Lin Fong-Yuan, Chan Kun-Wei, Wang Chi-Young, Wong Min-Liang, Hsu Wei-Li
Department of Veterinary Medicine, National Chung Hsing University, Taichung 402, Taiwan.
Protein Expr Purif. 2011 Oct;79(2):210-6. doi: 10.1016/j.pep.2011.04.010. Epub 2011 Apr 23.
Our previous study showed that the recombinant ATPase encoded by the A32L gene of orf virus displayed ATP hydrolysis activity as predicted from its amino acids sequence. This viral ATPase contains four known functional motifs (motifs I-IV) and a novel AYDG motif; they are essential for ATP hydrolysis reaction by binding ATP and magnesium ions. The motifs I and II correspond with the Walker A and B motifs of the typical ATPase, respectively. To examine the biochemical roles of these five conserved motifs, recombinant ATPases of five deletion mutants derived from the Taiping strain were expressed and purified. Their ATPase functions were assayed and compared with those of two wild type strains, Taiping and Nantou isolated in Taiwan. Our results showed that deletions at motifs I-III or IV exhibited lower activity than that of the wild type. Interestingly, deletion of AYDG motif decreased the ATPase activity more significantly than those of motifs I-IV deletions. Divalent ions such as magnesium and calcium were essential for ATPase activity. Moreover, our recombinant proteins of orf virus also demonstrated GTPase activity, though weaker than the original ATPase activity.
我们之前的研究表明,口疮病毒A32L基因编码的重组ATP酶表现出如根据其氨基酸序列预测的ATP水解活性。这种病毒ATP酶包含四个已知的功能基序(基序I-IV)和一个新的AYDG基序;它们通过结合ATP和镁离子对ATP水解反应至关重要。基序I和II分别对应于典型ATP酶的沃克A和B基序。为了研究这五个保守基序的生化作用,表达并纯化了源自太平株的五个缺失突变体的重组ATP酶。测定了它们的ATP酶功能,并与在台湾分离的两个野生型菌株太平株和南投株进行了比较。我们的结果表明,基序I-III或IV的缺失表现出比野生型更低的活性。有趣的是,AYDG基序的缺失比基序I-IV的缺失更显著地降低了ATP酶活性。二价离子如镁和钙对ATP酶活性至关重要。此外,我们的口疮病毒重组蛋白也表现出GTP酶活性,尽管比原来的ATP酶活性弱。