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首页> 外文期刊>Nucleic Acids Research >DNA polymerase III chi subunit ties single-stranded DNA binding protein to the bacterial replication machinery
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DNA polymerase III chi subunit ties single-stranded DNA binding protein to the bacterial replication machinery

机译:DNA聚合酶III chi亚基将单链DNA结合蛋白与细菌复制机制结合

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Single-stranded DNA binding (SSB) protein binds to single-stranded DNA (ssDNA) at the lagging strand of the replication fork in Escherichia coli cells. This protein is essential for the survival of the E.coli cell, presumably because it shields the ssDNA and holds it in a suitable conformation for replication by DNA polymerase III. In this study we undertook a biophysical analysis of the interaction between the SSB protein of E.coli and the chi subunit of DNA polymerase III. Using analytical ultracentrifugation we show that at low salt concentrations there is an increase in the stability in the physical interaction between chi and an EcoSSB/ssDNA complex when compared to that of chi to EcoSSB alone. This increase in stability disappeared in high salt conditions. The sedimentation of an EcoSSB protein lacking its C-terminal 26 amino acids remains unchanged in the presence of chi, showing that chi interacts specifically with the C-terminus of EcoSSB. In DNA melting experiments we demonstrate that chi specifically enhances the ssDNA stabilization by EcoSSB. Thus, the binding of EcoSSB to chi at the replication fork prevents premature dissociation of EcoSSB from the lagging strand and thereby enhances the processivity of DNA polymerase III.
机译:在大肠杆菌细胞中,单链DNA结合(SSB)蛋白在复制叉的滞后链上与单链DNA(ssDNA)结合。该蛋白对于大肠杆菌细胞的生存至关重要,大概是因为它屏蔽了ssDNA并将其保持在合适的构象中,可以被DNA聚合酶III复制。在这项研究中,我们对大肠杆菌的SSB蛋白与DNA聚合酶III的chi亚基之间的相互作用进行了生物物理分析。通过分析超速离心,我们表明,与单独使用chi-EcoSSB相比,在低盐浓度下chi和EcoSSB / ssDNA复合物之间的物理相互作用的稳定性增加。在高盐条件下,稳定性的增加消失了。缺少C末端26个氨基酸的EcoSSB蛋白的沉淀在chi的存在下保持不变,表明chi与EcoSSB的C末端特异性相互作用。在DNA融合实验中,我们证明了chi通过EcoSSB特异性增强了ssDNA的稳定性。因此,在复制叉处EcoSSB与chi的结合防止了EcoSSB从落后链过早解离,从而增强了DNA聚合酶III的合成能力。

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