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Non-Heme-Binding Domains and Segments of the Staphylococcus aureus IsdB Protein Critically Contribute to the Kinetics and Equilibrium of Heme Acquisition from Methemoglobin

机译:非血红素结合域和金黄色葡萄球菌isdB蛋白的节段关键有助于从血红蛋白获取血红素的动力学和平衡。

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摘要

The hemoglobin receptor IsdB rapidly acquires heme from methemoglobin (metHb) in the heme acquisition pathway of Staphylococcus aureus. IsdB consists of N-terminal segment (NS), NEAT1 (N1), middle (MD), and heme binding NEAT2 (N2) domains, and C-terminal segment (CS). This study aims to elucidate the roles of these domains or segments in the metHb/IsdB reaction. Deletion of CS does not alter the kinetics and equilibrium of the reaction. Sequential deletions of NS and N1 in NS-N1-MD-N2 progressively reduce heme transfer rates and change the kinetic pattern from one to two phases, but have no effect on the equilibrium of the heme transfer reaction, whereas further deletion of MD reduces the percentage of transferred metHb heme. MD-N2 has higher affinity for heme than N2. MD in trans reduces rates of heme dissociation from holo-N2 and increases the percentage of metHb heme captured by N2 by 4.5 fold. NS-N1-MD and N2, but not NS-N1, MD, and N2, reconstitute the rapid metHb/IsdB reaction. NS-N1-MD-NIsdC, a fusion protein of NS-N1-MD and the NEAT domain of IsdC, slowly acquires heme from metHb by itself but together with N2 results in rapid heme loss from metHb. Thus, NS-N1 and MD domains specifically and critically contribute to the kinetics and equilibrium of the metHb/IsdB reaction, respectively. These findings support a mechanism of direct heme acquisition by IsdB in which MD enhances the affinity of N2 for heme to thermodynamically drive heme transfer from metHb to IsdB and in which NS is required for the rapid and single phase kinetics of the metHb/IsdB reaction.
机译:血红蛋白受体IsdB在金黄色葡萄球菌的血红素获取途径中从高铁血红蛋白(metHb)快速获取血红素。 IsdB由N末端片段(NS),NEAT1(N1),中间(MD)和血红素结合NEAT2(N2)域和C末端片段(CS)组成。本研究旨在阐明这些结构域或片段在metHb / IsdB反应中的作用。 CS的删除不会改变反应的动力学和平衡。 NS-N1-MD-N2中NS和N1的顺序删除会逐渐降低血红素的转移速率,并将动力学模式从一相改变为两相,但对血红素转移反应的平衡没有影响,而MD的进一步删除会降低血红素的转移。转移的metHb血红素的百分比。 MD-N2对血红素的亲和力高于N2。反式的MD降低了血红素从完整N2上解离的速率,并使N2捕获的metHb血红素的百分比增加了4.5倍。 NS-N1-MD和N2而非NS-N1,MD和N2构成了快速的metHb / IsdB反应。 NS-N1-MD和IsdC的NEAT结构域的融合蛋白NS-N1-MD-N IsdC 自身缓慢地从metHb获得血红素,但与N2一起导致metHb迅速导致血红素损失。因此,NS-N1和MD域分别专门和关键地促进了metHb / IsdB反应的动力学和平衡。这些发现支持了通过IsdB直接获取血红素的机制,其中MD增强了N2对血红素的亲和力,以热力学驱动血红素从metHb转移至IsdB,其中NS是metHb / IsdB反应的快速和单相动力学所必需的。

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