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首页> 外文期刊>Biochemistry >Heme Binding Mechanism of Structurally Similar Iron-Regulated Surface Determinant Near Transporter Domains of Staphylococcus aureus Exhibiting Different Affinities for Heme
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Heme Binding Mechanism of Structurally Similar Iron-Regulated Surface Determinant Near Transporter Domains of Staphylococcus aureus Exhibiting Different Affinities for Heme

机译:血红素结合机制的结构相似的铁调节表面决定簇附近金黄色葡萄球菌的转运蛋白域表现出不同的血红素亲和力。

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Near transporter (NEAT) domains of the ironregulated surface determinant (Isd) proteins are essential for the import of nutritional heme from host animals to Grampositive pathogens such as Staphylococcus aureus. The order of transfer of heme between NEAT domains occurs from IsdH to IsdA to IsdC, without any energy input despite the similarity of their three-dimensional structures. We measured the free energy of binding of heme and various metalloporphyrins to each NEAT domain and found that the affinity of heme and non-iron porphyrins for NEAT domains increased gradually in the same order as that for heme transfer. To gain insight into the atomistic mechanism for the differential affinities, we performed in silico molecular dynamics simulation and in vitro site-directed mutagenesis. The simulations revealed that the negatively charged residues that are abundant in the loop between strand β1b and the 310 helix of IsdH-NEAT3 destabilize the interaction with the propionate group of heme. The higher affinity of IsdC was in part attributed to the formation of a salt bridge between its unique residue, Glu88, and the conserved Arg100 upon binding to heme. In addition, we found that Phe130 of IsdC makes the β7?β8 hairpin less flexible in the ligand-free form, which serves to reduce the magnitude of the entropy loss on binding to heme. We confirmed that substitution of these key residues of IsdC decreased its affinity for heme. Furthermore, IsdC mutants, whose affinities for heme were lower than those of IsdA, transferred heme back to IsdA. Thus, NEAT domains have evolved the characteristic residues on the common structural scaffold such that they exhibit different affinities for heme, thus promoting the efficient transfer of heme.
机译:铁调节的表面决定簇(Isd)蛋白的近转运蛋白(NEAT)域对于将营养血红素从宿主动物导入革兰氏阳性病原体(如金黄色葡萄球菌)至关重要。 NEAT域之间血红素的转移顺序从IsdH到IsdA到IsdC,尽管它们的三维结构相似,但没有任何能量输入。我们测量了血红素和各种金属卟啉与每个NEAT域结合的自由能,发现血红素和非铁卟啉对NEAT域的亲和力以与血红素转移相同的顺序逐渐增加。为了深入了解不同亲和力的原子机理,我们进行了计算机分子动力学模拟和体外定点诱变。模拟显示,在链β1b和IsdH-NEAT3的310螺旋之间的环中充裕的带负电荷的残基使与血红素的丙酸酯基团的相互作用不稳定。 IsdC的较高亲和力部分归因于其独特残基Glu88与结合血红素的保守Arg100之间形成盐桥。此外,我们发现IsdC的Phe130使β7?β8发夹在无配体形式下的柔韧性降低,从而降低了与血红素结合时熵损失的幅度。我们证实,这些IsdC关键残基的取代降低了其对血红素的亲和力。此外,与血红素亲和力比IsdA低的IsdC突变体将血红素转移回IsdA。因此,NEAT结构域已经进化出普通结构支架上的特征性残基,使得它们对血红素表现出不同的亲和力,从而促进了血红素的有效转移。

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