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Structural basis for DNA recognition and loading into a viral packaging motor

机译:DNA识别并装载到病毒包装马达中的结构基础

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摘要

Genome packaging into preformed viral procapsids is driven by powerful molecular motors. The small terminase protein is essential for the initial recognition of viral DNA and regulates the motor’s ATPase and nuclease activities during DNA translocation. The crystal structure of a full-length small terminase protein from the Siphoviridae bacteriophage SF6, comprising the N-terminal DNA binding, the oligomerization core, and the C-terminal β-barrel domains, reveals a nine-subunit circular assembly in which the DNA-binding domains are arranged around the oligomerization core in a highly flexible manner. Mass spectrometry analysis and four further crystal structures show that, although the full-length protein exclusively forms nine-subunit assemblies, protein constructs missing the C-terminal β-barrel form both nine-subunit and ten-subunit assemblies, indicating the importance of the C terminus for defining the oligomeric state. The mechanism by which a ring-shaped small terminase oligomer binds viral DNA has not previously been elucidated. Here, we probed binding in vitro by using EPR and surface plasmon resonance experiments, which indicated that interaction with DNA is mediated exclusively by the DNA-binding domains and suggested a nucleosome-like model in which DNA binds around the outside of the protein oligomer.
机译:基因组包装成预先形成的病毒衣壳是由强大的分子马达驱动的。小末端酶蛋白对于病毒DNA的初始识别至关重要,并在DNA转运过程中调节发动机的ATPase和核酸酶活性。 Siphoviridae噬菌体SF6的全长小末端酶蛋白的晶体结构包含N端DNA结合,寡聚核心和C端β-桶结构域,揭示了一个9个亚基的环状装配体,其中DNA结合域以高度灵活的方式排列在低聚核心周围。质谱分析和另外四个晶体结构表明,尽管全长蛋白质仅形成9个亚基组装体,但缺少C末端β-桶的蛋白质构建体同时形成了9个亚基和十个亚基组装体,表明了蛋白质的重要​​性。用于定义低聚状态的C末端。环状小末端酶寡聚体结合病毒DNA的机制先前尚未阐明。在这里,我们通过使用EPR和表面等离振子共振实验在体外探测了结合,这表明与DNA的相互作用仅由DNA结合域介导,并提出了一种核小体样模型,其中DNA在蛋白质寡聚物的外部结合。

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