Borowski P, Niebuhr A, Mueller O, Bretner M, Felczak K, Kulikowski T, Schmitz H
Abteilung für Virologie, Bernhard-Nocht-Institut für Tropenmedizin, D-20359 Hamburg, Germany.
J Virol. 2001 Apr;75(7):3220-9. doi: 10.1128/JVI.75.7.3220-3229.2001.
The nucleoside triphosphatase (NTPase)/helicase associated with nonstructural protein 3 of West Nile (WN) virus was purified from cell culture medium harvested from virus-infected Vero cells. The purification procedure included sequential chromatography on Superdex-200 and Reactive Red 120 columns, followed by a concentration step on an Ultrogel hydroxyapatite column. The nature of the purified protein was confirmed by immunoblot analysis using a WN virus-positive antiserum, determination of its NH(2) terminus by microsequencing, and a binding assay with 5'-[(14)C]fluorosulfonylbenzoyladenosine. Under optimized reaction conditions the enzyme catalyzed the hydrolysis of ATP and the unwinding of the DNA duplex with k(cat) values of 133 and 5.5 x 10(-3) s(-1), respectively. Characterization of the NTPase activity of the WN virus enzyme revealed that optimum conditions with respect to the Mg(2+) requirement and the monovalent salt or polynucleotide response differed from those of other flavivirus NTPases. Initial kinetic studies demonstrated that the inhibition (or activation) of ATPase activity by ribavirin-5'-triphosphate is not directly related to changes in the helicase activity of the enzyme. Further analysis using guanine and O(6)-benzoylguanine derivatives revealed that the ATPase activity of WN virus NTPase/helicase may be modulated, i.e., increased or reduced, with no effect on the helicase activity of the enzyme. On the other hand the helicase activity could be modulated without changing the ATPase activity. Our observations show that the number of ATP hydrolysis events per unwinding cycle is not a constant value.
从感染西尼罗河(WN)病毒的Vero细胞收获的细胞培养基中纯化了与WN病毒非结构蛋白3相关的核苷三磷酸酶(NTPase)/解旋酶。纯化过程包括在Superdex - 200和活性红120柱上进行连续色谱,随后在Ultrogel羟基磷灰石柱上进行浓缩步骤。使用WN病毒阳性抗血清通过免疫印迹分析、通过微量测序确定其NH2末端以及与5'-[(14)C]氟磺酰苯甲酰腺苷的结合试验来确认纯化蛋白的性质。在优化的反应条件下,该酶催化ATP的水解和DNA双链的解旋,催化常数(k(cat))值分别为133和5.5×10(-3)s(-1)。WN病毒酶的NTPase活性表征表明,在Mg(2+)需求以及单价盐或多核苷酸反应方面的最佳条件与其他黄病毒NTPases不同。初步动力学研究表明,利巴韦林-5'-三磷酸对ATPase活性的抑制(或激活)与该酶解旋酶活性的变化没有直接关系。使用鸟嘌呤和O(6)-苯甲酰鸟嘌呤衍生物的进一步分析表明,WN病毒NTPase/解旋酶的ATPase活性可能被调节,即增加或降低,而对该酶的解旋酶活性没有影响。另一方面,解旋酶活性可以在不改变ATPase活性的情况下被调节。我们的观察结果表明,每个解旋循环中ATP水解事件的数量不是一个恒定值。