Rich A M, Ellis P J, Tennant L, Wright P E, Armstrong R S, Lay P A
School of Chemistry, University of Sydney, New South Wales, Australia.
Biochemistry. 1999 Dec 14;38(50):16491-9. doi: 10.1021/bi990730n.
The NO adducts of leghemoglobin (Lb) are implicated in biological processes, but only the adduct with ferrous Lb (Lb(II)NO) has been characterized previously. We report the first characterization of ferric nitrosylleghemoglobin (Lb(III)NO) and XAS experiments performed on frozen aqueous solutions of Lb(II)NO and Lb(III)NO at 10 K. The XANES and electronic spectra of the NO adducts are similar in shape and energies to the myoglobin (Mb) analogues. The environment of the Fe atom has been refined using multiple-scattering (MS) analyses of the XAFS data. For Lb(II)NO, the MS analysis resulted in an averaged Fe-N(p)(pyrrole) distance of 2.02 A, an Fe-N(epsilon)(imidazole) distance of 1.98 A, an Fe-N(NO) distance of 1.77 A, and an Fe-N-O angle of 147 degrees. The Fe-N(NO) distance and Fe-N-O angle obtained from the analysis of Lb(II)NO are in good agreement with those determined crystallographically for [Fe(TPP)(NO)] (TPP, tetraphenylporphyrinato), with and without 1-methylimidazole (1-MeIm) as the sixth ligand, and the MS XAFS structures reported previously for the myoglobin (Mb(II)NO) analogue and [Fe(TPP)(NO)]. The MS analysis of Lb(III)NO yielded an average Fe-N(p) distance of 2.00 A, an Fe-N(epsilon) distance of 1.89 A, an Fe-N(NO) distance of 1.68 A, and an Fe-N-O angle of 173 degrees. These bond lengths and angles are consistent with those determined previously for the myoglobin analogue (Mb(III)NO) and the crystal structures of the model complexes, Fe(III)(TPP)(NO)(OH(2)) and Fe(OEP)(NO) (OEP, octaethylporphyrinato). The final XAFS R values were 16.1 and 18.2% for Lb(II)NO and Lb(III)NO, respectively.
豆血红蛋白(Lb)的NO加合物参与生物过程,但此前仅对亚铁Lb(Lb(II)NO)的加合物进行了表征。我们首次对亚硝酰高铁豆血红蛋白(Lb(III)NO)进行了表征,并在10K下对Lb(II)NO和Lb(III)NO的冷冻水溶液进行了X射线吸收光谱(XAS)实验。NO加合物的X射线吸收近边结构(XANES)和电子光谱在形状和能量上与肌红蛋白(Mb)类似物相似。利用X射线吸收精细结构(XAFS)数据的多重散射(MS)分析对Fe原子的环境进行了优化。对于Lb(II)NO,MS分析得出平均Fe-N(p)(吡咯)距离为2.02 Å,Fe-N(ε)(咪唑)距离为1.98 Å,Fe-N(NO)距离为1.77 Å,Fe-N-O角度为147度。通过对Lb(II)NO的分析得到的Fe-N(NO)距离和Fe-N-O角度与通过晶体学测定的[Fe(四苯基卟啉)(NO)](TPP,四苯基卟啉)(有和没有1-甲基咪唑(1-MeIm)作为第六配体)以及先前报道的肌红蛋白(Mb(II)NO)类似物和[Fe(TPP)(NO)]的MS XAFS结构非常吻合。对Lb(III)NO的MS分析得出平均Fe-N(p)距离为2.00 Å,Fe-N(ε)距离为1.89 Å,Fe-N(NO)距离为1.68 Å,Fe-N-O角度为173度。这些键长和角度与先前测定的肌红蛋白类似物(Mb(III)NO)以及模型配合物[Fe(III)(TPP)(NO)(OH₂)]⁺和[Fe(八乙基卟啉)(NO)]⁺(OEP,八乙基卟啉)的晶体结构一致。Lb(II)NO和Lb(III)NO的最终XAFS R值分别为16.1%和18.2%。