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一些最小 ATP 依赖型 DNA 连接酶的噬菌体起源:来自伯克霍尔德氏菌假单胞菌的新结构与绿球藻病毒连接酶具有惊人的相似性。

Bacteriophage origin of some minimal ATP-dependent DNA ligases: a new structure from Burkholderia pseudomallei with striking similarity to Chlorella virus ligase.

机构信息

School of Science, University of Waikato, Hamilton, 3240, New Zealand.

Department of Chemistry, UiT The Arctic University of Norway, 9037, Tromsø, Norway.

出版信息

Sci Rep. 2021 Sep 21;11(1):18693. doi: 10.1038/s41598-021-98155-w.

Abstract

DNA ligases, the enzymes responsible for joining breaks in the phosphodiester backbone of DNA during replication and repair, vary considerably in size and structure. The smallest members of this enzyme class carry out their functions with pared-down protein scaffolds comprising only the core catalytic domains. Here we use sequence similarity network analysis of minimal DNA ligases from all biological super kingdoms, to investigate their evolutionary origins, with a particular focus on bacterial variants. This revealed that bacterial Lig C sequences cluster more closely with Eukaryote and Archaeal ligases, while bacterial Lig E sequences cluster most closely with viral sequences. Further refinement of the latter group delineates a cohesive cluster of canonical Lig E sequences that possess a leader peptide, an exclusively bacteriophage group of T7 DNA ligase homologs and a group with high similarity to the Chlorella virus DNA ligase which includes both bacterial and viral enzymes. The structure and function of the bacterially-encoded Chlorella virus homologs were further investigated by recombinantly producing and characterizing, the ATP-dependent DNA ligase from Burkholderia pseudomallei as well as determining its crystal structure in complex with DNA. This revealed that the enzyme has similar activity characteristics to other ATP-dependent DNA ligases, and significant structural similarity to the eukaryotic virus Chlorella virus including the positioning and DNA contacts of the binding latch region. Analysis of the genomic context of the B. pseudomallei ATP-dependent DNA ligase indicates it is part of a lysogenic bacteriophage present in the B. pseudomallei chromosome representing one likely entry point for the horizontal acquisition of ATP-dependent DNA ligases by bacteria.

摘要

DNA 连接酶是在复制和修复过程中负责连接 DNA 磷酸二酯骨架断裂的酶,其大小和结构差异很大。该酶类的最小成员通过仅包含核心催化结构域的简化蛋白支架来执行其功能。在这里,我们使用来自所有生物超界的最小 DNA 连接酶的序列相似性网络分析,研究它们的进化起源,特别关注细菌变体。这表明细菌 Lig C 序列与真核生物和古菌 ligases 聚类更为密切,而细菌 Lig E 序列与病毒序列聚类最为密切。对后一组的进一步细化描绘了一个具有凝聚力的经典 Lig E 序列簇,该序列簇具有前导肽、一组仅噬菌体的 T7 DNA 连接酶同源物和一组与 Chlorella 病毒 DNA 连接酶高度相似的序列,其中包括细菌和病毒酶。通过重组产生和表征 Burkholderia pseudomallei 中的 ATP 依赖性 DNA 连接酶,并确定其与 DNA 复合物的晶体结构,进一步研究了细菌编码的 Chlorella 病毒同源物的结构和功能。这表明该酶具有与其他 ATP 依赖性 DNA 连接酶相似的活性特征,并且与真核病毒 Chlorella 病毒具有显著的结构相似性,包括结合闩锁区域的定位和 DNA 接触。对 Burkholderia pseudomallei ATP 依赖性 DNA 连接酶基因组上下文的分析表明,它是存在于 Burkholderia pseudomallei 染色体中的溶原噬菌体的一部分,代表了细菌通过水平获得 ATP 依赖性 DNA 连接酶的一个可能进入点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c154/8455567/3a3b85457b04/41598_2021_98155_Fig1_HTML.jpg

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