Mass Spectrometric and Glycan Microarray-Based Characterization of the Filarial Nematode Brugia malayi Glycome Reveals Anionic and Zwitterionic Glycan Antigens.

Molecular & cellular proteomics : MCP Pub Date : 2022-05-01 Epub Date: 2022-01-20 DOI:10.1016/j.mcpro.2022.100201
Laudine M C Petralia, Angela van Diepen, Lena A Lokker, D Linh Nguyen, Erliyani Sartono, Vishal Khatri, Ramaswamy Kalyanasundaram, Christopher H Taron, Jeremy M Foster, Cornelis H Hokke
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引用次数: 12

Abstract

Millions of people worldwide are infected with filarial nematodes, responsible for lymphatic filariasis (LF) and other diseases causing chronic disablement. Elimination programs have resulted in a substantial reduction of the rate of infection in certain areas creating a need for improved diagnostic tools to establish robust population surveillance and avoid LF resurgence. Glycans from parasitic helminths are emerging as potential antigens for use in diagnostic assays. However, despite its crucial role in host-parasite interactions, filarial glycosylation is still largely, structurally, and functionally uncharacterized. Therefore, we investigated the glycan repertoire of the filarial nematode Brugia malayi. Glycosphingolipid and N-linked glycans were extracted from several life-stages using enzymatic release and characterized using a combination of MALDI-TOF-MS and glycan sequencing techniques. Next, glycans were purified by HPLC and printed onto microarrays to assess the host anti-glycan antibody response. Comprehensive glycomic analysis of B. malayi revealed the presence of several putative antigenic motifs such as phosphorylcholine and terminal glucuronic acid. Glycan microarray screening showed a recognition of most B. malayi glycans by immunoglobulins from rhesus macaques at different time points after infection, which permitted the characterization of the dynamics of anti-glycan immunoglobulin G and M during the establishment of brugian filariasis. A significant level of IgG binding to the parasite glycans was also detected in infected human plasma, while IgG binding to glycans decreased after anthelmintic treatment. Altogether, our work identifies B. malayi glycan antigens and reveals antibody responses from the host that could be exploited as potential markers for LF.

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基于质谱和聚糖微阵列的马来布鲁贾丝线虫Glycome的表征揭示了阴离子和两性离子聚糖抗原。
全世界有数百万人感染了丝虫病线虫,导致淋巴丝虫病和其他导致慢性残疾的疾病。消除计划导致某些地区感染率大幅下降,需要改进诊断工具,以建立强有力的人口监测并避免LF再次出现。来自寄生蠕虫的聚糖正逐渐成为用于诊断分析的潜在抗原。然而,尽管丝虫糖基化在宿主-寄生虫相互作用中起着至关重要的作用,但在很大程度上,结构上和功能上仍未被表征。因此,我们研究了马来布鲁贾丝线虫的聚糖库。鞘糖脂和n链聚糖通过酶释放法从不同生命阶段提取,并结合MALDI-TOF-MS和聚糖测序技术进行表征。接下来,用高效液相色谱纯化多糖,并将其打印到微阵列上,以评估宿主抗多糖抗体的反应。对马来芽孢杆菌的糖糖分析揭示了几种推测的抗原基序,如磷酸胆碱和末端葡萄糖醛酸。多糖微阵列筛选结果显示,恒河猴感染后不同时间点的免疫球蛋白对大多数马来螺旋体多糖有识别作用,从而可以表征勃氏丝虫病建立过程中抗多糖免疫球蛋白G和M的动态变化。在被感染的人血浆中也检测到显著水平的IgG与寄生虫聚糖结合,而在驱虫药治疗后,IgG与聚糖的结合降低。总之,我们的工作鉴定了马来芽孢杆菌聚糖抗原,并揭示了宿主的抗体反应,这些抗体反应可以作为LF的潜在标记物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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