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噬菌体φX174外部支架蛋白的N端缺失会影响组装的时间和保真度。

N-terminal deletions of the phiX174 external scaffolding protein affect the timing and fidelity of assembly.

作者信息

Uchiyama Asako, Heiman Peter, Fane Bentley A

机构信息

Division of Plant Pathology and Microbiology, Department of Plant Sciences, University of Arizona, Tucson, AZ 85721, USA.

出版信息

Virology. 2009 Apr 10;386(2):303-9. doi: 10.1016/j.virol.2009.01.030. Epub 2009 Feb 23.

Abstract

The first alpha-helices of Microviridae external scaffolding proteins function as coat protein substrate specificity domains. Mutations in this helix can lengthen the lag phase before progeny production. 5' deletion genes, encoding N-terminal deletion proteins, were constructed on plasmids and in the øX174 genome. Proteins lacking the first seven amino acids were able to rescue a nullD mutant when expressed from a plasmid. However, the lag phase before progeny production was lengthened. The øX174 mutant with the corresponding genomic gene grew very poorly. The molecular basis of the defective phenotype was complex. External scaffolding protein levels were reduced compared to wild-type and most of the viral coat protein in mutant infected cells appears to be siphoned off the assembly pathway. Second-site suppressors of the growth defects were isolated and appear to act via two different mechanisms. One class of suppressors most likely acts by altering mutant external scaffolding protein expression while the second class of suppressors appears to act on the level of protein-protein interactions.

摘要

微小病毒科外部支架蛋白的首个α螺旋作为衣壳蛋白底物特异性结构域发挥作用。该螺旋中的突变可延长子代产生前的延迟期。在质粒和øX174基因组中构建了编码N端缺失蛋白的5'缺失基因。当从质粒表达时,缺少前七个氨基酸的蛋白能够拯救nullD突变体。然而,子代产生前的延迟期延长了。具有相应基因组基因的øX174突变体生长非常差。缺陷表型的分子基础很复杂。与野生型相比,外部支架蛋白水平降低,并且突变体感染细胞中的大多数病毒衣壳蛋白似乎从装配途径中被分流。分离出了生长缺陷的第二位点抑制子,它们似乎通过两种不同的机制起作用。一类抑制子最有可能通过改变突变体外部支架蛋白的表达起作用,而另一类抑制子似乎作用于蛋白质-蛋白质相互作用水平。

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