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首页> 外文期刊>The FEBS journal >Structural flexibility of the heme cavity in the cold-adapted truncated hemoglobin from the Antarctic marine bacterium Pseudoalteromonashaloplanktis TAC125
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Structural flexibility of the heme cavity in the cold-adapted truncated hemoglobin from the Antarctic marine bacterium Pseudoalteromonashaloplanktis TAC125

机译:南极海洋细菌Pseudoalteromonashaloplanktis TAC125在冷适应的截短血红蛋白中血红素腔的结构柔性

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摘要

Truncated hemoglobins build one of the three branches of the globin protein superfamily. They display a characteristic two-on-two -helical sandwich fold and are clustered into three groups (I, II and III) based on distinct structural features. Truncated hemoglobins are present in eubacteria, cyanobacteria, protozoa and plants. Here we present a structural, spectroscopic and molecular dynamics characterization of a group-II truncated hemoglobin, encoded by the PSHAa0030 gene from Pseudoalteromonashaloplanktis TAC125 (Ph-2/2HbO), a cold-adapted Antarctic marine bacterium hosting one flavohemoglobin and three distinct truncated hemoglobins. The Ph-2/2HbO aquo-met crystal structure (at 2.21 angstrom resolution) shows typical features of group-II truncated hemoglobins, namely the two-on-two -helical sandwich fold, a helix preceding the proximal helix F, and a heme distal-site hydrogen-bonded network that includes water molecules and several distal-site residues, including His(58)CD1. Analysis of Ph-2/2HbO by electron paramagnetic resonance, resonance Raman and electronic absorption spectra, under varied solution conditions, shows that Ph-2/2HbO can access diverse heme ligation states. Among these, detection of a low-spin heme hexa-coordinated species suggests that residue Tyr(42)B10 can undergo large conformational changes in order to act as the sixth heme-Fe ligand. Altogether, the results show that Ph-2/2HbO maintains the general structural features of group-II truncated hemoglobins but displays enhanced conformational flexibility in the proximity of the heme cavity, a property probably related to the functional challenges, such as low temperature, high O-2 concentration and low kinetic energy of molecules, experienced by organisms living in the Antarctic environment.
机译:截短的血红蛋白构成了球蛋白超家族的三个分支之一。它们表现出特征性的二对二螺旋夹心折叠,并根据不同的结构特征分为三类(I,II和III)。截短的血红蛋白存在于真细菌,蓝细菌,原生动物和植物中。在这里,我们介绍了一种II型截短的血红蛋白的结构,光谱和分子动力学特征,该血红蛋白由来自拟南芥海洋细菌TAC125(Ph-2 / 2HbO)的PSHAa0030基因编码,该冷适应性南极海洋细菌宿主一种黄素血红蛋白和三种截短的血红蛋白。 Ph-2 / 2HbO水合晶体结构(在2.21埃分辨率下)显示II组截短的血红蛋白的典型特征,即二对二螺旋夹心折叠,近端螺旋F之前的螺旋和血红素远端站点氢键网络,其中包括水分子和几个远端站点残基,包括His(58)CD1。在不同的溶液条件下,通过电子顺磁共振,共振拉曼光谱和电子吸收光谱对Ph-2 / 2HbO进行分析,结果表明Ph-2 / 2HbO可以进入不同的血红素连接状态。在这些之中,检测到一种低自旋血红素六配位物种表明,Tyr(42)B10残基可以经历较大的构象变化,以充当第六个血红素-Fe配体。总之,结果表明,Ph-2 / 2HbO保留了II组截短的血红蛋白的一般结构特征,但在血红素腔附近显示出增强的构象柔韧性,这一特性可能与功能挑战有关,例如低温,高温生活在南极环境中的生物体经历的O-2浓度和低分子动能。

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