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低温捕获的锰(II)原卟啉-IX取代肌红蛋白亚硝酰配合物光产物的电子顺磁共振研究:远端组氨酸位点特异性化学修饰对配体结合结构的影响

EPR studies on the photoproducts of manganese(II) protoporphyrin-IX substituted myoglobin nitrosyl complexes trapped at low temperature: effects of site-specific chemical modification of the distal histidine on ligand-binding structures.

作者信息

Masuya F, Hori H

机构信息

Department of Biophysical Engineering, Faculty of Engineering Science, Osaka University, Japan.

出版信息

Biochim Biophys Acta. 1993 Nov 10;1203(1):99-103. doi: 10.1016/0167-4838(93)90041-o.

Abstract

Manganese(II) protoporphyrin-IX substituted myoglobin with site-specifically cyanated or N-tetrazolated distal histidine (His) was prepared and low-temperature photolysis of nitric oxide (NO) from their nitrosyl complexes was examined by electron paramagnetic resonance (EPR) spectroscopy in order to elucidate the steric crowding of the distal heme moiety. The photoproduct of NO complex of the tetrazolated Mn(II)Mb (tetrazole-Mn(II)Mb) exhibited widespread absorption in the magnetic field from zero to 0.4 T due to a spin-coupled interaction between the high-spin Mn(II) center (S = 5/2) and the photodissociated NO (S = 1/2) trapped adjacent to the metal center. This indicates that the NO complex of tetrazole-Mn(II)Mb has sterically restricted distal heme pocket. On the other hand, the photoproduct of NO complex of cyanated Mn(II)Mb (BrCN-Mn(II)Mb) exhibited only the broad g = 6 absorption due to the magnetic dipole-dipole interaction between the photodissociated NO and the high-spin Mn(II) center. A drastic conformational change in the heme-ligand moiety, in which the distal histidine side chain is pushed toward the outside of the heme pocket, leaving an open space in the distal heme pocket, can be suggested.

摘要

制备了用位点特异性氰化或N - 四唑化远端组氨酸(His)取代的锰(II)原卟啉 - IX肌红蛋白,并通过电子顺磁共振(EPR)光谱研究了它们的亚硝酰配合物中一氧化氮(NO)的低温光解,以阐明远端血红素部分的空间拥挤情况。四唑化锰(II)肌红蛋白(四唑 - Mn(II)Mb)的NO配合物的光产物在从零到0.4 T的磁场中表现出广泛的吸收,这是由于高自旋锰(II)中心(S = 5/2)与捕获在金属中心附近的光解离NO(S = 1/2)之间的自旋耦合相互作用。这表明四唑 - Mn(II)Mb的NO配合物具有空间受限的远端血红素口袋。另一方面,氰化锰(II)肌红蛋白(BrCN - Mn(II)Mb)的NO配合物的光产物仅表现出由于光解离NO与高自旋锰(II)中心之间的磁偶极 - 偶极相互作用而产生的宽g = 6吸收。可以推测,血红素 - 配体部分发生了剧烈的构象变化,其中远端组氨酸侧链被推向血红素口袋的外部,在远端血红素口袋中留下一个开放空间。

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