首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The c(i)/b(H) moiety in the b(6)f complex studied by EPR: A pair of strongly interacting hemes
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The c(i)/b(H) moiety in the b(6)f complex studied by EPR: A pair of strongly interacting hemes

机译:EPR研究的b(6)f络合物中的c(i)/ b(H)部分:一对强烈相互作用的血红素

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摘要

X-band EPR features in the region of 90-150 mT have previously been attributed to heme c(i) of the b(6) complex [Zhang H, Primak A, Bowman MK, Kramer DIM, Cramer WA (2004) Biochemistry 43:16329-16336] and interpreted as arising from a high-spin species. However, the complexity of the observed spectrum is rather untypical for high-spin hemes. In this work, we show that addition of the inhibitor 2-n-nonyl-4-hydroxyquinoline N-oxide largely simplifies heme ci's EPR properties. The spectrum in the presence of 2-n-nonyl-4-hydroxyquinoline N-oxide is demonstrated to be caused by a simple S 5/2, rhombic species split by magnetic dipolar interaction (A(xx) 7.5 mT) with neighboring heme b(H). The large spacing of lines in the uninhibited system, by contrast, cannot be rationalized solely on the basis of magnetic dipolar coupling but is likely to encompass strong contributions from exchange interactions. The role of the H2O/OH- molecule bridging heme ci's Fe atom and heme b(H)'S propionate side chain in mediating these interactions is discussed.
机译:X波段EPR特征在90-150 mT范围内,以前曾归因于b(6)络合物的血红素c(i)[Zhang H,Primak A,Bowman MK,Kramer DIM,Cramer WA(2004)Biochemistry 43 :16329-16336],并解释为来自高自旋物种。然而,观察到的光谱的复杂性对于高自旋血红素来说是非常不典型的。在这项工作中,我们表明添加抑制剂2-n-壬基-4-羟基喹啉N-氧化物可以大大简化血红素的EPR特性。已证明存在2-n-壬基-4-羟基喹啉N-氧化物时的光谱是由与相邻血红素b的磁偶极相互作用(A(xx)7.5 mT)分裂的简单S 5/2菱形物种引起的(H)。相比之下,不能仅基于磁偶极耦合来合理化未抑制系统中较大的行距,而是可能包含交换相互作用的强力作用。讨论了桥接血红素ci的Fe原子和血红素b(H)的丙酸酯侧链的H2O / OH-分子在介导这些相互作用中的作用。

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