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Oxygen Binding and Redox Properties of the Heme in Soluble Guanylate Cyclase: IMPLICATIONS FOR THE MECHANISM OF LIGAND DISCRIMINATION*

机译:可溶性鸟苷酸环化酶中血红素的氧结合和氧化还原特性:对配体识别机理的暗示*

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摘要

Soluble guanylate cyclase is an NO-sensing hemoprotein that serves as a NO receptor in NO-mediated signaling pathways. It has been believed that this enzyme displays no measurable affinity for O2, thereby enabling the selective NO sensing in aerobic environments. Despite the physiological significance, the reactivity of the enzyme-heme for O2 has not been examined in detail. In this paper we demonstrated that the high spin heme of the ferrous enzyme converted to a low spin oxyheme (Fe2+-O2) when frozen at 77 K in the presence of O2. The ligation of O2 was confirmed by EPR analyses using cobalt-substituted enzyme. The oxy form was produced also under solution conditions at −7 °C, with the extremely low affinity for O2. The low O2 affinity was not caused by a distal steric protein effect and by rupture of the Fe2+-proximal His bond as revealed by extended x-ray absorption fine structure. The midpoint potential of the enzyme-heme was +187 mV, which is the most positive among high spin protoheme-hemoproteins. This observation implies that the electron density of the ferrous heme iron is relatively low by comparison to those of other hemoproteins, presumably due to the weak Fe2+-proximal His bond. Based on our results, we propose that the weak Fe2+-proximal His bond is a key determinant for the low O2 affinity of the heme moiety of soluble guanylate cyclase.
机译:可溶性鸟苷酸环化酶是一种NO敏感的血蛋白,在NO介导的信号传导途径中充当NO受体。据信该酶对O 2没有显示出可测量的亲和力,从而使得在有氧环境中能够选择性地检测NO。尽管具有生理学意义,但尚未详细检查酶血红素对O2的反应性。在本文中,我们证明了当存在O2时,亚铁酶的高自旋血红素在77 K下冷冻时会转化为低自旋氧化血红素(Fe2 + -O2)。使用钴取代的酶通过EPR分析确认O2的连接。氧形式也是在-7°C的溶液条件下产生的,对O2的亲和力极低。低的O2亲和力不是由远端空间蛋白质效应和Fe2 +-近端His键的断裂所引起的,这是由扩展的X射线吸收精细结构揭示的。酶血红素的中点电位为+187 mV,在高自旋原血红素血红蛋白中最为阳性。该观察结果暗示,与其他血红蛋白相比,亚铁血红素铁的电子密度相对较低,这可能是由于Fe2 +-近端His键较弱所致。根据我们的结果,我们认为弱的Fe2 +-近端His键是可溶性鸟苷酸环化酶血红素部分的低O2亲和力的关键决定因素。

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