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Site-directed mutagenesis of the χ subunit of DNA polymerase III and single-stranded DNA-binding protein of E. coli reveals key residues for their interaction

机译:DNA聚合酶III的χ亚基和大肠杆菌单链DNA结合蛋白的定点诱变揭示了它们相互作用的关键残基

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摘要

During DNA replication in Escherichia coli, single-stranded DNA-binding protein (SSB) protects single-stranded DNA from nuclease action and hairpin formation. It is known that the highly conserved C-terminus of SSB contacts the χ subunit of DNA polymerase III. However, there only exists a theoretical model in which the 11 C-terminal amino acids of SSB have been docked onto the surface of χ. In order to refine this model of SSB/χ interaction, we exchanged amino acids in χ and SSB by site-directed mutagenesis that are predicted to be of key importance. Detailed characterization of the interaction of these mutants by analytical ultracentrifugation shows that the interaction area is correctly predicted by the model; however, the SSB C-terminus binds in a different orientation to the χ surface. We show that evolutionary conserved residues of χ form a hydrophobic pocket to accommodate the ultimate two amino acids of SSB, P176 and F177. This pocket is surrounded by conserved basic residues, important for the SSB/χ interaction. Mass spectrometric analysis of χ protein cross-linked to a C-terminal peptide of SSB reveals that K132 of χ and D172 of SSB are in close contact. The proposed SSB-binding site resembles those described for RecQ and exonuclease I.
机译:在大肠杆菌中复制DNA的过程中,单链DNA结合蛋白(SSB)保护单链DNA免受核酸酶作用和发夹的形成。众所周知,SSB的高度保守的C末端与DNA聚合酶III的χ亚基接触。但是,仅存在一个理论模型,其中SSB的11个C末端氨基酸已对接在χ的表面上。为了完善此SSB /χ相互作用模型,我们通过定点诱变交换了χ和SSB中的氨基酸,这被认为是至关重要的。通过分析超速离心对这些突变体的相互作用进行了详细的表征,结果表明该模型正确预测了相互作用区域。但是,SSB C末端以不同的方向与χ表面结合。我们表明,χ的进化保守残基形成一个疏水口袋,以容纳SSB,P176和F177的最终两个氨基酸。这个口袋被保守的碱性残基包围,这对于SSB /χ相互作用很重要。质谱分析交联到SSB C末端肽的χ蛋白,发现χ的K132和SSB的D172紧密接触。提议的SSB结合位点与RecQ和核酸外切酶I相似。

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