分离株的检查表明,Stevor和Pfmc-2TM蛋白内的高变环在分离株边界之间具有序列多样性。Pfmc-2TM基因编码在具有高度核苷酸同一性的大型扩增基因座内,这反过来突出了在高变环中观察到的差异。大多数Pexel/VTS蛋白在亚端粒基因组邻域内聚集在一起,因此必须存在一种机制来在选定基因内以及这些基因内高度定义的区域内差异地产生序列多样性。

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