Bloom M E, Martin D A, Oie K L, Huhtanen M E, Costello F, Wolfinbarger J B, Hayes S F, Agbandje-McKenna M
Laboratory of Persistent Viral Diseases, National Institute of Allergy and Infectious Disease, Hamilton, Montana 59840, USA.
J Virol. 1997 Jan;71(1):705-14. doi: 10.1128/JVI.71.1.705-714.1997.
The capsid proteins of the ADV-G isolate of Aleutian mink disease parvovirus (ADV) were expressed in 10 nonoverlapping segments as fusions with maltose-binding protein in pMAL-C2 (pVP1, pVP2a through pVP2i). The constructs were designed to capture the VP1 unique sequence and the portions analogous to the four variable surface loops of canine parvovirus (CPV) in individual fragments (pVP2b, pVP2d, pVP2e, and pVP2g, respectively). The panel of fusion proteins was immunoblotted with sera from mink infected with ADV. Seropositive mink infected with either ADV-TR, ADV-Utah, or ADV-Pullman reacted preferentially against certain segments, regardless of mink genotype or virus inoculum. The most consistently immunoreactive regions were pVP2g, pVP2e, and pVP2f, the segments that encompassed the analogs of CPV surface loops 3 and 4. The VP1 unique region was also consistently immunoreactive. These findings indicated that infected mink recognize linear epitopes that localized to certain regions of the capsid protein sequence. The segment containing the hypervariable region (pVP2d), corresponding to CPV loop 2, was also expressed from ADV-Utah. An anti-ADV-G monoclonal antibody and a rabbit anti-ADV-G capsid antibody reacted exclusively with the ADV-G pVP2d segment but not with the corresponding segment from ADV-Utah. Mink infected with ADV-TR or ADV-Utah also preferentially reacted with the pVP2d sequence characteristic of that virus. These results suggested that the loop 2 region may contain a type-specific linear epitope and that the epitope may also be specifically recognized by infected mink. Heterologous antisera were prepared against the VP1 unique region and the four segments capturing the variable surface loops of CPV. The antisera against the proteins containing loop 3 or loop 4, as well as the anticapsid antibody, neutralized ADV-G infectivity in vitro and bound to capsids in immune electron microscopy. These results suggested that regions of the ADV capsid proteins corresponding to surface loops 3 and 4 of CPV contain linear epitopes that are located on the external surface of the ADV capsid. Furthermore, these linear epitopes contain neutralizing determinants. Computer comparisons with the CPV crystal structure suggest that these sequences may be adjacent to the threefold axis of symmetry of the viral particle.
阿留申水貂病细小病毒(ADV)的ADV - G分离株的衣壳蛋白在10个非重叠片段中表达,作为与麦芽糖结合蛋白在pMAL - C2中的融合蛋白(pVP1、pVP2a至pVP2i)。构建体设计用于在各个片段(分别为pVP2b、pVP2d、pVP2e和pVP2g)中捕获VP1独特序列以及与犬细小病毒(CPV)四个可变表面环类似的部分。用感染ADV的水貂血清对融合蛋白组进行免疫印迹分析。感染ADV - TR、ADV - 犹他或ADV - 普尔曼的血清阳性水貂优先与某些片段发生反应,而与水貂基因型或病毒接种物无关。最一致的免疫反应区域是pVP2g、pVP2e和pVP2f,这些片段包含CPV表面环3和4的类似物。VP1独特区域也一直具有免疫反应性。这些发现表明,感染的水貂识别定位于衣壳蛋白序列某些区域的线性表位。来自ADV - 犹他的包含高变区(pVP2d)的片段也被表达,该片段对应于CPV环2。一种抗ADV - G单克隆抗体和一种兔抗ADV - G衣壳抗体仅与ADV - G的pVP2d片段反应,而不与来自ADV - 犹他的相应片段反应。感染ADV - TR或ADV - 犹他的水貂也优先与该病毒特有的pVP2d序列发生反应。这些结果表明,环2区域可能包含一种型特异性线性表位,并且该表位也可能被感染的水貂特异性识别。针对VP1独特区域和捕获CPV可变表面环的四个片段制备了异源抗血清。针对包含环3或环4的蛋白质的抗血清以及抗衣壳抗体在体外中和了ADV - G的感染性,并在免疫电子显微镜下与衣壳结合。这些结果表明,ADV衣壳蛋白中与CPV表面环3和4相对应的区域包含位于ADV衣壳外表面的线性表位。此外,这些线性表位包含中和决定簇。与CPV晶体结构的计算机比较表明,这些序列可能与病毒颗粒的三重对称轴相邻。