Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.
PLoS One. 2013;8(2):e55978. doi: 10.1371/journal.pone.0055978. Epub 2013 Feb 7.
Domain swapping is an interesting feature of some oligomeric proteins in which each protomer of the oligomer provides an identical surface for exclusive interaction with a segment or domain belonging to another protomer. Here we report results of mutagenesis experiments on the structure of C-terminal helix swapped dimer of a stationary phase survival protein from Salmonella typhimurium (StSurE). Wild type StSurE is a dimer in which a large helical segment at the C-terminus and a tetramerization loop comprising two β strands are swapped between the protomers. Key residues in StSurE that might promote C-terminal helix swapping were identified by sequence and structural comparisons. Three mutants in which the helix swapping is likely to be avoided were constructed and expressed in E. coli. Three-dimensional X-ray crystal structures of the mutants H234A and D230A/H234A could be determined at 2.1 Å and 2.35 Å resolutions, respectively. Contrary to expectations, helix swapping was mostly retained in both the mutants. The loss of the crucial D230 OD2- H234 NE2 hydrogen bond (2.89 Å in the wild type structure) in the hinge region was compensated by new inter and intra-chain interactions. However, the two fold molecular symmetry was lost and there were large conformational changes throughout the polypeptide. In spite of these changes, the dimeric structure and an approximate tetrameric organization were retained, probably due to the interactions involving the tetramerization loop. Mutants were mostly functionally inactive, highlighting the importance of precise inter-subunit interactions for the symmetry and function of StSurE.
结构域交换是一些寡聚蛋白的一个有趣特征,其中寡聚体的每个单体提供相同的表面,用于与另一个单体所属的片段或结构域进行独特的相互作用。本文报道了对鼠伤寒沙门氏菌(StSurE)稳定期存活蛋白 C 末端螺旋交换二聚体结构的突变实验结果。野生型 StSurE 是一个二聚体,其中 C 末端的一个大螺旋片段和由两个β链组成的四聚化环在单体之间交换。通过序列和结构比较确定了可能促进 C 末端螺旋交换的 StSurE 关键残基。构建了三个可能避免螺旋交换的突变体,并在大肠杆菌中表达。突变体 H234A 和 D230A/H234A 的三维 X 射线晶体结构可以分别在 2.1Å 和 2.35Å 的分辨率下确定。与预期相反,两个突变体中大多数都保留了螺旋交换。在铰链区域,关键残基 D230 OD2- H234 NE2 氢键(野生型结构中为 2.89Å)的丢失被新的链间和链内相互作用所补偿。然而,二倍体分子对称性丧失,整个多肽发生了较大的构象变化。尽管发生了这些变化,但仍保留了二聚体结构和近似的四聚体组织,这可能是由于涉及四聚化环的相互作用。突变体大多失去了功能,突出了精确的亚基间相互作用对于 StSurE 的对称性和功能的重要性。