首页> 美国卫生研究院文献>The EMBO Journal >The Tn7 transposase is a heteromeric complex in which DNA breakage and joining activities are distributed between different gene products.
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The Tn7 transposase is a heteromeric complex in which DNA breakage and joining activities are distributed between different gene products.

机译:Tn7转座酶是一种异源复合物其中DNA断裂和连接活性分布在不同的基因产物之间。

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摘要

The bacterial transposon Tn7 translocates by a cut and paste mechanism: excision from the donor site results from double-strand breaks at each end of Tn7 and target insertion results from joining of the exposed 3' Tn7 tips to the target DNA. Through site-directed mutagenesis of the Tn7-encoded transposition proteins TnsA and TnsB, we demonstrate that the Tn7 transposase is a heteromeric complex of these proteins, each protein executing different DNA processing reactions. TnsA mediates DNA cleavage reactions at the 5' ends of Tn7, and TnsB mediates DNA breakage and joining reactions at the 3' ends of Tn7. Thus the double-strand breaks that underlie Tn7 excision result from a collaboration between two active sites, one in TnsA and one in TnsB; the same (or a closely related) active site in TnsB also mediates the subsequent joining of the 3' ends to the target. Both TnsA and TnsB appear to be members of the retroviral integrase superfamily: mutation of their putative DD(35)E motifs blocks catalytic activity. Recombinases of this class require a divalent metal cofactor that is thought to interact with these acidic residues. Through analysis of the metal ion specificity of a TnsA mutant containing a sulfur (cysteine) substitution, we provide evidence that a divalent metal actually interacts with these acidic amino acids.
机译:细菌转座子Tn7通过剪切和粘贴机制移位:从供体位点切除是由于Tn7两端的双链断裂,而靶标插入是由于暴露的3'Tn7末端与靶DNA结合而产生的。通过定点诱变的Tn7编码的转座蛋白TnsA和TnsB,我们证明Tn7转座酶是这些蛋白的异聚复合物,每个蛋白执行不同的DNA加工反应。 TnsA介导Tn7的5'末端的DNA裂解反应,而TnsB介导Tn7的3'末端的DNA断裂和连接反应。因此,作为Tn7切除基础的双链断裂是由两个活性位点(一个在TnsA中,一个在TnsB中)之间的协同作用引起的。 TnsB中相同(或密切相关)的活性位点也介导了3'末端与靶标的后续连接。 TnsA和TnsB似乎都是逆转录病毒整合酶超家族的成员:推定的DD(35)E图案的突变会阻止催化活性。这类重组酶需要一种二价金属辅因子,该因子被认为与这些酸性残基相互作用。通过分析包含硫(半胱氨酸)取代的TnsA突变体的金属离子特异性,我们提供了二价金属实际上与这些酸性氨基酸相互作用的证据。

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