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构建全面的恶性疟原虫裂殖子细胞表面和分泌的重组蛋白文库。

Towards a comprehensive Plasmodium falciparum merozoite cell surface and secreted recombinant protein library.

机构信息

Cell Surface Signalling Laboratory, Wellcome Trust Sanger Institute, Cambridge CB10 1SA, UK.

出版信息

Malar J. 2014 Mar 12;13:93. doi: 10.1186/1475-2875-13-93.

Abstract

BACKGROUND

Plasmodium falciparum is the aetiological agent for malaria, a deadly infectious disease for which no vaccine has yet been licensed. The proteins displayed on the merozoite cell surface have long been considered attractive vaccine targets because of their direct exposure to host antibodies; however, progress in understanding the functional role of these targets has been hindered by technical challenges associated with expressing these proteins in a functionally active recombinant form. To address this, a method that enables the systematic expression of functional extracellular Plasmodium proteins was previously developed, and used to create a library of 42 merozoite proteins.

METHODS

To compile a more comprehensive library of recombinant proteins representing the repertoire of P. falciparum merozoite extracellular proteins for systematic vaccine and functional studies, genome-wide expression profiling was used to identify additional candidates. Candidate proteins were recombinantly produced and their integrity and expression levels were tested by Western blotting and ELISA.

RESULTS

Twenty-five additional genes that were upregulated during late schizogony, and predicted to encode secreted and cell surface proteins, were identified and expressed as soluble recombinant proteins. A band consistent with the entire ectodomain was observed by immunoblotting for the majority of the proteins and their expression levels were quantified. By using sera from malaria-exposed immune adults, the immunoreactivity of 20 recombinant proteins was assessed, and most of the merozoite ligands were found to carry heat-labile epitopes. To facilitate systematic comparative studies across the entire library, multiple Plasmodium proteins were simultaneously purified using a custom-made platform.

CONCLUSIONS

A library of recombinant P. falciparum secreted and cell surface proteins was expanded by 20 additional proteins, which were shown to express at usable levels and contain conformational epitopes. This resource of extracellular P. falciparum merozoite proteins, which now contains 62 full-length ectodomains, will be a valuable tool in elucidating the function of these proteins during the blood stages of infection, and facilitate the comparative assessment of blood stage vaccine candidates.

摘要

背景

疟原虫是疟疾的病原体,这是一种致命的传染病,目前还没有获得许可的疫苗。裂殖子细胞表面展示的蛋白质因其直接暴露于宿主抗体而长期以来被认为是有吸引力的疫苗靶点;然而,由于在功能活性重组形式中表达这些蛋白质的技术挑战,对这些靶点的功能作用的理解进展受到了阻碍。为了解决这个问题,以前开发了一种能够系统表达功能细胞外疟原虫蛋白的方法,并用于创建 42 种裂殖子蛋白库。

方法

为了编译一个更全面的库,代表疟原虫裂殖子细胞外蛋白 repertoire 的重组蛋白,用于系统疫苗和功能研究,使用全基因组表达谱分析来鉴定其他候选蛋白。重组产生候选蛋白,并通过 Western blot 和 ELISA 测试其完整性和表达水平。

结果

在晚期裂殖体期间上调的另外 25 个基因被鉴定出来,这些基因预测编码分泌蛋白和表面蛋白,并作为可溶性重组蛋白表达。大多数蛋白质的免疫印迹观察到与整个外显子一致的条带,并定量了其表达水平。使用来自疟疾暴露免疫成年人的血清,评估了 20 种重组蛋白的免疫反应性,发现大多数裂殖子配体携带热不稳定表位。为了方便整个文库的系统比较研究,使用定制的平台同时纯化了多种疟原蛋白。

结论

通过 20 种额外的蛋白质,扩展了重组 P. falciparum 分泌蛋白和表面蛋白库,这些蛋白质显示出可使用的表达水平,并含有构象表位。这个包含 62 个全长外显子的疟原虫裂殖子细胞外蛋白库将是阐明这些蛋白质在感染的血液阶段功能的宝贵工具,并有助于比较评估血液阶段疫苗候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2376/3995786/3d4cca9d6399/1475-2875-13-93-1.jpg

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