Hewish D R, Xiao X W, Mishra A, Gough K H, Shukla D D
CSIRO, Division of Biomolecular Engineering, Parkville, Victoria, Australia.
Arch Virol. 1993;133(1-2):127-41. doi: 10.1007/BF01309749.
Mouse monoclonal antibodies (MAbs) against the Australian B strain of clover yellow vein (ClYVV-B) and the JG strain of Johnsongrass mosaic (JGMV) potyviruses were produced, characterised and the epitopes with which they reacted were deduced. Using intact particles of ClYVV a total of ten MAbs were obtained which reacted strongly with ClYVV-B in an enzyme-linked immunosorbent assay and Western blots. Four of these MAbs (1, 2, 4, and 13) were found to be ClYVV-specific, as they reacted with all five ClYVV strains from Australia and the U.S.A. but not with 11 strains of bean yellow mosaic (BYMV), pea mosaic (PMV), and white lupin mosaic (WLMV) viruses which, together with ClYVV, form the BYMV subgroup of potyvirses. These MAbs failed to react with eight other potyvirus species, including six which infect legumes like the viruses in the BYMV subgroup. The ClYVV MAb 10 was found to be BYMV subgroup-specific. It reacted strongly with 15 of the 16 strains of viruses in the subgroup and gave no reaction with eight other potyviruses. The other five ClYVV MAbs reacted with varying degrees of specificity with the BYMV subgroup viruses and also with other potyviruses. Eight of the ClYVV MAbs (1, 2, 4, 5, 13, 17, 21, and 22) reacted with the intact coat proteins only and not with the truncated (minus amino terminus) coat protein of ClYVV suggesting that the epitopes for these MAbs are located in the surface-exposed, amino-terminal region of the ClYVV coat protein. Comparison of published coat protein sequences of BYMV and ClYVV isolates indicated that the epitopes for the four ClYVV-specific MAbs may be in the amino-terminal region spanning amino acid residues 18 to 30, whereas those for the other four MAbs may be located in the first 17 amino-terminal amino acid residue region. The epitopes that reacted with BYMV subgroup-specific MAb 10 and MAb 30 which reacted with 20 of the 24 potyvirus isolates, are probably located in the core region of ClYVV coat protein as these MAbs reacted with the intact as well as truncated coat protein of ClYVV. Analysis, in Western blot immunoassay, of 17 MAbs raised against virions of JGMV revealed that only two MAbs (1-25 and 4-30) were JGMV-specific, whereas others displayed varying degrees of specificity to different potyviruses.(ABSTRACT TRUNCATED AT 400 WORDS)
制备了针对三叶草黄脉病毒澳大利亚B株(ClYVV - B)和约翰逊草花叶病毒JG株(JGMV)的小鼠单克隆抗体(MAb),对其进行了表征,并推导了它们所反应的表位。使用ClYVV的完整病毒粒子,共获得了10种单克隆抗体,这些抗体在酶联免疫吸附测定和蛋白质印迹中与ClYVV - B强烈反应。发现其中4种单克隆抗体(1、2、4和13)具有ClYVV特异性,因为它们与来自澳大利亚和美国的所有5种ClYVV毒株反应,但不与11种菜豆黄花叶病毒(BYMV)、豌豆花叶病毒(PMV)和白羽扇豆花叶病毒(WLMV)毒株反应,这些病毒与ClYVV一起构成了马铃薯Y病毒属的BYMV亚组。这些单克隆抗体不与其他8种马铃薯Y病毒反应,包括6种感染豆科植物的病毒,这些病毒与BYMV亚组中的病毒类似。发现ClYVV单克隆抗体10具有BYMV亚组特异性。它与该亚组中16种病毒株中的15种强烈反应,与其他8种马铃薯Y病毒无反应。其他5种ClYVV单克隆抗体与BYMV亚组病毒以及其他马铃薯Y病毒有不同程度的特异性反应。8种ClYVV单克隆抗体(1、2、4、5、13、17、21和22)仅与完整的衣壳蛋白反应,而不与ClYVV的截短(去除氨基末端)衣壳蛋白反应,这表明这些单克隆抗体的表位位于ClYVV衣壳蛋白表面暴露的氨基末端区域。已发表的BYMV和ClYVV分离株的衣壳蛋白序列比较表明,4种ClYVV特异性单克隆抗体的表位可能在跨越氨基酸残基18至30的氨基末端区域,而其他4种单克隆抗体的表位可能位于前17个氨基末端氨基酸残基区域。与BYMV亚组特异性单克隆抗体10反应的表位以及与24种马铃薯Y病毒分离株中的20种反应的单克隆抗体30的表位,可能位于ClYVV衣壳蛋白的核心区域,因为这些单克隆抗体与ClYVV的完整和截短衣壳蛋白都反应。在蛋白质印迹免疫分析中,对针对JGMV病毒粒子产生的17种单克隆抗体进行分析发现,只有2种单克隆抗体(1 - 25和4 - 30)具有JGMV特异性,而其他单克隆抗体对不同的马铃薯Y病毒表现出不同程度的特异性。(摘要截短至400字)