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血红素铜氧化酶中的氰化物结合与活性位点结构:细胞色素ba3和aa3的a3(2+)CN-复合物中铁-氰化物振动的简正坐标分析

Cyanide binding and active site structure in heme-copper oxidases: normal coordinate analysis of iron-cyanide vibrations of a3(2+)CN- complexes of cytochromes ba3 and aa3.

作者信息

Kim Y, Babcock G T, Surerus K K, Fee J A, Dyer R B, Woodruff W H, Oertling W A

机构信息

Department of Chemistry, Hankuk University of Foreign Studies, Yongin-Gun, Kyung Ki Do, Korea.

出版信息

Biospectroscopy. 1998;4(1):1-15. doi: 10.1002/(sici)1520-6343(1998)4:1<1::aid-bspy1>3.0.co;2-a.

Abstract

The cyanide isotope-sensitive low-frequency vibrations of ferrous cyano complexes of cytochrome a3 are studied for cytochrome ba3 from Thermus thermophilus and cytochrome aa3 from bovine heart. Cyanide complexes of ba3 display three isotope sensitive frequencies at 512, 485, and 473 cm-1. The first is primarily an Fe-C stretching motion, whereas the lower wavenumber modes are bending motions. These iron-cyanide vibrations are independent of the redox levels of the other metal centers in the protein. On the other hand, the fully reduced bovine derivative complexed with cyanide gives rise to a bending vibration at 503 cm-1 and a stretching vibration at 469 cm-1. That is, the ordering of the stretching and bending frequencies is reversed from that of the bacterial protein. These results are analyzed by normal coordinate calculations to obtain comparative models for the binuclear O2 reducing site of the two proteins. We find that the observed frequencies are consistent with a linear Fe-C-N group and larger Fe-C stretching force constant (2.558 mdyn/A) for ba3 and a slightly bent Fe-C-N group (angle approximately 170 degrees) and a smaller Fe-C stretching force constant (2.335 mdyn/A) for aa3. Thus, there are significant differences in the interaction of cyanide with ferrous a3 in the two proteins that are most likely caused by a weaker proximal histidine interaction and stronger peripheral heme electron withdrawing effects in ba3. Possible sources of these protein-induced effects are discussed. Using the analysis developed here, comparison of the FeCN stretching and bending frequencies of the ferrous bovine a3-CN complex to those obtained from the ferric a3-CN complex suggests that upon conversion of the resting to the fully reduced protein, a conformational change occurs that constrains the ligand binding site.

摘要

对嗜热栖热菌的细胞色素ba3和牛心细胞色素aa3的细胞色素a3亚铁氰配合物的氰化物同位素敏感低频振动进行了研究。ba3的氰化物配合物在512、485和473 cm-1处显示出三个同位素敏感频率。第一个主要是Fe-C伸缩运动,而较低波数模式是弯曲运动。这些铁-氰化物振动与蛋白质中其他金属中心的氧化还原水平无关。另一方面,与氰化物络合的完全还原的牛衍生物在503 cm-1处产生弯曲振动,在469 cm-1处产生伸缩振动。也就是说,伸缩和弯曲频率的顺序与细菌蛋白相反。通过正规坐标计算对这些结果进行分析,以获得两种蛋白质双核O2还原位点的比较模型。我们发现,观察到的频率与ba3的线性Fe-C-N基团和较大的Fe-C伸缩力常数(2.558 mdyn/A)以及aa3的略微弯曲的Fe-C-N基团(角度约为170度)和较小的Fe-C伸缩力常数(2.335 mdyn/A)一致。因此,两种蛋白质中氰化物与亚铁a3的相互作用存在显著差异,这很可能是由于ba3中较弱的近端组氨酸相互作用和较强的外周血红素吸电子效应引起的。讨论了这些蛋白质诱导效应的可能来源。利用本文开发的分析方法,将亚铁牛a3-CN配合物的FeCN伸缩和弯曲频率与从铁a3-CN配合物获得的频率进行比较,结果表明,从静止蛋白转变为完全还原蛋白时,会发生构象变化,从而限制配体结合位点。

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