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HK97小末端酶:DNA复合物的结构揭示了一种由环状蛋白质介导的新型DNA结合机制。

Structure of HK97 small terminase:DNA complex unveils a novel DNA binding mechanism by a circular protein.

作者信息

Chechik Maria, Greive Sandra J, Antson Alfred A, Jenkins Huw T

机构信息

York Structural Biology Laboratory, Department of Chemistry, University of York, York YO10 5DD, United Kingdom.

出版信息

bioRxiv. 2023 Jul 20:2023.07.17.549218. doi: 10.1101/2023.07.17.549218.

Abstract

DNA recognition is critical for assembly of double-stranded DNA viruses, in particular for the initiation of packaging the viral genome into the capsid. DNA packaging has been extensively studied for three archetypal bacteriophage systems: , and phi29. We identified the minimal site within the region of bacteriophage HK97 specifically recognised by the small terminase and determined a cryoEM structure for the small terminase:DNA complex. This nonameric circular protein utilizes a previously unknown mechanism of DNA binding. While DNA threads through the central tunnel, unexpectedly, DNA-recognition is generated at its exit by a substructure formed by the N- and C-terminal segments of two adjacent protomers of the terminase which are unstructured in the absence of DNA. Such interaction ensures continuous engagement of the small terminase with DNA, allowing sliding along DNA while simultaneously checking the DNA sequence. This mechanism allows locating and instigating packaging initiation and termination precisely at the site.

摘要

DNA识别对于双链DNA病毒的组装至关重要,特别是对于将病毒基因组包装到衣壳中的起始过程。DNA包装已在三种典型的噬菌体系统中得到广泛研究:、和phi29。我们确定了噬菌体HK97区域内被小末端酶特异性识别的最小位点,并确定了小末端酶:DNA复合物的冷冻电镜结构。这种九聚体环状蛋白利用了一种以前未知的DNA结合机制。当DNA穿过中央通道时,出乎意料的是,DNA识别是在其出口处由末端酶两个相邻原体的N端和C端片段形成的亚结构产生的,这些片段在没有DNA时是无结构的。这种相互作用确保了小末端酶与DNA的持续结合,允许沿着DNA滑动,同时检查DNA序列。这种机制允许在位点精确地定位和启动包装起始和终止。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25a1/10370121/52289d25dbd1/nihpp-2023.07.17.549218v2-f0002.jpg

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