All herpesviruses encode a conserved DNA polymerase that is required for viral genome replication and serves as an important therapeutic target. Currently available herpesvirus therapies include nucleoside and non-nucleoside inhibitors (NNI) that target the DNA-bound state of herpesvirus polymerase and block replication. Here we report the ternary complex crystal structure of Herpes Simplex Virus 1 DNA polymerase bound to DNA and a 4-oxo-dihydroquinoline NNI, PNU-183792 (PNU), at 3.5âà resolution. PNU bound at the polymerase active site, displacing the template strand and inducing a conformational shift of the fingers domain into an open state. These results demonstrate that PNU inhibits replication by blocking association of dNTP and stalling the enzyme in a catalytically incompetent conformation, ultimately acting as a nucleotide competing inhibitor (NCI). Sequence conservation of the NCI binding pocket further explains broad-spectrum activity while a direct interaction between PNU and residue V823 rationalizes why mutations at this position result in loss of inhibition.
Structural understanding of non-nucleoside inhibition in an elongating herpesvirus polymerase.
对延伸疱疹病毒聚合酶中非核苷类抑制剂的结构理解
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作者:Hayes Robert P, Heo Mee Ra, Mason Mark, Reid John, Burlein Christine, Armacost Kira A, Tellers David M, Raheem Izzat, Shaw Anthony W, Murray Edward, McKenna Philip M, Abeywickrema Pravien, Sharma Sujata, Soisson Stephen M, Klein Daniel
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 May 24; 12(1):3040 |
| doi: | 10.1038/s41467-021-23312-8 | 研究方向: | 信号转导 |
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