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共振拉曼光谱研究血红蛋白 M 取代酪氨酸残基的协同状态和四级结构的差异。

Differences in coordination states of substituted tyrosine residues and quaternary structures among hemoglobin M probed by resonance Raman spectroscopy.

机构信息

Graduate School of Medical Science, Kanazawa University, Kanazawa, 920-0942, Japan.

出版信息

J Biol Inorg Chem. 2010 Feb;15(2):147-58. doi: 10.1007/s00775-009-0579-4. Epub 2009 Aug 23.

Abstract

Among the four types of hemoglobin (Hb) M with a substitution of a tyrosine (Tyr) for either the proximal (F8) or distal (E7) histidine in the alpha or beta subunits, only Hb M Saskatoon (betaE7Tyr) assumes a hexacoordinate structure and its abnormal subunits can be reduced readily by methemoglobin (metHb) reductase. This is distinct from the other three M Hbs. To gain new insight into the cause of the difference, we examined the ionization states of E7 and F8 Tyrs by UV resonance Raman (RR) spectroscopy and Fe-O(Tyr) bonding by visible RR spectroscopy. Hb M Iwate (alphaF8Tyr), Hb M Boston (alphaE7Tyr), and Hb M Hyde Park (betaF8Tyr) exhibited two extra UV RR bands at 1,603 cm(-1) (Y8a') and 1,167 cm(-1) (Y9a') arising from deprotonated (ionized) Tyr, but Hb M Saskatoon displayed the UV RR bands of protonated (unionized) Tyr at 1,620 and 1,175 cm(-1) in addition to those of deprotonated Tyr. Evidence for the bonding of both ionization states of Tyr to the heme in Hb M Saskatoon was provided by visible RR spectroscopy. These results indicate that betaE7Tyr of Hb M Saskatoon is in equilibrium between protonated and deprotonated forms, which is responsible for facile reducibility. Comparison of the UV RR spectral features of metHb M with that of metHb A has revealed that metHb M Saskatoon and metHb M Hyde Park are in the R (relaxed) structure, similar to that of metHb A, whereas metHb M Iwate, metHb M Boston and metHb M Milwaukee are in the T (tense) quaternary structure.

摘要

在四种血红蛋白 (Hb) M 中,只有 Hb M Saskatoon(βE7Tyr)具有六配位结构,其异常亚基可以被高铁血红蛋白 (metHb) 还原酶轻易还原。这与其他三种 M Hb 不同。为了深入了解这种差异的原因,我们通过紫外共振拉曼 (RR) 光谱研究了 E7 和 F8 Tyr 的离子化状态,通过可见 RR 光谱研究了 Fe-O(Tyr) 键。Hb M Iwate (αF8Tyr)、Hb M Boston (αE7Tyr) 和 Hb M Hyde Park (βF8Tyr) 在 1603cm(-1)(Y8a')和 1167cm(-1)(Y9a')处出现了两个额外的紫外 RR 带,这是源于去质子化(离子化)的 Tyr,但 Hb M Saskatoon 在 1620cm(-1) 和 1175cm(-1) 处显示了质子化(非离子化)Tyr 的紫外 RR 带,此外还有去质子化 Tyr 的紫外 RR 带。Hb M Saskatoon 中 Tyr 的两种离子化状态与血红素的结合通过可见 RR 光谱得到了证明。这些结果表明,Hb M Saskatoon 的βE7Tyr 处于质子化和去质子化形式的平衡状态,这使其具有易于还原的性质。比较 metHb M 和 metHb A 的紫外 RR 光谱特征表明,metHb M Saskatoon 和 metHb M Hyde Park 处于 R(松弛)结构,类似于 metHb A,而 metHb M Iwate、metHb M Boston 和 metHb M Milwaukee 处于 T(紧张)四级结构。

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