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Modeling of the SV40 DNA Replication Machine

机译:SV40 DNA复制机的建模

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摘要

The mechanism of SV40 DNA replication is certainly not completely understood. The proteins that are necessary for replication have been known for quite some time, but how they work together to form a nanomachine capable of faithfully replicating the virus DNA is only partially understood. Some of the proteins involved have been crystallized and their 3D structures determined, and several EM reconstructions of SV40 T antigen have been generated. In addition, there is a fair amount of biochemical data that pinpoints the sites of interaction between various proteins. With this information, various models were assembled that show how the SV40 DNA replication nanomachine could be structured in three dimensional space. This process was aided by the use of a 3D docking program as well as fitting of structures. The advantage of the availability of these models is that they are experimentally testable and they provide an insight into how the replication machine could work. Another advantage is that it is possible to quickly compare newly published structures to the models in order to come up with improved models.
机译:SV40 DNA复制的机制当然尚未完全了解。复制所必需的蛋白质已有相当长的一段时间了,但是它们如何协同工作以形成能够忠实复制病毒DNA的纳米机器,只是部分了解。一些涉及的蛋白质已被结晶并确定了其3D结构,并已产生SV40 T抗原的几种EM重建。另外,有大量的生化数据可以精确地指出各种蛋白质之间的相互作用位点。利用这些信息,组装了各种模型,这些模型显示了如何在三维空间中构造SV40 DNA复制纳米机器。通过使用3D对接程序以及结构的装配来辅助此过程。这些模型的可用性在于它们可以进行实验测试,并且可以洞悉复制机的工作方式。另一个优点是可以快速将新发布的结构与模型进行比较,以提出改进的模型。

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