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首页> 外文期刊>Nucleic Acids Research >The zinc ion in the HNH motif of the endonuclease domain of colicin E7 is not required for DNA binding but is essential for DNA hydrolysis
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The zinc ion in the HNH motif of the endonuclease domain of colicin E7 is not required for DNA binding but is essential for DNA hydrolysis

机译:大肠菌素E7的核酸内切酶结构域的HNH基序中的锌离子不是DNA结合所必需的,但对于DNA水解是必不可少的

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摘要

The HNH motif was originally identified in the subfamily of HNH homing endonucleases, which initiate the process of the insertion of mobile genetic elements into specific sites. Several bacteria toxins, including colicin E7 (ColE7), also contain the 30 amino acid HNH motif in their nuclease domains. In this work, we found that the nuclease domain of ColE7 (nuclease-ColE7) purified from Escherichia coli contains a one-to-one stoichiometry of zinc ion and that this zinc-containing enzyme hydrolyzes DNA without externally added divalent metal ions. The apo-enzyme, in which the indigenous zinc ion was removed from nuclease-ColE7, had no DNase activity. Several divalent metal ions, including Ni~(2+), Mg~(2+), Co~(2+), Mn~(2+), Ca~(2+), Sr~(2+), Cu~(2+) and Zn~(2+), re-activated the DNase activity of the apo-enzyme to various degrees, however higher concentrations of zinc ion inhibited this DNase activity. Two charged residues located at positions close to the inc-binding site were mutated to alanine. The single-site mutant, R538A and E542A, showed reduced DNase activity, whereas the double-point mutant, R538A + E542A, had no observable DNase activity. A gel retardation assay further demonstrated that the nuclease-ColE7 hydrolyzed DNA in the presence of zinc ions, but only bound to DNA in the absence of zinc ions. These results demonstrate that the zinc ion in the HNH motif of nuclease-ColE7 is not required for DNA binding, but is essential for DNA hydrolysis, suggesting that the zinc ion not only stabilizes the folding of the enzyme, but is also likely to be involved in DNA dydrolysis.
机译:HNH基序最初是在HNH归巢内切核酸酶亚家族中鉴定的,该亚家族启动了将移动遗传元件插入特定位点的过程。几种细菌毒素,包括大肠菌素E7(ColE7),在其核酸酶结构域中也包含30个氨基酸的HNH基序。在这项工作中,我们发现从大肠杆菌纯化的ColE7的核酸酶结构域(核酸酶-ColE7)包含一对一的锌离子化学计量,并且这种含锌的酶水解DNA时无需外部添加二价金属离子。从核酸酶-ColE7中去除了原生锌离子的脱辅酶没有DNase活性。几种二价金属离子,包括Ni〜(2 +),Mg〜(2 +),Co〜(2 +),Mn〜(2 +),Ca〜(2 +),Sr〜(2 +),Cu〜 (2+)和Zn〜(2+)在不同程度上重新激活脱辅酶的DNase活性,但是较高的锌离子浓度会抑制该DNase活性。位于靠近inc-结合位点的位置的两个带电残基突变为丙氨酸。单点突变体R538A和E542A显示出降低的DNase活性,而双点突变体R538A + E542A没有观察到的DNase活性。凝胶阻滞分析进一步证明,核酸酶-ColE7在存在锌离子的情况下水解了DNA,但仅在不存在锌离子的情况下与DNA结合。这些结果表明,核酸酶-ColE7的HNH基序中的锌离子不是DNA结合所必需的,而是DNA水解所必需的,这表明锌离子不仅稳定了酶的折叠,而且还可能参与其中。在DNA水解中。

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