Bressanin Daniela, Stefan Alessandra, Piaz Fabrizio Dal, Cianchetta Stefano, Reggiani Luca, Hochkoeppler Alejandro
Department of Industrial Chemistry, University of Bologna, Viale Risorgimento 4, 40136 Bologna, Italy.
Biochim Biophys Acta. 2009 Nov;1794(11):1606-15. doi: 10.1016/j.bbapap.2009.07.011. Epub 2009 Jul 25.
The C-terminal region of the proofreading subunit (epsilon) of Escherichia coli DNA polymerase III is shown here to be labile and to contain the residues (identified between F187 and R213) responsible for association with the polymerase subunit (alpha). We also identify two alpha-helices of the polymerase subunit (comprising the residues E311-M335 and G339-D353, respectively) as the determinants of binding to epsilon. The C-terminal region of epsilon is degraded by the ClpP protease assisted by the GroL molecular chaperone, while other factors control the overall concentration in vivo of epsilon. Among these factors, the chaperone DnaK is of primary importance for preserving the integrity of epsilon. Remarkably, inactivation of DnaK confers to Escherichia coli inviable phenotype at 42 degrees C, and viability can be restored over-expressing epsilon. Altogether, our observations indicate that the association between epsilon and alpha subunits of DNA polymerase III depends on small portions of both proteins, the association of which is controlled by proteolysis of epsilon. Accordingly, the factors catalysing (ClpP, GroL) or preventing (DnaK) this proteolysis exert a crucial checkpoint of the assembly of Escherichia coli DNA polymerase III core.
此处显示,大肠杆菌DNA聚合酶III校对亚基(ε)的C末端区域不稳定,且包含负责与聚合酶亚基(α)结合的残基(在F187和R213之间鉴定出)。我们还确定了聚合酶亚基的两个α螺旋(分别由残基E311 - M335和G339 - D353组成)作为与ε结合的决定因素。ε的C末端区域在GroL分子伴侣的协助下被ClpP蛋白酶降解,而其他因素控制着ε在体内的总体浓度。在这些因素中,伴侣蛋白DnaK对于维持ε的完整性至关重要。值得注意的是,DnaK失活会使大肠杆菌在42摄氏度时表现出不可存活的表型,而过表达ε可以恢复其活力。总之,我们的观察结果表明,DNA聚合酶III的ε亚基和α亚基之间的结合取决于这两种蛋白质的小部分区域,其中ε的蛋白水解作用控制着这种结合。因此,催化(ClpP、GroL)或阻止(DnaK)这种蛋白水解作用的因素对大肠杆菌DNA聚合酶III核心组装起到了关键的检查点作用。