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首页> 外文期刊>Journal of Molecular Biology >CO-trapping site in heme oxygenase revealed by photolysis of its co-bound heme complex: mechanism of escaping from product inhibition.
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CO-trapping site in heme oxygenase revealed by photolysis of its co-bound heme complex: mechanism of escaping from product inhibition.

机译:血红素加氧酶中的CO捕获位点通过其共结合的血红素复合物的光解揭示:逃脱产物抑制的机制。

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Heme oxygenase (HO) catalyzes physiological heme degradation using O(2) and reducing equivalents to produce biliverdin, iron, and CO. Notably, the HO reaction proceeds without product inhibition by CO, which is generated in the conversion reaction of alpha-hydroxyheme to verdoheme, although CO is known to be a potent inhibitor of HO and other heme proteins. In order to probe how endogenous CO is released from the reaction site, we collected X-ray diffraction data from a crystal of the CO-bound form of the ferrous heme-HO complex in the dark and under illumination by a red laser at approximately 35 K. The difference Fourier map indicates that the CO ligand is partially photodissociated from the heme and that the photolyzed CO is trapped in a hydrophobic cavity adjacent to the heme pocket. This hydrophobic cavity was occupied also by xenon, which is similar to CO in terms of size and properties. Taking account of the affinity of CO for the ferrous verdoheme-HO complex being much weaker than that for the ferrous heme complex, the CO derived from alpha-hydroxyheme would be trapped preferentially in the hydrophobic cavity but not coordinated to the iron of verdoheme. This structural device would ensure the smooth progression of the subsequent reaction, from verdoheme to biliverdin, which requires O(2) binding to verdoheme.
机译:血红素加氧酶(HO)使用O(2)催化生理血红素降解,并还原等价物以产生胆绿素,铁和CO。值得注意的是,HO反应的进行不受产品的CO抑制,CO在α-羟基血红素转化为α-羟基血红素的反应中产生Verdoheme,尽管已知CO是HO和其他血红素蛋白的有效抑制剂。为了探究内源性CO是如何从反应位点释放的,我们收集了在黑暗中和在大约35的红色激光照射下,从铁结合的亚铁血红素-HO络合物形式的晶体的X射线衍射数据K.傅立叶差图表明CO配体与血红素部分光解离,并且光解的CO被捕集在与血红素袋相邻的疏水腔中。该疏水腔也被氙占据,氙的大小和性质与CO相似。考虑到CO对亚铁红血红素-HO络合物的亲和力比对亚铁血红素复合物的亲和力要弱得多,因此衍生自α-羟基血红素的CO会优先捕获在疏水腔中,但不与维铁血红素铁配位。这种结构的装置将确保随后的反应从Verdoheme到Biliverdin的顺利进行,这需要O(2)与Verdoheme结合。

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