首页> 外文期刊>Molecular and Biochemical Parasitology >The erythrocyte binding motif of plasmodium vivax duffy binding protein is highly polymorphic and functionally conserved in isolates from Papua New Guinea.
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The erythrocyte binding motif of plasmodium vivax duffy binding protein is highly polymorphic and functionally conserved in isolates from Papua New Guinea.

机译:间日疟原虫达菲结合蛋白的红细胞结合基序是高度多态的,并且在巴布亚新几内亚的分离物中功能上保守。

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摘要

The Duffy binding protein (DBP) of Plasmodium vivax is a critical adhesion ligand that participates in merozoite invasion of human Duffy positive reticulocytes. Binding domains have been shown to lie within a conserved N-terminal cyteine-rich region, region II, that contains 330-aa and the critical binding residues have been recently mapped to 170-aa stretch within this region. Previous studies on few isolates indicated a significant degree of polymorphism in region II (DBPII). To examine further the degree of variability of DBPII, and whether these variants produce functional changes, DBPII was amplified by nested PCR from 24 isolates from Papua New Guinea, and the amplicons were cloned and sequenced. One synonymous and 18 non-synonymous mutations were identified. Altogether, 93% of the cumulative polymorphisms lie within the 170-aa region. Targeted surface expression of region II of two different alleles on the surface of Cos7 cells did not affect their binding to Duffy positive erythrocytes. These results indicate that polymorphisms in the critical binding motifs do not alter its function. If DBPII variation arose to avert mechanisms of protective immunity targeting the DBP, vaccine development employing the parasite binding ligand may require strategies to minimize the effect of this polymorphism.
机译:间日疟原虫的达菲结合蛋白(DBP)是一种关键的粘附配体,参与人达菲阳性网织细胞的裂殖子入侵。已经显示结合域位于包含330-aa的保守的N-末端富含胱氨酸的区域II内,并且最近已将关键的结合残基映射到该区域内的170-aa区段。先前对少数分离株的研究表明,II区(DBPII)的多态性水平较高。为了进一步检查DBPII的变异程度,以及这些变体是否产生功能变化,通过巢式PCR从来自巴布亚新几内亚的24个分离株中扩增了DBPII,并对其进行了克隆和测序。鉴定出一个同义突变和18个非同义突变。总共有93%的累积多态性位于170-aa区域内。 Cos7细胞表面上两个不同等位基因II区II的靶向表面表达不影响它们与达菲阳性红细胞的结合。这些结果表明关键结合基序中的多态性不会改变其功能。如果出现DBPII变异来避免针对DBP的保护性免疫机制,则采用寄生虫结合配体的疫苗开发可能需要采取策略,以尽量减少这种多态性的影响。

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