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疟原虫中结构保守的红细胞结合域为替代受体结合提供了一个多功能支架。

Structurally conserved erythrocyte-binding domain in Plasmodium provides a versatile scaffold for alternate receptor engagement.

作者信息

Gruszczyk Jakub, Lim Nicholas T Y, Arnott Alicia, He Wen-Qiang, Nguitragool Wang, Roobsoong Wanlapa, Mok Yee-Foong, Murphy James M, Smith Katherine R, Lee Stuart, Bahlo Melanie, Mueller Ivo, Barry Alyssa E, Tham Wai-Hong

机构信息

The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia;

The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC 3052, Australia; Department of Medical Biology, The University of Melbourne, Melbourne, VIC 3010, Australia;

出版信息

Proc Natl Acad Sci U S A. 2016 Jan 12;113(2):E191-200. doi: 10.1073/pnas.1516512113. Epub 2015 Dec 29.

Abstract

Understanding how malaria parasites gain entry into human red blood cells is essential for developing strategies to stop blood stage infection. Plasmodium vivax preferentially invades reticulocytes, which are immature red blood cells. The organism has two erythrocyte-binding protein families: namely, the Duffy-binding protein (PvDBP) and the reticulocyte-binding protein (PvRBP) families. Several members of the PvRBP family bind reticulocytes, specifically suggesting a role in mediating host cell selectivity of P. vivax. Here, we present, to our knowledge, the first high-resolution crystal structure of an erythrocyte-binding domain from PvRBP2a, solved at 2.12 Å resolution. The monomeric molecule consists of 10 α-helices and one short β-hairpin, and, although the structural fold is similar to that of PfRh5--the essential invasion ligand in Plasmodium falciparum--its surface properties are distinct and provide a possible mechanism for recognition of alternate receptors. Sequence alignments of the crystallized fragment of PvRBP2a with other PvRBPs highlight the conserved placement of disulfide bonds. PvRBP2a binds mature red blood cells through recognition of an erythrocyte receptor that is neuraminidase- and chymotrypsin-resistant but trypsin-sensitive. By examining the patterns of sequence diversity within field isolates, we have identified and mapped polymorphic residues to the PvRBP2a structure. Using mutagenesis, we have also defined the critical residues required for erythrocyte binding. Characterization of the structural features that govern functional erythrocyte binding for the PvRBP family provides a framework for generating new tools that block P. vivax blood stage infection.

摘要

了解疟原虫如何进入人类红细胞对于制定阻止血液阶段感染的策略至关重要。间日疟原虫优先侵入网织红细胞,即未成熟的红细胞。该生物体有两个红细胞结合蛋白家族:即达菲结合蛋白(PvDBP)和网织红细胞结合蛋白(PvRBP)家族。PvRBP家族的几个成员结合网织红细胞,特别表明其在介导间日疟原虫宿主细胞选择性方面发挥作用。在此,据我们所知,我们展示了PvRBP2a红细胞结合结构域的首个高分辨率晶体结构,分辨率为2.12 Å。单体分子由10个α螺旋和一个短β发夹组成,尽管其结构折叠与恶性疟原虫中的关键入侵配体PfRh5相似,但其表面特性不同,并为识别替代受体提供了一种可能的机制。PvRBP2a结晶片段与其他PvRBPs的序列比对突出了二硫键的保守位置。PvRBP2a通过识别一种对神经氨酸酶和胰凝乳蛋白酶有抗性但对胰蛋白酶敏感的红细胞受体来结合成熟红细胞。通过检查野外分离株中的序列多样性模式,我们已鉴定出多态性残基并将其映射到PvRBP2a结构上。利用诱变技术,我们还确定了红细胞结合所需的关键残基。对PvRBP家族功能性红细胞结合的结构特征进行表征,为开发阻断间日疟原虫血液阶段感染的新工具提供了框架。

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