Fedorov Roman, Witte Gregor, Urbanke Claus, Manstein Dietmar J, Curth Ute
Institute for Biophysical Chemistry, Hannover Medical Schoo,l Carl-Neuberg-Strasse 1, D-30625 Hannover, Germany.
Nucleic Acids Res. 2006;34(22):6708-17. doi: 10.1093/nar/gkl1002. Epub 2006 Dec 5.
In contrast to the majority of tetrameric SSB proteins, the recently discovered SSB proteins from the Thermus/Deinoccus group form dimers. We solved the crystal structures of the SSB protein from Thermus aquaticus (TaqSSB) and a deletion mutant of the protein and show the structure of their ssDNA binding domains to be similar to the structure of tetrameric SSBs. Two conformations accompanied by proline cis-trans isomerization are observed in the flexible C-terminal region. For the first time, we were able to trace 6 out of 10 amino acids at the C-terminus of an SSB protein. This highly conserved region is essential for interaction with other proteins and we show it to adopt an extended conformation devoid of secondary structure. A model for binding this region to the chi subunit of DNA polymerase III is proposed. It explains at a molecular level the reason for the ssb113 phenotype observed in Escherichia coli.
与大多数四聚体单链结合蛋白(SSB)不同,最近在嗜热栖热菌/嗜热放线菌属中发现的SSB蛋白形成二聚体。我们解析了嗜热水生栖热菌(TaqSSB)的SSB蛋白及其缺失突变体的晶体结构,并表明它们的单链DNA结合结构域的结构与四聚体SSB的结构相似。在柔性C末端区域观察到两种由脯氨酸顺反异构化伴随的构象。我们首次能够追踪到SSB蛋白C末端10个氨基酸中的6个。这个高度保守的区域对于与其他蛋白质的相互作用至关重要,并且我们表明它呈现出没有二级结构的伸展构象。提出了该区域与DNA聚合酶III的χ亚基结合的模型。它在分子水平上解释了在大肠杆菌中观察到的ssb113表型的原因。