van Rijn P A, Miedema G K, Wensvoort G, van Gennip H G, Moormann R J
Department of Virology, Central Veterinary Institute, Lelystad, The Netherlands.
J Virol. 1994 Jun;68(6):3934-42. doi: 10.1128/JVI.68.6.3934-3942.1994.
Envelope glycoprotein E1 (gp51 to gp54) is the most antigenic protein of hog cholera virus or classical swine fever virus (CSFV). Four antigenic domains, A to D, have been mapped on E1 with a panel of monoclonal antibodies (MAbs) raised against CSFV strain Brescia. The boundaries of these domains have been established by extensive studies on binding of MAbs to transiently expressed deletion mutants of E1 (P. A. van Rijn, E. J. de Meijer, H. G. P. van Gennip, and R. J. M. Moormann, J. Gen. Virol. 74:2053-2060, 1993). In this study, we used neutralizing MAbs of domains A, B, and C to isolate MAb-resistant mutants (MAR mutants) of CSFV strain Brescia and Chinese vaccine strain ("C"). The E1 genes of MAR mutants were cloned in a eukaryotic expression vector, and the effects of MAR mutations on epitopes were studied with a panel of 19 MAbs by immunostaining of COS1 cells transiently expressing these mutant E1s. Except for the MAR mutation Cys-->Arg at position 792, which abolished binding of all MAbs of domains A and D, amino acid substitutions affected only MAbs belonging to the same domain as the MAb used to select the MAR mutant. However, a MAR mutation in a particular domain did not per se abolish binding of all MAbs recognizing that domain. Furthermore, MAR mutants possessed conservative as well as nonconservative amino acid substitutions. To investigate the significance of a secondary structure for the binding of MAbs, all cysteine residues in the N-terminal antigenic part of E1 were mutated to serine. We found that the cysteines at positions 693 and 737 were essential for binding by MAbs of domains B and C, whereas those at positions 792, 818, 828, and 856 appeared to be essential for the binding of most MAbs of domains A and D. These results fully comply with the previously proposed two-unit structure of the N-terminal half of E1. One unit consists of antigenic domains B and C, whereas the other unit consists of the highly conserved domain A and domain D. We conclude that the first six cysteines are critical for the correct folding of E1. A model of the antigenic structure of E1 is presented and discussed.
包膜糖蛋白E1(gp51至gp54)是猪霍乱病毒或经典猪瘟病毒(CSFV)中最具抗原性的蛋白。利用针对CSFV Brescia株制备的一组单克隆抗体(MAb),已在E1上定位了四个抗原结构域,A至D。通过对MAb与E1瞬时表达缺失突变体结合的广泛研究,确定了这些结构域的边界(P. A. van Rijn、E. J. de Meijer、H. G. P. van Gennip和R. J. M. Moormann,《病毒学杂志》74:2053 - 2060,1993年)。在本研究中,我们使用结构域A、B和C的中和性MAb来分离CSFV Brescia株和中国疫苗株(“C”)的MAb抗性突变体(MAR突变体)。将MAR突变体的E1基因克隆到真核表达载体中,并通过对瞬时表达这些突变E1的COS1细胞进行免疫染色,用一组19种MAb研究MAR突变对表位的影响。除了第792位的MAR突变Cys→Arg消除了结构域A和D所有MAb的结合外,氨基酸替换仅影响与用于选择MAR突变体的MAb属于同一结构域的MAb。然而,特定结构域中的MAR突变本身并不会消除识别该结构域的所有MAb的结合。此外,MAR突变体具有保守和非保守的氨基酸替换。为了研究二级结构对MAb结合的重要性,将E1 N端抗原部分的所有半胱氨酸残基突变为丝氨酸。我们发现,第693和737位的半胱氨酸对于结构域B和C的MAb结合至关重要,而第792、818、828和856位的半胱氨酸似乎对于结构域A和D的大多数MAb结合至关重要。这些结果完全符合先前提出的E1 N端一半的双单元结构。一个单元由抗原结构域B和C组成,而另一个单元由高度保守的结构域A和结构域D组成。我们得出结论,前六个半胱氨酸对于E1的正确折叠至关重要。本文提出并讨论了E1抗原结构的模型。