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首页> 外文期刊>Biochemistry >Mutation of Tn5 Transposase beta-Loop Residues Affects All Steps of Tn5 Transposition:The Role of Conformational Changes in Tn5 Transposition
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Mutation of Tn5 Transposase beta-Loop Residues Affects All Steps of Tn5 Transposition:The Role of Conformational Changes in Tn5 Transposition

机译:Tn5转座酶β环状残基的突变影响Tn5转座的所有步骤:构象变化在Tn5转座中的作用

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摘要

X-ray cocrystal structures of Tn5 transposase (Tnp) bound to its 19 base pair (bp) recognition end sequence (ES) reveal contacts between a beta-loop (amino acids 240-260) and positions 3,4,5,and 6 of the ES.Here,we show that mutations of residues in this loop affect both in vivo and in vitro transposition.Most mutations are detrimental,whereas some mutations at position 242 cause hyperactivity.More specifically,mutations to the beta-loop affect every individual step of transposition tested.Mutants performing in vivo and in vitro transposition less efficiently also form fewer synaptic complexes,whereas hyperactive Tnps form more synaptic complexes.Surprisingly,two hypoactive mutations,K244R and R253L,also affect the cleavage steps of transposition with a much more dramatic effect on the second double end break (DEB) complex formation step,indicating that the beta-loop likely plays an important roll in positioning the substrate DNA within the catalytic site.Finally,all mutants tested decrease efficiency of the final transposition step,strand transfer.A disparity in cleavage rate constants in vitro for mutants with changes to the proline at position 242 on transposons flanked by ESs differing in the orientation of the A-T base pair at position 4 allows us to postulate that P242 contacts the position 4 nucleotide pair.On the basis of these data,we propose a sequential model for end cleavage in Tn5 transposition in which the uncleaved PEC is not symmetrical,and conformational changes are necessary between the first and second cleavage events and also for the final strand transfer step of transposition.
机译:结合到其19个碱基对(bp)识别末端序列(ES)的Tn5转座酶(Tnp)的X射线共晶体结构揭示了β环(氨基酸240-260)与位置3、4、5和6之间的接触在这里,我们显示此环中残基的突变会影响体内和体外转座。大多数突变是有害的,而第242位的某些突变会引起机能亢进。更具体地说,β环的突变会影响每个人。体内和体外转座效率较低的突变体还形成了较少的突触复合物,而高活性的Tnps形成了更多的突触复合体。令人惊讶的是,两个低活性突变,K244R和R253L,也大大影响了转座的裂解步骤。对第二个双末端断裂(DEB)复合物形成步骤产生了显着影响,表明β环可能在将底物DNA定位在催化位点中起重要作用。最后的转座步骤的效率提高,链转移。转座子上第242位脯氨酸的脯氨酸的变化与ESs侧翼的AT碱基对的方向不同的突变体在体外裂解速率常数方面的差异使我们推测在这些数据的基础上,我们提出了Tn5转座末端切割的顺序模型,其中未切割的PEC不对称,并且在第一次和第二次切割事件之间还需要构象变化,并且用于转座的最后一个链转移步骤。

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