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Cold-adapted poliovirus mutants bypass a postentry replication block.

机译:冷适应脊髓灰质炎病毒突变体绕过进入后复制区。

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摘要

In the current model of poliovirus entry, the initial interaction of the native virion with its cellular receptor is followed by a transition to an altered form, which then acts as an intermediate in viral entry. While the native virion sediments at 160S in a sucrose gradient, the altered particle sediments at 135S, has lost the coat protein VP4, and has become more hydrophobic. Altered particles can be found both associated with cells and in the culture medium. It has been hypothesized that the cell-associated 135S particle releases the viral genome into the cell cytoplasm and that nonproductive transitions to the 135S form are responsible for the high particle-to-PFU ratio observed for polioviruses. At 25 degrees C, a temperature at which the transition to 135S particles does not occur, the P1/Mahoney strain of poliovirus was unable to replicate, and cold-adapted (ca) mutants were selected from the population. These mutants have not gained the ability to convert to 135S particles at 25 degrees C, and the block to wild-type (wt) infection at low temperatures is not at the level of cellular entry. The particle-to-PFU ratio of poliovirus does not change at 25 degrees C in the absence of alteration. Three independent amino acid changes in the 2C coding region were identified in ca mutants, at positions 218 (Val to Ile), 241 (Arg to Ala), and 309 (Met to Val). Introduction of any of these mutations individually into wt poliovirus by site-directed mutagenesis confers the ca phenotype. All three serotypes of the Sabin vaccine strains and the P3/Leon strain of poliovirus also exhibit the ca phenotype. These results do not support a model of poliovirus entry into cells that includes an obligatory transition to the 135S particle.
机译:在当前的脊髓灰质炎病毒进入模型中,天然病毒体与其细胞受体的最初相互作用是转变为改变形式,然后其充当病毒进入的中间产物。当天然病毒体以蔗糖梯度在160S沉淀时,改变后的颗粒在135S沉淀,失去了外壳蛋白VP4,并且变得更加疏水。可以发现与细胞和培养基相关的改变的颗粒。已经假设与细胞相关的135S颗粒将病毒基因组释放到细胞质中,并且非生产性向135S形式的转变是脊髓灰质炎病毒观察到的高颗粒与PFU之比的原因。在25摄氏度(不发生向135S颗粒过渡的温度)下,脊髓灰质炎病毒的P1 / Mahoney菌株无法复制,并从种群中选择了冷适应的(ca)突变体。这些突变体尚未获得在25摄氏度下转化为135S颗粒的能力,并且在低温下对野生型(wt)感染的阻断作用还没有进入细胞水平。在没有改变的情况下,脊髓灰质炎病毒的颗粒与PFU的比例在25摄氏度下不会改变。在ca突变体中,在218位(Val至Ile),241位(Arg至Ala)和309位(Met至Val)鉴定出2C编码区的三个独立氨基酸变化。通过定点诱变将这些突变中的任何一个单独引入野生型脊髓灰质炎病毒,可赋予ca表型。 Sabin疫苗株和脊髓灰质炎病毒的P3 / Leon株的所有三种血清型也都表现出ca表型。这些结果不支持脊髓灰质炎病毒进入细胞的模型,该模型包括必须过渡到135S颗粒。

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