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EPR studies on the photoinduced intermediates of NO complexes in recombinant ferric-Mb trapped at low temperatures

机译:EPR研究低温捕获的重组铁-Mb中NO配合物的光诱导中间体

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摘要

The nitrosyl complex of ferric myoglobin is EPR-silent. Upon photolysis at low temperatures, the photoinduced intermediates trapped in the distal heme cavity exhibit new EPR spectra due to the interaction between the photodissociated NO (S=1/2) and the ferric high spin heme (S=5/2). In order to elucidate the effect of distal E7 (His64) and E11 (Val68) mutations upon the electronic structure of the metal center, its immediate environment, and its interaction with the photodissociated NO, EPR spectra of the photoproducts of the NO complexes of recombinant ferric Mb mutants were measured at 5 K. EPR spectra of the photoproducts were closely related to the size and/or the polarity of the distal pocket residues. The distal pocket of the E7 mutants seemed to be sterically crowded, even decreasing the side chain volume or changing its hydrophobicity by replacing amino acid at position 64. We have found that the mobility of the photodissociated NO molecule in the distal heme pocket was strongly governed by the nature of the amino acid residue at E11 position. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 31]
机译:肌红蛋白铁的亚硝酰基复合物是EPR沉默的。在低温下光解时,由于光解离的NO(S = 1/2)和高铁自旋血红素(S = 5/2)之间的相互作用,捕获在远端血红素腔中的光诱导中间体表现出新的EPR光谱。为了阐明远端E7(His64)和E11(Val68)突变对金属中心的电子结构,其邻近环境及其与光解离NO的相互作用的影响,重组体NO配合物的光产物的EPR光谱在5 K下测量了铁的Mb突变体。光产物的EPR光谱与远端口袋残基的大小和/或极性密切相关。 E7突变体的远端袋似乎在空间上拥挤,甚至通过替换64位氨基酸来减少侧链体积或改变其疏水性。我们发现,光解离的NO分子在远端血红素袋中的迁移率受到强烈控制根据E11位氨基酸残基的性质。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:31]

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