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痘病毒Zα结构域的DNA结合活性表征以及β翼区在将B-DNA转化为Z-DNA中的重要性。

Characterization of DNA-binding activity of Z alpha domains from poxviruses and the importance of the beta-wing regions in converting B-DNA to Z-DNA.

作者信息

Quyen Dong Van, Ha Sung Chul, Lowenhaupt Ky, Rich Alexander, Kim Kyeong Kyu, Kim Yang-Gyun

机构信息

Department of Molecular Cell Biology, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon 440-746, Korea.

出版信息

Nucleic Acids Res. 2007;35(22):7714-20. doi: 10.1093/nar/gkm748. Epub 2007 Nov 5.

Abstract

The E3L gene is essential for pathogenesis in vaccinia virus. The E3L gene product consists of an N-terminal Z alpha domain and a C-terminal double-stranded RNA (dsRNA) binding domain; the left-handed Z-DNA-binding activity of the Z alpha domain of E3L is required for viral pathogenicity in mice. E3L is highly conserved among poxviruses, including the smallpox virus, and it is likely that the orthologous Z alpha domains play similar roles. To better understand the biological function of E3L proteins, we have investigated the Z-DNA-binding behavior of five representative Z alpha domains from poxviruses. Using surface plasmon resonance (SPR), we have demonstrated that these viral Z alpha domains bind Z-DNA tightly. Ability of Z alpha(E3L) converting B-DNA to Z-DNA was measured by circular dichroism (CD). The extents to which these Z alphas can stabilize Z-DNA vary considerably. Mutational studies demonstrate that residues in the loop of the beta-wing play an important role in this stabilization. Notably the Z alpha domain of vaccinia E3L acquires ability to convert B-DNA to Z-DNA by mutating amino acid residues in this region. Differences in the host cells of the various poxviruses may require different abilities to stabilize Z-DNA; this may be reflected in the observed differences in behavior in these Zalpha proteins.

摘要

E3L基因对于痘苗病毒的致病机制至关重要。E3L基因产物由一个N端Zα结构域和一个C端双链RNA(dsRNA)结合结构域组成;E3L的Zα结构域的左手性Z-DNA结合活性对于小鼠体内的病毒致病性是必需的。E3L在包括天花病毒在内的痘病毒中高度保守,并且直系同源的Zα结构域可能发挥相似的作用。为了更好地理解E3L蛋白的生物学功能,我们研究了来自痘病毒的五个代表性Zα结构域的Z-DNA结合行为。使用表面等离子体共振(SPR),我们证明了这些病毒Zα结构域与Z-DNA紧密结合。通过圆二色性(CD)测量Zα(E3L)将B-DNA转化为Z-DNA的能力。这些Zα结构域稳定Z-DNA的程度差异很大。突变研究表明,β-翼环中的残基在这种稳定作用中起重要作用。值得注意的是,痘苗病毒E3L的Zα结构域通过突变该区域的氨基酸残基获得了将B-DNA转化为Z-DNA的能力。各种痘病毒宿主细胞的差异可能需要不同的稳定Z-DNA的能力;这可能反映在这些Zα蛋白观察到的行为差异中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f95/2190711/94de4549bf36/gkm748f1.jpg

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