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首页> 外文期刊>Research in Microbiology >Phage DNA transport across membranes.
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Phage DNA transport across membranes.

机译:噬菌体DNA跨膜运输。

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Phage nucleic acid transport is atypical in bacterial membrane transport: it is unidirectional and concerns a unique molecule the size of which may represent 50 times that of the bacterium. The rate of DNA transport, although it varies from one phage to another, can reach values as high as 3000 bp s(-1). This raises the following questions which will be discussed in this review. Is there a single mechanism of transport for all types of phages? Does the phage genome cross the outer and inner membranes by a unique mechanism? Is it transported as a free molecule or in association with proteins? How does it avoid periplasmic nucleases? Is such transport dependent on phage and/or host cell components? What is the driving force for transport? Recent cryoelectron microscopy experiments will be presented which show that it is possible to encapsulate a phage genome (121000 bp) into unilamellar liposomes. The interest of such a model system in gene delivery and in the study of the mechanisms of DNA compaction will be discussed.
机译:噬菌体核酸运输在细菌膜运输中是非典型的:它是单向的,涉及一种独特的分子,其大小可能代表细菌的50倍。 DNA转运的速率,虽然它从一个噬菌体到另一个噬菌体变化,但可以达到高达3000 bps(-1)的值。这就提出了以下问题,将在本综述中进行讨论。所有类型的噬菌体都有单一的运输机制吗?噬菌体基因组是否通过独特的机制横穿内外膜?它是作为自由分子运输还是与蛋白质结合运输?如何避免周质核酸酶?这种运输是否依赖于噬菌体和/或宿主细胞成分?运输的驱动力是什么?将提出最近的低温电子显微镜实验,表明有可能将噬菌体基因组(121000 bp)封装到单层脂质体中。将讨论这种模型系统在基因传递和DNA紧缩机理研究中的兴趣。

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