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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >MOSSBAUER AND EPR STUDIES OF THE BINUCLEAR AND TRINUCLEAR ANTIFERROMAGNETICALLY COUPLED IRON(III)-BINDING SITES IN FERREASCIDIN
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MOSSBAUER AND EPR STUDIES OF THE BINUCLEAR AND TRINUCLEAR ANTIFERROMAGNETICALLY COUPLED IRON(III)-BINDING SITES IN FERREASCIDIN

机译:费拉西丁中双核和三核反铁结合铁(III)结合位点的分子筛和EPR研究

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摘要

Previous studies of the interaction of iron(III) with ferreascidin, a glycoprotein isolated from the blood cells of the stolidobranch ascidian Pyura stolonifera, have shown that the iron's coordination sphere involves two (3,4-dihydroxyphenyl)alanine (DOPA) residues and possibly one tyrosine (Taylor, S. W.; Hawkins, C. J.; Winter, D. J. Inorg. Chem. 1993, 32, 422). Herein we report variable-field (0-11.1 T) low-temperature Mossbauer spectra which reveal the existence of at least three distinct iron(III)-binding sites. In conjunction with electron paramagnetic resonance spectroscopy of ferreascidin and model complexes, site 1 is found to be a strongly antiferromagnetically coupled (J > 100 cm(-1)) binuclear iron(III) center which may possess a mu-oxo bridging group, while site 2 is also an antiferromagnetically coupled (similar to 20 < J < similar to 80 cm(-1)) binuclear iron(III) center. Site 3 is a linear trinuclear iron cluster in which the three high-spin iron(III) ions are antiferromagnetically coupled with J(12) similar or equal to J(23) > J(13) producing a paramagnetic S = 5/2 ground state. The absence of sulfur and sulfide in ferreascidin indicates that the bridging atoms in these three clusters (sites) must be oxygen and/or nitrogen atoms. Site 3 represents the first example of a trinuclear iron(III) cluster with a paramagnetic S = 5/2 ground state to be found in metalloproteins. Structures for the metal ion binding sites are proposed. [References: 41]
机译:先前对铁(III)与费拉西丁的相互作用的研究表明,铁阿糖胞嘧啶是一种从花枝as海鞘Pyura stolonifera的血细胞中分离出来的糖蛋白,显示铁的配位域涉及两个(3,4-二羟基苯基)丙氨酸(DOPA)残基一种酪氨酸(Taylor,SW; Hawkins,CJ; Winter,DJ Inorg。Chem.1993,32,422)。在这里,我们报告可变场(0-11.1 T)低温Mossbauer光谱,揭示了至少三个不同的铁(III)结合位点的存在。结合ferreascidin和模型配合物的电子顺磁共振波谱,发现站点1是强反铁磁耦合( J > 100 cm(-1))双核铁(III)中心,可能具有mu-oxo桥基,而站点2也是反铁磁耦合的(类似于20 < J <类似于80 cm(-1))双核铁(III)中心。站点3是线性三核铁簇,其中三个高自旋铁(III)离子与类似于或等于J(23)> J(13)的J(12)反铁磁耦合,产生顺磁S = 5/2地州。 Ferreascidin中不存在硫和硫化物,表明这三个簇(位)中的桥连原子必须是氧和/或氮原子。位置3代表在金属蛋白中发现的具有顺磁性S = 5/2基态的三核铁(III)簇的第一个例子。提出了用于金属离子结合位点的结构。 [参考:41]

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