Shaban Nadine M, Shi Ke, Li Ming, Aihara Hideki, Harris Reuben S
Department of Biochemistry, Molecular Biology, and Biophysics, Masonic Cancer Center, Institute for Molecular Virology, University of Minnesota, Minneapolis, MN 55455, USA.
Department of Biochemistry, Molecular Biology, and Biophysics, Masonic Cancer Center, Institute for Molecular Virology, University of Minnesota, Minneapolis, MN 55455, USA.
J Mol Biol. 2016 Jun 5;428(11):2307-2316. doi: 10.1016/j.jmb.2016.04.026. Epub 2016 Apr 30.
The APOBEC3 family of DNA cytosine deaminases is capable of restricting the replication of HIV-1 and other pathogens. Here, we report a 1.92 Å resolution crystal structure of the Vif-binding and catalytic domain of APOBEC3F (A3F). This structure is distinct from the previously published APOBEC and phylogenetically related deaminase structures, as it is the first without zinc in the active site. We determined an additional structure containing zinc in the same crystal form that allows direct comparison with the zinc-free structure. In the absence of zinc, the conserved active site residues that normally participate in zinc coordination show unique conformations, including a 90 degree rotation of His249 and disulfide bond formation between Cys280 and Cys283. We found that zinc coordination is influenced by pH, and treating the protein at low pH in crystallization buffer is sufficient to remove zinc. Zinc coordination and catalytic activity are reconstituted with the addition of zinc only in a reduced environment likely due to the two active site cysteines readily forming a disulfide bond when not coordinating zinc. We show that the enzyme is active in the presence of zinc and cobalt but not with other divalent metals. These results unexpectedly demonstrate that zinc is not required for the structural integrity of A3F and suggest that metal coordination may be a strategy for regulating the activity of A3F and related deaminases.
载脂蛋白B mRNA编辑酶催化多肽样3(APOBEC3)家族的DNA胞嘧啶脱氨酶能够限制HIV-1和其他病原体的复制。在此,我们报道了APOBEC3F(A3F)的Vif结合和催化结构域的晶体结构,分辨率为1.92Å。该结构与先前发表的APOBEC及系统发育相关的脱氨酶结构不同,因为它是第一个活性位点不含锌的结构。我们确定了同一晶体形式中含锌的另一种结构,以便与无锌结构进行直接比较。在没有锌的情况下,通常参与锌配位的保守活性位点残基呈现出独特的构象,包括His249旋转90度以及Cys280和Cys283之间形成二硫键。我们发现锌配位受pH影响,在结晶缓冲液中用低pH处理蛋白质足以去除锌。仅在还原环境中添加锌才能恢复锌配位和催化活性,这可能是因为两个活性位点半胱氨酸在不配位锌时容易形成二硫键。我们表明该酶在锌和钴存在下具有活性,但在其他二价金属存在下则无活性。这些结果出乎意料地表明锌对于A3F的结构完整性并非必需,并提示金属配位可能是调节A3F及相关脱氨酶活性的一种策略。