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来自噬菌体RB69的新型二元和三元DNA聚合酶复合物的结构

Structure of New Binary and Ternary DNA Polymerase Complexes From Bacteriophage RB69.

作者信息

Park Jongseo, Youn Hyung-Seop, An Jun Yop, Lee Youngjin, Eom Soo Hyun, Wang Jimin

机构信息

School of Life Sciences, Gwangju Institute of Science and Technology (GIST), Gwangju, South Korea.

Steitz Center for Structural Biology, GIST, Gwangju, South Korea.

出版信息

Front Mol Biosci. 2021 Nov 18;8:704813. doi: 10.3389/fmolb.2021.704813. eCollection 2021.

Abstract

DNA polymerase plays a critical role in passing the genetic information of any living organism to its offspring. DNA polymerase from enterobacteria phage RB69 (RB69pol) has both polymerization and exonuclease activities and has been extensively studied as a model system for B-family DNA polymerases. Many binary and ternary complex structures of RB69pol are known, and they all contain a single polymerase-primer/template (P/T) DNA complex. Here, we report a crystal structure of the exonuclease-deficient RB69pol with the P/T duplex in a dimeric form at a resolution of 2.2 Å. The structure includes one new closed ternary complex with a single divalent metal ion bound and one new open binary complex in the pre-insertion state with a vacant dNTP-binding pocket. These complexes suggest that initial binding of the correct dNTP in the open state is much weaker than expected and that initial binding of the second divalent metal ion in the closed state is also much weaker than measured. Additional conformational changes are required to convert these complexes to high-affinity states. Thus, the measured affinities for the correct incoming dNTP and divalent metal ions are average values from many conformationally distinctive states. Our structure provides new insights into the order of the complex assembly involving two divalent metal ions. The biological relevance of specific interactions observed between one RB69pol and the P/T duplex bound to the second RB69pol observed within this dimeric complex is discussed.

摘要

DNA聚合酶在将任何生物体的遗传信息传递给其后代的过程中起着关键作用。来自肠道杆菌噬菌体RB69的DNA聚合酶(RB69pol)兼具聚合活性和核酸外切酶活性,并且作为B族DNA聚合酶的模型系统已得到广泛研究。已知RB69pol的许多二元和三元复合物结构,它们均包含单个聚合酶-引物/模板(P/T)DNA复合物。在此,我们报道了核酸外切酶缺陷型RB69pol与P/T双链体以二聚体形式存在的晶体结构,分辨率为2.2 Å。该结构包括一个结合了单个二价金属离子的新的封闭三元复合物和一个处于预插入状态且dNTP结合口袋为空的新的开放二元复合物。这些复合物表明,在开放状态下正确dNTP的初始结合比预期弱得多,并且在封闭状态下第二个二价金属离子的初始结合也比测量值弱得多。需要额外的构象变化才能将这些复合物转变为高亲和力状态。因此,测得的对正确进入的dNTP和二价金属离子的亲和力是来自许多构象不同状态的平均值。我们的结构为涉及两个二价金属离子的复合物组装顺序提供了新的见解。讨论了在此二聚体复合物中观察到的一个RB69pol与结合到第二个RB69pol的P/T双链体之间特定相互作用的生物学相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5dd/8639217/a893e0147968/fmolb-08-704813-g001.jpg

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