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Measles virus polypeptides in infected cells studied by immune precipitation and one-dimensional peptide mapping.

机译:通过免疫沉淀和一维肽图分析研究了感染细胞中的麻疹病毒多肽。

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摘要

Measles virus does not turn off host cell polypeptide synthesis, making it difficult to precisely identify the polypeptides specified by the virus during the infectious cycle. By using the technique of immune precipitation with measles-specific antisera, the host cell background has been eliminated, and new observations have been made concerning measles virus polypeptides H, P, NP, F, and M. The H polypeptide is first synthesized as a monomer which is processed by further glycosylation and by the formation of disulfide-bonded dimers. Polypeptide P (70,000 daltons) has been found to occur also as a 65,000-dalton molecule, P2, and both forms of the molecule are equally phosphorylated. Polypeptide NP is processed from a cleavage-sensitive form (which undergoes cleavage during the process of isolation to form polypeptide 6 [41,000 daltons]) to a form which is resistant to this cleavage. The fusion and hemolysin polypeptide is first found in the cells as a 55,000-dalton precursor, F0, which is clearly resolved from the NP polypeptide on gel electrophoresis. The measles virus F0 protein identified in previous reports had not been resolved from the 60,000-dalton NP polypeptide. The M protein occurs in the infected cells as two distinct bands, and, as in the case of Sendai virus, one of these two M protein bands represents a phosphorylated form of the other.
机译:麻疹病毒不会关闭宿主细胞多肽的合成,因此很难在感染周期内准确鉴定病毒指定的多肽。通过使用具有麻疹特异性抗血清的免疫沉淀技术,已消除了宿主细胞的本底,并且已经有了有关麻疹病毒多肽H,P,NP,F和M的新观察结果。通过进一步糖基化和通过形成二硫键结合的二聚体加工的单体。已发现多肽P(70,000道尔顿)也以65,000道尔顿的分子P2的形式出现,并且两种形式的分子均被磷酸化。多肽NP从裂解敏感性形式(在分离过程中经历裂解以形成多肽6 [41,000道尔顿])加工成对这种裂解具有抗性的形式。融合和溶血素多肽首先在细胞中以55,000道尔顿的前体F0的形式发现,在凝胶电泳中可以从NP多肽中清楚地分辨出来。先前报告中鉴定的麻疹病毒F0蛋白尚未从6万道尔顿NP多肽中分离出来。 M蛋白在感染的细胞中以两个不同的条带形式出现,就像仙台病毒一样,这两个M蛋白条带中的一个代表另一条蛋白的磷酸化形式。

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