首页> 外文期刊>Virology >Nucleocapsid formation and/or subsequent conformational change of rabies virus nucleoprotein (N) is a prerequisite step for acquiring the phosphatase-sensitive epitope of monoclonal antibody 5-2-26.
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Nucleocapsid formation and/or subsequent conformational change of rabies virus nucleoprotein (N) is a prerequisite step for acquiring the phosphatase-sensitive epitope of monoclonal antibody 5-2-26.

机译:狂犬病毒核蛋白(N)的核衣壳形成和/或随后的构象变化是获得单克隆抗体5-2-26的磷酸酶敏感表位的前提步骤。

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We investigated the antigenic maturation of rabies virus N protein, for which we used some conformational epitope-specific monoclonal antibodies (MAbs) and an MAb (5-2-26) against a phosphorylation-dependent linear epitope. Infected cells were lysed with a deoxycholate-free lysis buffer and separated by ultracentrifugation into the soluble top and the nucleocapsid fractions. None of the study MAbs recognized N proteins in the top fraction, whereas nucleocapsid-associated N proteins were recognized by all of the MAbs. Immunoprecipitation with polyclonal anti-N antibodies coprecipitated the P proteins from the top fraction, indicating that soluble N proteins are mostly associated with the P protein. The N proteins dissociated from both the N-P complex and nucleocapsids were recognized by none of the study MAbs, whereas the MAb 5-2-6 recognized the SDS-denatured N proteins of the nucleocapsid but not of the top fraction. In addition, the phosphorylation-deficient mutant N proteins were shown to be similarly accumulated as the wild-type N proteins into the viral inclusion bodies, defined as the virus-specific structures composed of viral nucleocapsids, that are produced in the cytoplasm of the infected cells. Based on these results, we believe that newly synthesized N proteins are not immediately phosphorylated at serine-389 (a common phosphorylation site) but are first associated with the P protein. After being used for encapsidation of the viral RNA, the N proteins undergo conformational changes, whereby epitopes for the conformation-specific MAbs are formed and become phosphorylated at serine-389. Copyright 1999 Academic Press.
机译:我们研究了狂犬病毒N蛋白的抗原成熟,为此我们使用了一些构象表位特异性单克隆抗体(MAb)和针对磷酸化依赖性线性表位的MAb(5-2-26)。用无脱氧胆酸盐的裂解缓冲液裂解感染的细胞,并通过超速离心分离成可溶性顶部和核衣壳级分。没有研究的单克隆抗体在最上面的部分中识别出N蛋白,而与核衣壳相关的N蛋白被所有的单克隆抗体识别。用多克隆抗N抗体进行的免疫沉淀从顶部开始共沉淀P蛋白,表明可溶性N蛋白主要与P蛋白相关。从N-P复合物和核衣壳上解离的N蛋白都没有被研究单克隆抗体识别,而MAb 5-2-6识别了核衣壳的SDS变性N蛋白,但没有识别最高部分。另外,磷酸化缺陷的突变N蛋白显示出与野生型N蛋白相似地积累到病毒包涵体中,病毒包涵体定义为由病毒核衣壳组成的病毒特异性结构,该结构在受感染的细胞质中产生细胞。基于这些结果,我们认为新合成的N蛋白不会在丝氨酸389(常见的磷酸化位点)上立即被磷酸化,而是首先与P蛋白相关。在用于病毒RNA的衣壳化之后,N蛋白经历构象变化,从而形成构象特异性MAb的表位并在丝氨酸389处被磷酸化。版权所有1999,学术出版社。

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