Afrikanova I, Fabbretti E, Miozzo M C, Burrone O R
International Centre for Genetic Engineering and Biotechnology, Padriciano, Trieste, Italy.
J Gen Virol. 1998 Nov;79 ( Pt 11):2679-86. doi: 10.1099/0022-1317-79-11-2679.
We have previously shown that a number of isoforms of the non-structural rotavirus protein NSP5 are found in virus-infected cells. These isoforms differ in their level of phosphorylation which, at least in part, appears to occur through autophosphorylation. NSP5 co-localizes with another non-structural protein, NSP2, in the viroplasms of infected cells where virus replication takes place. We now show that NSP5 can be chemically cross-linked in living cells with the viral polymerase VP1 and NSP2. Interaction of NSP5 with NSP2 was also demonstrated by co-immunoprecipitation of NSP2 and NSP5 from extracts of UV-treated rotavirus-infected cells. In addition, in transient transfection assays, NSP5 phosphorylation in vivo was enhanced by co-expression of NSP2. An NSP5 C-terminal domain deletion mutant, was completely unable to be phosphorylated either in the presence or absence of NSP2. However, a 33 aa N-terminal deletion mutant of NSP5 was shown to become hyperphosphorylated in vivo and to be insensitive to NSP2 activation, suggesting a regulatory role for this domain in NSP5 phosphorylation and making it a candidate for the interaction with NSP2. These mutants also allow a preliminary mapping of NSP5 autophosphorylation activity.
我们之前已经表明,在病毒感染的细胞中发现了非结构轮状病毒蛋白NSP5的多种异构体。这些异构体的磷酸化水平不同,至少部分磷酸化似乎是通过自磷酸化发生的。NSP5与另一种非结构蛋白NSP2在病毒复制发生的受感染细胞的病毒包涵体中共定位。我们现在表明,NSP5在活细胞中可以与病毒聚合酶VP1和NSP2发生化学交联。通过从紫外线处理的轮状病毒感染细胞提取物中对NSP2和NSP5进行共免疫沉淀,也证明了NSP5与NSP2的相互作用。此外,在瞬时转染试验中,NSP2的共表达增强了NSP5在体内的磷酸化。NSP5 C末端结构域缺失突变体,无论有无NSP2都完全不能被磷酸化。然而,NSP5的一个33个氨基酸的N末端缺失突变体在体内显示出过度磷酸化,并且对NSP2激活不敏感,表明该结构域在NSP5磷酸化中起调节作用,使其成为与NSP2相互作用的候选者。这些突变体也允许对NSP5自磷酸化活性进行初步定位。