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通过A/爱知/2/68(H3N2)与B/山形/1/73杂交产生的温度敏感甲型流感病毒克隆株。

Temperature-sensitive influenza A virus clones originated by a cross between A/Aichi/2/68 (H3N2) and B/Yamagata/1/73.

作者信息

Tobita K, Tanaka T, Goto H, Feng S Y

出版信息

Arch Virol. 1983;75(1-2):17-27. doi: 10.1007/BF01314124.

Abstract

A genetic cross was performed between influenza viruses B/Yamagata/1/73 and clone 6-10, an A type influenza virus derived from a cross between A/Aichi/2/68 (H3N2) and B/Yamagata. Efficiency of plating of B/Yamagata at 39.5 degrees C was less than 10(-3) in MDCK cells, while that of clone 6-10 or A/Aichi was higher than 10(-1). Four of the 15 clones selected for HA of Aichi serotype from the mixed yield, where type B virus was predominant over type A, were temperature-sensitive (ts), with efficiency of plating at 39.5 degrees C less than 10(-2), exceeding the frequency of spontaneous ts mutants among clone 6-10 progeny. Thus, co-existing type B virus not only interfered with the replication of type A, but also rendered it temperature-sensitive. Genetic analysis of the 4ts clones using a set of ts mutants of influenza virus A/WSN (H0N1) revealed that these clones, in contrast with the spontaneous ts mutant of clone 6-10, with ts defect only in NP gene, possessed ts lesions in multiple genes including a common ts defect in M. Polyacrylamide gel electrophoresis of viral RNA and proteins of these clones showed an identical gel pattern to that of clone 6-10, although the rate of synthesis of individual viral polypeptide was variable from clone to clone.

摘要

在B/山形/1/73流感病毒与克隆6 - 10之间进行了基因杂交,克隆6 - 10是一种A型流感病毒,源自A/爱知/2/68(H3N2)与B/山形的杂交。在MDCK细胞中,B/山形在39.5摄氏度下的接种效率低于10^(-3),而克隆6 - 10或A/爱知的接种效率高于10^(-1)。从混合产物中选择的15个具有爱知血清型血凝素(HA)的克隆中,有4个是温度敏感型(ts),在B型病毒占主导的A型病毒中,其在39.5摄氏度下的接种效率低于10^(-2),超过了克隆6 - 10子代中自发ts突变体的频率。因此,共存的B型病毒不仅干扰了A型病毒的复制,还使其具有温度敏感性。使用一组甲型流感病毒A/WSN(H0N1)的ts突变体对这4个ts克隆进行基因分析发现,与克隆6 - 10的自发ts突变体不同,克隆6 - 10的自发ts突变体仅在核蛋白(NP)基因中存在ts缺陷,而这些克隆在多个基因中存在ts损伤,包括在基质蛋白(M)中存在一个共同的ts缺陷。这些克隆的病毒RNA和蛋白质的聚丙烯酰胺凝胶电泳显示出与克隆6 - 10相同的凝胶图谱,尽管各个病毒多肽的合成速率因克隆而异。

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