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Crosstalk between metal ions in Bacillus subtilis ferrochelatase

机译:枯草芽孢杆菌铁螯合酶中金属离子之间的串扰

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Ferrochelatase (EC 4.99.1.1), the terminal enzyme in the heme biosynthetic pathway, catalyzes the insertion of Fe2+ into protoporphyrin IX, generating heme. In vitro assays have shown that all characterized ferrochelatases can also incorporate Zn2+ into protoporphyrin IX. Previously Zn2+ has been observed at an inner metal binding site close to the porphyrin binding site. Mg2+, which stimulates Zn2+ insertion by Bacillus subtilis ferrochelatase, has been observed at an outer metal binding site. Exchange of Glu272 to a serine eliminated the stimulative effect of Mg2+. We found that Zn2+ quenched the fluorescence of B. subtilis ferrochelatase and this quenching was used to estimate the metal affinity. Trp230 was identified as the intrinsic fluorophore responsible for the observed quenching pattern. The affinity for Zn2+ could be increased by incubating the ferrochelatase with the transition state analogue N-methyl mesoporphyrin IX, which reflected a close collaborative arrangement between the two substrates in the active site. We also showed that the affinity for Zn2+ was lowered in the presence of Mg2+ and that bound Zn2+ was released upon binding of Mg2+. In the ferrochelatase with a Glu272Ser modification, the interaction between Zn2+ and Mg2+ was abolished. It could thereby be demonstrated that the presence of a metal at one metal binding site affected the metal affinity of another, providing the enzyme with a site that regulates the enzymatic activity.
机译:血红素生物合成途径中的末端酶Ferrochelatase(EC 4.99.1.1)催化Fe2 +插入原卟啉IX中,生成血红素。体外测定表明,所有表征的铁螯合酶也可将Zn2 +掺入原卟啉IX中。以前已经在接近卟啉结合位点的内部金属结合位点观察到Zn2 +。已在外部金属结合位点观察到了Mg2 +,它可以通过枯草芽孢杆菌铁螯合酶刺激Zn2 +的插入。将Glu272交换为丝氨酸消除了Mg2 +的刺激作用。我们发现Zn2 +可以使枯草芽孢杆菌铁螯合酶的荧光猝灭,并用这种猝灭作用来估计金属亲和力。 Trp230被鉴定为负责观察到的淬灭模式的固有荧光团。通过将亚铁螯合酶与过渡态类似物N-甲基中卟啉IX孵育,可以增加对Zn2 +的亲和力,这反映了活性位点中两个底物之间的紧密协作。我们还表明,在存在Mg2 +的情况下,对Zn2 +的亲和力会降低,而结合的Zn2 +在Mg2 +结合后会释放。在具有Glu272Ser修饰的铁螯合酶中,Zn2 +和Mg2 +之间的相互作用被消除。由此可以证明,金属在一个金属结合位点的存在影响了另一金属结合位点的金属亲和力,从而为酶提供了调节酶活性的位点。

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