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首页> 外文期刊>The Journal of biological chemistry >Role of the Iron Axial Ligands of Heme Carrier HasA in Heme Uptake and Release
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Role of the Iron Axial Ligands of Heme Carrier HasA in Heme Uptake and Release

机译:血红素载体哈沙铁轴配体在血红素摄取和释放中的作用

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The hemophore protein HasA from Serratia marcescens cycles between two states as follows: the heme-bound holoprotein, which functions as a carrier of the metal cofactor toward the membrane receptor HasR, and the heme-free apoprotein fishing for new porphyrin to be taken up after the heme has been delivered to HasR. Holo- and apo-forms differ for the conformation of the two loops L1 and L2, which provide the axial ligands of the iron through His32 and Tyr75, respectively. In the apo-form, loop L1 protrudes toward the solvent far away from loop L2; in the holoprotein, closing of the loops on the heme occurs upon establishment of the two axial coordination bonds. We have established that the two variants obtained via single point mutations of either axial ligand (namely H32A and Y75A) are both in the closed conformation. The presence of the heme and one out of two axial ligands is sufficient to establish a link between L1 and L2, thanks to the presence of coordinating solvent molecules. The latter are stabilized in the iron coordination environment by H-bond interactions with surrounding protein residues. The presence of such a water molecule in both variants is revealed here through a set of different spectroscopic techniques. Previous studies had shown that heme release and uptake processes occur via intermediate states characterized by a Tyr75-iron-bound form with open conformation of loop L1. Here, we demonstrate that these states do not naturally occur in the free protein but can only be driven by the interaction with the partner proteins.
机译:来自两种状态之间的Serratia marcescens循环的血栓蛋白Hasa如下:血红素结合的全蛋白质,其用作金属辅因子的载体朝向膜受体哈尔氏菌,以及用于新卟啉的无血管植物捕捞HEME已被送到HASR。 Holo-and Apo-end的不同对于两个环L1和L2的构象,其分别通过HIS32和TYR75提供铁的轴向配体。在Apo形式中,环L1朝向远离环L2的溶剂突出;在全蛋白酶中,在建立两个轴向配位键时发生血红素的环。我们已经确定通过轴向配体的单点突变获得的两个变体(即H32A和Y75A)均在闭合构象中。由于配合溶剂分子存在,血红素的存在和两个轴向配体中的一个是在L1和L2之间建立链路。后者通过与周围蛋白质残留物的H键相互作用稳定在铁配位环境中。这里通过一组不同的光谱技术揭示了两种变体中这种水分子的存在。以前的研究表明,血红素释放和摄取过程通过具有Tyr75-铁绑定形式的中间状态,具有环L1的开放构象。在这里,我们证明这些状态在游离蛋白质中并不是天然存在,而是只能通过与伴侣蛋白的相互作用驱动。

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