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在大肠杆菌中高效生产携带外源抗原重复拷贝的杂交马铃薯Y病毒样颗粒。

High level production of hybrid potyvirus-like particles carrying repetitive copies of foreign antigens in Escherichia coli.

作者信息

Jagadish M N, Hamilton R C, Fernandez C S, Schoofs P, Davern K M, Kalnins H, Ward C W, Nisbet I T

机构信息

CSIRO, Division of Biomolecular Engineering, Parkville, Victoria, Australia.

出版信息

Biotechnology (N Y). 1993 Oct;11(10):1166-70. doi: 10.1038/nbt1093-1166.

Abstract

Synthesis in E. coli of native coat protein of Johnsongrass mosaic virus, and hybrid protein molecules containing foreign antigens, resulted in the intracellular formation of potyvirus-like particles (PVLPs). The foreign antigens used were an octapeptide epitope from Plasmodium falciparum and a decapeptide hormone (luteinizing hormone releasing hormone) at the N- or at both N- and C-terminal regions of the coat protein molecule, and a full length protein antigen (Sj26-glutathione S-transferase of 26 kD from Schistosoma japonicum) replacing the N-terminal 62 amino acids of the coat protein. Electron microscopy of ultrathin sections of E. coli revealed that PVLPs resulting from coat protein molecules containing peptide fusions appeared in vast arrays of parallel strands within the cytoplasm sometimes extending the length of the cell and at times the cells were strung together, with "threads" of PVLPs appearing to connect individual bacterial cells. PVLPs resulting from the fusion of the 26 kD antigen Sj26 to coat protein were shorter and wider. The physical form of the high molecular weight PVLPs enabled purification by simple size exclusion column chromatography. The Sj26-PVLPs administered to mice without adjuvant elicited antibody responses comparable to monomeric Sj26 administered with Freund's Complete Adjuvant.

摘要

在大肠杆菌中合成高粱花叶病毒的天然外壳蛋白以及含有外源抗原的杂合蛋白分子,导致在细胞内形成类马铃薯Y病毒颗粒(PVLPs)。所使用的外源抗原是恶性疟原虫的一个八肽表位和一种十肽激素(促黄体生成素释放激素),分别位于外壳蛋白分子的N端或N端和C端区域,还有一种全长蛋白抗原(来自日本血吸虫的26kD的Sj26 - 谷胱甘肽S - 转移酶)取代了外壳蛋白的N端62个氨基酸。对大肠杆菌超薄切片的电子显微镜观察显示,由含有肽融合的外壳蛋白分子产生的PVLPs以大量平行链的形式出现在细胞质中,有时延伸至细胞的长度,有时细胞串连在一起,PVLPs的“细丝”似乎连接着单个细菌细胞。由26kD抗原Sj26与外壳蛋白融合产生的PVLPs更短更宽。高分子量PVLPs的物理形态使得通过简单的尺寸排阻柱色谱法就能进行纯化。给小鼠注射无佐剂的Sj26 - PVLPs引发的抗体反应与注射弗氏完全佐剂的单体Sj26相当。

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