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在单链核酸上移位的聚合酶内的结构域水平摇摆运动。

Domain-level rocking motion within a polymerase that translocates on single-stranded nucleic acid.

作者信息

Li Huiyung, Li Changzheng, Zhou Sufeng, Poulos Thomas L, Gershon Paul David

机构信息

Department of Molecular Biology and Biochemistry, Xinxiang Medical University, Xinxiang, Henan 453003, People's Republic of China.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Apr;69(Pt 4):617-24. doi: 10.1107/S0907444913000346. Epub 2013 Mar 14.

Abstract

Vaccinia virus poly(A) polymerase (VP55) is the only known polymerase that can translocate independently with respect to single-stranded nucleic acid (ssNA). Previously, its structure has only been solved in the context of the VP39 processivity factor. Here, a crystal structure of unliganded monomeric VP55 has been solved to 2.86 Å resolution, showing the first backbone structural isoforms among either VP55 or its processivity factor (VP39). Backbone differences between the two molecules of VP55 in the asymmetric unit indicated that unliganded monomeric VP55 can undergo a rocking' motion of the N-terminal domain with respect to the other two domains, which may be rigidified' upon VP39 docking. This observation is consistent with previously demonstrated experimental molecular dynamics of the monomer during translocation with respect to nucleic acid and with different mechanisms of translocation in the presence and absence of processivity factor VP39. Side-chain conformational changes in the absence of ligand were observed at a key primer contact site and at the catalytic center of VP55. The current structure completes the trio of possible structural forms for VP55 and VP39, namely the VP39 monomer, the VP39-VP55 heterodimer and the VP55 monomer.

摘要

痘苗病毒多聚腺苷酸聚合酶(VP55)是唯一已知的能够相对于单链核酸(ssNA)独立移位的聚合酶。此前,其结构仅在VP39持续性因子的背景下得到解析。在此,未结合配体的单体VP55的晶体结构已解析至2.86 Å分辨率,显示出VP55或其持续性因子(VP39)中首次出现的主链结构异构体。不对称单元中VP55的两个分子之间的主链差异表明,未结合配体的单体VP55的N端结构域相对于其他两个结构域可发生“摇摆”运动,这种运动在VP39对接时可能会“僵化”。这一观察结果与先前证明的单体在相对于核酸移位过程中的实验分子动力学以及在存在和不存在持续性因子VP39时不同的移位机制一致。在VP55的一个关键引物接触位点和催化中心观察到了在没有配体时侧链构象的变化。当前的结构完善了VP55和VP39可能的三种结构形式,即VP39单体、VP39-VP55异二聚体和VP55单体。

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