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Biochemical characterization of bacteriophage lambda genome packaging in vitro.

机译:体外噬菌体λ基因组包装的生化特征。

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Bacteriophage lambda has been extensively studied, and the abundance of genetic and biochemical information available makes this an ideal model system to study virus DNA packaging at the molecular level. Limited in vitro packaging efficiency has hampered progress toward this end, however. It has been suggested that limited packaging efficiency is related to poor activity of purified procapsids. We describe the construction of a vector that expresses lambda procapsids with a yield that is 40-fold greater than existing systems. Consistent with previous studies, packaging of a mature lambda genome is very inefficient in vitro, with only 4% of the input procapsids utilized. Concatemeric DNA is the preferred packaging substrate in vivo, and procapsids interact with a nucleoprotein complex known as complex I to initiate genome packaging. When complex I is used as a packaging substrate in vitro, capsid utilization is extremely efficient, and 40% of the input DNA is packaged. Finally, we provide evidence for apackaging-stimulated ATPase activity, and kinetically characterize this reaction quantifying the energetic cost of DNA packaging in bacteriophage lambda.
机译:噬菌体λ已被广泛研究,并且可获得的大量遗传和生化信息使之成为在分子水平上研究病毒DNA包装的理想模型系统。但是,有限的体外包装效率阻碍了这一目标的进展。已经提出有限的包装效率与纯化的衣壳的活性差有关。我们描述了一种载体的构建,该载体表达λ衣壳蛋白,其产量比现有系统高40倍。与以前的研究一致,在体外,成熟λ基因组的包装效率非常低,仅使用了4%的输入衣壳。串联DNA是体内优选的包装底物,而衣壳与称为复合物I的核蛋白复合物相互作用以启动基因组包装。当将复合物I用作体外包装底物时,衣壳的利用极为有效,并且40%的输入DNA被包装。最后,我们为包装刺激的ATPase活性提供了证据,并在动力学上表征了该反应,从而定量了噬菌体λ中DNA包装的能量消耗。

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