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用于探究豌豆耳突花叶病毒结合亲和力的昆虫聚糖自动化溶液相合成

Automated Solution-Phase Synthesis of Insect Glycans to Probe the Binding Affinity of Pea Enation Mosaic Virus.

作者信息

Tang Shu-Lun, Linz Lucas B, Bonning Bryony C, Pohl Nicola L B

机构信息

Department of Chemistry, Hach Hall, Iowa State University , Ames, Iowa 50011, United States.

Department of Entomology, 339 Science II, Iowa State University , Ames, Iowa 50011, United States.

出版信息

J Org Chem. 2015 Nov 6;80(21):10482-9. doi: 10.1021/acs.joc.5b01428. Epub 2015 Oct 12.

Abstract

Pea enation mosaic virus (PEMV)--a plant RNA virus transmitted exclusively by aphids--causes disease in multiple food crops. However, the aphid-virus interactions required for disease transmission are poorly understood. For virus transmission, PEMV binds to a heavily glycosylated receptor aminopeptidase N in the pea aphid gut and is transcytosed across the gut epithelium into the aphid body cavity prior to release in saliva as the aphid feeds. To investigate the role of glycans in PEMV-aphid interactions and explore the possibility of viral control through blocking a glycan interaction, we synthesized insect N-glycan terminal trimannosides by automated solution-phase synthesis. The route features a mannose building block with C-5 ester enforcing a β-linkage, which also provides a site for subsequent chain extension. The resulting insect N-glycan terminal trimannosides with fluorous tags were used in a fluorous microarray to analyze binding with fluorescein isothiocyanate-labeled PEMV; however, no specific binding between the insect glycan and PEMV was detected. To confirm these microarray results, we removed the fluorous tag from the trimannosides for isothermal titration calorimetry studies with unlabeled PEMV. The ITC studies confirmed the microarray results and suggested that this particular glycan-PEMV interaction is not involved in virus uptake and transport through the aphid.

摘要

豌豆耳突花叶病毒(PEMV)——一种仅由蚜虫传播的植物RNA病毒——会在多种粮食作物中引发病害。然而,人们对病害传播所需的蚜虫-病毒相互作用了解甚少。为了进行病毒传播,PEMV会与豌豆蚜虫肠道中一种高度糖基化的受体氨肽酶N结合,并在蚜虫进食时,先通过肠道上皮细胞转运至蚜虫体腔,然后再以唾液形式释放出来。为了研究聚糖在PEMV-蚜虫相互作用中的作用,并探索通过阻断聚糖相互作用来控制病毒的可能性,我们通过自动化溶液相合成法合成了昆虫N-聚糖末端三甘露糖。该合成路线的特点是使用了带有C-5酯基的甘露糖构建单元,以强制形成β-连接,这也为后续的链延伸提供了一个位点。将所得带有氟标签的昆虫N-聚糖末端三甘露糖用于氟化物微阵列,以分析与异硫氰酸荧光素标记的PEMV的结合情况;然而,未检测到昆虫聚糖与PEMV之间的特异性结合。为了证实这些微阵列结果,我们从三甘露糖上去除了氟标签,以便用未标记的PEMV进行等温滴定量热法研究。等温滴定量热法研究证实了微阵列结果,并表明这种特定的聚糖-PEMV相互作用不参与病毒通过蚜虫的摄取和运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc2b/4640232/fd97b51b6f64/jo-2015-01428d_0003.jpg

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