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首页> 外文期刊>Biochemistry >X-ray absorption spectroscopy of the iron site in Escherichia coli Fe(III) superoxide dismutase.
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X-ray absorption spectroscopy of the iron site in Escherichia coli Fe(III) superoxide dismutase.

机译:大肠杆菌Fe(III)超氧化物歧化酶中铁位点的X射线吸收光谱。

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The local structure of the iron site in ferric superoxide dismutase from Escherichia coli has been characterized by X-ray absorption spectroscopy. In the resting state of the enzyme at pH 7.0, the iron is five-coordinate with an average metal-ligand bond length of 1.98 A. Binding of azide causes a reduction in the intensity of the bound state 1s-->3d transition and an increase of 0.08 A in average bond length. Both are indicative of an increase in the iron coordination number. Raising the pH from 7.0 to 10.5 causes a similar 0.08 A increase in the average bond length, again suggesting an increase in the iron coordination number. At intermediate pH (9.4), the average bond length is 2.03 A, consistent with an approximately 50:50 mixture of the limiting high and low pH forms. Similarly, the absorption edge structure varies continuously from pH 7 to 10.5. These spectra can be fit to a titration curve with a pKa of approximately 9.8. These data suggest that the pH-dependent transition, previously identifiedby UV-vis, EPR, and activity measurements, may be the conversion of the iron from five- to six-coordinate, presumably through coordination by hydroxide. The 1s-->3d transition for ferric superoxide dismutase at high pH is broader but not significantly less intense than that at pH 7. This suggests that the high pH form may be significantly distorted from octahedral symmetry. At pH 7, the ferric and ferric + azide samples undergo slow X-ray induced photoreduction.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:通过X射线吸收光谱法已经表征了来自大肠杆菌的铁超氧化物歧化酶中铁位点的局部结构。在pH 7.0的酶的静止状态下,铁为五配位,平均金属-配体键长为1.98A。叠氮化物的结合导致结合态1s-> 3d转变的强度降低,并且平均键长增加0.08A。两者均指示铁配位数增加。将pH从7.0提高到10.5会使平均键长增加类似的0.08 A,再次表明铁配位数增加。在中等pH(9.4)下,平均键长为2.03 A,与有限的高pH和低pH形式的大约50:50的混合物相符。类似地,吸收边缘结构在pH 7至10.5之间连续变化。这些光谱可以拟合到pKa约为9.8的滴定曲线。这些数据表明,先前通过UV-vis,EPR和活性测量确定的pH依赖性转变可能是铁从五坐标到六坐标的转化,大概是通过氢氧化物的配位。在高pH下,铁超氧化物歧化酶的1s-> 3d过渡比在pH 7时更宽,但强度没有明显降低。这表明高pH形式可能会由于八面体对称性而明显变形。在pH值为7时,三价铁和三价铁和叠氮化铁样品会经历缓慢的X射线诱导的光还原。

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