Institut de Biologie Structurale, Université Grenoble Alpes Grenoble, France ; CEA, DSV, Institut de Biologie Structurale Grenoble, France ; Institut de Biologie Structurale, Centre National de la Recherche Scientifique Grenoble, France.
Front Microbiol. 2014 Feb 21;5:66. doi: 10.3389/fmicb.2014.00066. eCollection 2014.
Protein-solvent interactions govern the behaviors of proteins isolated from extreme halophiles. In this work, we compared the solvent envelopes of two orthologous tetrameric malate dehydrogenases (MalDHs) from halophilic and non-halophilic bacteria. The crystal structure of the MalDH from the non-halophilic bacterium Chloroflexus aurantiacus (Ca MalDH) solved, de novo, at 1.7 Å resolution exhibits numerous water molecules in its solvation shell. We observed that a large number of these water molecules are arranged in pentagonal polygons in the first hydration shell of Ca MalDH. Some of them are clustered in large networks, which cover non-polar amino acid surface. The crystal structure of MalDH from the extreme halophilic bacterium Salinibacter ruber (Sr) solved at 1.55 Å resolution shows that its surface is strongly enriched in acidic amino acids. The structural comparison of these two models is the first direct observation of the relative impact of acidic surface enrichment on the water structure organization between a halophilic protein and its non-adapted counterpart. The data show that surface acidic amino acids disrupt pentagonal water networks in the hydration shell. These crystallographic observations are discussed with respect to halophilic protein behaviors in solution.
蛋白质-溶剂相互作用控制从极端嗜盐菌中分离的蛋白质的行为。在这项工作中,我们比较了两种来自嗜盐菌和非嗜盐菌的同源四聚体苹果酸脱氢酶(MalDH)的溶剂包络。嗜盐菌盐红硫菌(Salinibacter ruber)的 MalDH 晶体结构以 1.55Å 的分辨率解决,de novo,其溶剂包络中存在大量水分子。我们观察到,大量的这些水分子在 Ca MalDH 的第一水合壳中排列成五边形多边形。其中一些聚集在大网络中,覆盖非极性氨基酸表面。非嗜盐菌黄杆菌(Chloroflexus aurantiacus)的 MalDH 晶体结构以 1.7Å 的分辨率解决,表明其表面强烈富含酸性氨基酸。这两个模型的结构比较是首次直接观察到酸性表面富集对嗜盐蛋白与其非适应对应物之间水结构组织的相对影响。数据表明,表面酸性氨基酸破坏了水合壳中五边形水网络。这些晶体学观察结果与溶液中嗜盐蛋白的行为有关。