Jindal H K, Yong C B, Wilson G M, Tam P, Astell C R
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, Canada.
J Biol Chem. 1994 Feb 4;269(5):3283-9.
The NS-1 protein of minute virus of mice (MVM) is required for viral DNA replication and transcriptional regulation. To define the domain structure of NS-1, we have generated point mutations in its putative NTP-binding/ATPase domain. We show that all mutants were unable to support replication of MVM DNA in a transient DNA replication assay. Furthermore, all mutants, except for the K405S substitution, were able to transactivate the P38 promoter in transient transfection experiments. NS-1 proteins bearing COOH-terminal deletions of 29 and 33 amino acid residues were also transcriptionally inert. Biochemical analysis of recombinant NS-1 expressed in insect cells shows that mutations in the putative NTP-binding/ATPase domain severely reduced helicase activity in vitro. However, affinity labeling experiments indicate that none of these mutations, except for K469T, impaired NTP-binding activity. Finally, all point mutants retained significant levels of ATPase activity, except for the E444Q mutant (1%). These findings suggest that the replication and transcription activities of NS-1 reside in separate functional domains. In addition, NS-1 proteins with mutations in the putative nucleotide binding fold have lost helicase activity, whereas most retain nucleotide binding and ATPase functions, suggesting that the mutations have uncoupled the ATPase and helicase activities.
小鼠微小病毒(MVM)的NS-1蛋白是病毒DNA复制和转录调控所必需的。为了确定NS-1的结构域结构,我们在其假定的NTP结合/ATP酶结构域中产生了点突变。我们发现,在瞬时DNA复制试验中,所有突变体均无法支持MVM DNA的复制。此外,除K405S替代突变体外,所有突变体在瞬时转染实验中均能够反式激活P38启动子。携带29和33个氨基酸残基COOH末端缺失的NS-1蛋白在转录方面也无活性。对昆虫细胞中表达的重组NS-1进行生化分析表明,假定的NTP结合/ATP酶结构域中的突变在体外严重降低了解旋酶活性。然而,亲和标记实验表明,除K469T外,这些突变均未损害NTP结合活性。最后,除E444Q突变体(1%)外,所有点突变体均保留了显著水平的ATP酶活性。这些发现表明,NS-1的复制和转录活性存在于不同的功能结构域中。此外,假定的核苷酸结合折叠区发生突变的NS-1蛋白失去了解旋酶活性,而大多数仍保留核苷酸结合和ATP酶功能,这表明这些突变使ATP酶和解旋酶活性解偶联。