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同二聚体协同血红蛋白中的血红素-血红素相互作用。瞬态拉曼散射的证据。

Heme-heme interactions in a homodimeric cooperative hemoglobin. Evidence from transient Raman scattering.

作者信息

Rousseau D L, Song S, Friedman J M, Boffi A, Chiancone E

机构信息

AT&T Bell Laboratories, Murray Hill, New Jersey 07974.

出版信息

J Biol Chem. 1993 Mar 15;268(8):5719-23.

PMID:8449934
Abstract

The comparison of the resonance Raman spectrum of the deoxy dimeric hemoglobin (HbI) from the Arcid clam, Scapharca inaequivalvis, to its CO photoproduct at 10 ns reveals several significant differences in the low frequency vibrational modes including those involving motions of the peripheral substituents on the heme such as the propionates. This finding reflects the involvement of the propionates in a hydrogen bonding network which connects the two heme groups across the subunit interface and is sensitive to ligand binding. A frequency difference in the iron-histidine stretching mode of 6 cm-1 in this invertebrate hemoglobin is substantially smaller than that detected in tetrameric vertebrate hemoglobins under similar conditions. Time evolution studies of the vibrational modes from the photoproduct demonstrate that the transient form relaxes to the deoxy structure concertedly with a half-life of 1 microseconds, the time scale in which tertiary relaxations of tetrameric hemoglobins occur. These data establish that the tertiary and quaternary structural changes take place on the same time scale and confirm a mechanism of cooperativity involving direct interaction between the two heme groups through the peripheral substituents. This direct structural communication provides a very tight linkage between the heme groups prohibiting modulation of the oxygen affinity by factors in the physiological milieu.

摘要

对不等边毛蚶(Scapharca inaequivalvis)的脱氧二聚体血红蛋白(HbI)及其在10纳秒时的CO光产物的共振拉曼光谱进行比较,发现在低频振动模式上存在几个显著差异,包括那些涉及血红素上外围取代基(如丙酸酯)运动的模式。这一发现反映了丙酸酯参与了一个氢键网络,该网络穿过亚基界面连接两个血红素基团,并且对配体结合敏感。在这种无脊椎动物血红蛋白中,铁 - 组氨酸伸缩模式的频率差为6厘米-1,明显小于在类似条件下在四聚体脊椎动物血红蛋白中检测到的频率差。对光产物振动模式的时间演化研究表明,瞬态形式协同弛豫到脱氧结构,半衰期为1微秒,这是四聚体血红蛋白三级弛豫发生的时间尺度。这些数据表明三级和四级结构变化发生在同一时间尺度上,并证实了一种协同机制,即两个血红素基团通过外围取代基直接相互作用。这种直接的结构通讯在血红素基团之间提供了非常紧密的联系,阻止了生理环境中的因素对氧亲和力的调节。

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