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Structural and physiological properties of mengovirus: Avirulent hemagglutination-defective mutants express altered alpha (1 D) proteins and are adsorption-defective

机译:芒果病毒的结构和生理特性:无毒血凝缺陷的突变体表达改变的alpha(1 D)蛋白并且具有吸附缺陷性

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摘要

Structural and physiological properties of two mutants of mengovirus, 205 and 280, were compared to those of wild-type virus to understand the molecular basis of changes exhibited in their biological function. Two dimensional gel electrophoresis of wild-type and mutant structural proteins revealed alterations in the isoelectric character of the alpha (1 D) protein of both mutant 205 and 280. These data suggest that alterations in the alpha (1 D) protein may be responsible for the phenotypic changes by the mutants. A delay in detectable virus-specified protein synthesis was exhibited in mutant-infected cells in comparison to wild-type. The amount of RNA synthesized in mutant- and revertant-infected cells was less than that synthesized in wild-type infected cells. Changes in virus-specified macro-molecular synthesis in mutant and revertant-infected cells reflected a decrease in the ability of the viruses to attach to cells.
机译:将两种芒果病毒突变体205和280与野生型病毒的结构和生理特性进行了比较,以了解其生物学功能发生变化的分子基础。野生型和突变体结构蛋白的二维凝胶电泳显示,突变体205和280的α(1 D)蛋白的等电特性发生了变化。这些数据表明,α(1 D)蛋白的变化可能是造成突变的原因。突变体的表型变化。与野生型相比,在突变体感染的细胞中可检测到的病毒特异性蛋白质合成出现延迟。在突变体和回复体感染的细胞中合成的RNA的量少于在野生型感染细胞中合成的RNA的量。突变和逆向感染细胞中病毒指定的大分子合成的变化反映了病毒附着于细胞的能力下降。

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