首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Nuclear magnetic resonance study of heme-heme interaction in hemoglobin M Milwaukee: implications concerning the mechanism of cooperative ligand binding in normal hemoglobin.
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Nuclear magnetic resonance study of heme-heme interaction in hemoglobin M Milwaukee: implications concerning the mechanism of cooperative ligand binding in normal hemoglobin.

机译:血红蛋白M密尔沃基中血红素-血红素相互作用的核磁共振研究:涉及正常血红蛋白中协同配体结合机制的含义。

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摘要

Hemoglobin M Milwaukee (beta 67E11 val leads to Glu) is a naturally occurring valency hybrid containing two permanently oxidized hemes in the beta-chains. In this mutant, the two abnormal beta-chains cannot combine with oxygen, whereas the two alpha-chains are normal and can combine with oxygen cooperatively with a Hill coefficient of approximately 1.3. High-resolution proton nuclear magnetic resonance spectroscopy at 250 MHz has been used to investigate the hyperfine shifted resonances of the abnormal ferric beta-chains of Hb M Milwaukee over the spectral region from -30 to -60 parts per million from water at pD 7 and 30 degrees.
机译:血红蛋白M密尔沃基(β67E11 val导致Glu)是一种天然存在的价杂种,在β链中包含两个永久氧化的血红素。在该突变体中,两条异常的β链不能与氧结合,而两条α链是正常的并且可以与氧协同结合,其希尔系数约为1.3。 250 MHz的高分辨率质子核磁共振波谱已被用于研究Hb M密尔沃基的异常铁β链在dD 7和水的百万分之-30至-60的光谱范围内的超精细位移共振。 30度

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