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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Encapsidation and transfer of phage DNA into host cells: From in vivo to single particles studies
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Encapsidation and transfer of phage DNA into host cells: From in vivo to single particles studies

机译:噬菌体DNA的衣壳化和转移到宿主细胞中:从体内到单个颗粒的研究

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摘要

A remarkable property of bacteriophages is their capacity to encapsidate large amounts of DNA during morphogenesis and to maintain their genome in the capsid in a very stable form even under extreme conditions. Even as remarkable is the efficiency with which their genome is ejected from the phage particle and transferred into the host bacteria. Biophysical techniques have led to significant progresses in characterizing these mechanisms. The molecular motor of encapsidation of several phages as well as the organization of viral capsids have been described at atomic resolution. Cryo-electron microscopy and fluorescence microscopy have permitted to describe DNA ejection at the level of single phage particles. Theoretical models of encapsidation and ejection have been proposed that can be confronted to experimental data. This review will present the state of the art on the recent advances brought by biophysics in this field. Reference will be given to the work performed on double-stranded DNA phages and on one of its representative, phage T5, our working model. (c) 2005 Elsevier B.V. All rights reserved.
机译:噬菌体的显着特性是它们能够在形态发生过程中囊化大量DNA,甚至在极端条件下也能以非常稳定的形式将其基因组保持在衣壳中。将它们的基因组从噬菌体颗粒中弹出并转移到宿主细菌中的效率更为显着。生物物理技术已导致表征这些机制的重大进展。几个噬菌体的衣壳化的分子马达以及病毒衣壳的组织已经在原子分辨率上进行了描述。低温电子显微镜和荧光显微镜已允许描述单个噬菌体颗粒水平的DNA喷射。已经提出了衣壳化和弹射的理论模型,可以与实验数据相面对。这篇综述将介绍生物物理学在这一领域的最新进展。将参考在双链DNA噬菌体及其代表模型之一的噬菌体T5(我们的工作模型)中进行的工作。 (c)2005 Elsevier B.V.保留所有权利。

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