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Antigenic Importance of the Carboxy-Terminal Beta-Strand of the Porcine Reproductive and Respiratory Syndrome Virus Nucleocapsid Protein

机译:猪繁殖与呼吸综合症病毒核蛋白的羧基末端β-链的抗原重要性。

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摘要

Five domains of antigenic importance were previously mapped on the nucleocapsid protein (N) of the porcine reproductive and respiratory syndrome virus (PRRSV), and a domain comprised of the 11 C-terminal-most amino acids (residues 112 to 123) was shown to be essential for binding of N-specific conformation-dependent monoclonal antibodies (MAbs). In the present study, the importance of individual residues within this C-terminal domain for antigenicity was investigated using eight different mutant constructs of N expressed in HeLa cells. Single amino acid substitutions were introduced into the C-terminal domain of the N protein, and the significance of individual amino acids for MAb reactivity was determined by immunoprecipitation. None of the MAbs tested recognized the mutant with a leucine-to-proline substitution at residue 114 (L114P), while V112P, R113P, R113D, I115P, and R116P reduced MAb binding significantly. Conversely, substitution of amino acids at positions 118 (T118S) and 121 (P121A) had little effect on MAb binding. Secondary-structure predictions indicate that amino acids 111 to 117 form a beta-strand. In view of the fact that replacement of beta-strand-forming amino acids with proline elicited the greatest effect on MAb binding, it appears that secondary structure in the C terminus of the N protein is an important determinant of conformational epitope formation. While the crystal structure of the PRRSV N protein remains to be determined, results from these studies broaden our understanding of the secondary structures that make up the PRRSV N protein and shed some light on how they may relate to function.
机译:先前已将五个具有抗原重要性的结构域定位在猪繁殖与呼吸综合症病毒(PRRSV)的核衣壳蛋白(N)上,并且显示了一个由11个C末端最高氨基酸组成的结构域(残基112至123)对于结合N特异性构象依赖性单克隆抗体(MAb)是必不可少的。在本研究中,使用在HeLa细胞中表达的8种不同的N突变体构建体,研究了此C末端域内单个残基对抗原性的重要性。将单个氨基酸取代引入N蛋白的C末端结构域,并通过免疫沉淀确定单个氨基酸对MAb反应性的重要性。测试的单克隆抗体均未识别到在残基114(L114P)具有亮氨酸至脯氨酸取代的突变体,而V112P,R113P,R113D,I115P和R116P显着降低了MAb结合。相反,第118位(T118S)和第121位(P121A)氨基酸的取代对MAb结合的影响很小。二级结构预测表明氨基酸111至117形成β链。考虑到用脯氨酸替代形成β链的氨基酸对MAb结合的影响最大,因此看来,N蛋白C末端的二级结构是构象表位形成的重要决定因素。尽管PRRSV N蛋白的晶体结构尚待确定,但这些研究的结果拓宽了我们对构成PRRSV N蛋白的二级结构的理解,并阐明了它们与功能的关系。

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