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通过傅里叶变换红外光谱法观察到β-93位半胱氨酸巯基对血红蛋白连接的构象敏感性。

Conformational sensitivity of beta-93 cysteine SH to ligation of hemoglobin observed by FT-IR spectroscopy.

作者信息

Moh P P, Fiamingo F G, Alben J O

机构信息

Department of Physiological Chemistry, Ohio State University College of Medicine, Columbus 43210.

出版信息

Biochemistry. 1987 Sep 22;26(19):6243-9. doi: 10.1021/bi00393a044.

Abstract

The SH vibrational absorption of cysteine F9(beta-93) in concentrated aqueous solutions of native liganded hemoglobin (human HbA, horse, and bovine) has been observed by use of Fourier transform infrared spectroscopy. The pattern of beta-93 SH absorption intensity is ligand dependent. In bovine hemoglobin derivatives the SH absorption intensity pattern is (carbonmonoxy)hemoglobin (HbCO) greater than oxyhemoglobin (HbO2) = cyanomethemoglobin (HbCN) much greater than aquomethemoglobin (metHb) and deoxyhemoglobin (deoxyHb). In horse and human hemoglobin derivatives the pattern is HbCO greater than or equal to HbO2 greater than HbCN greater than metHb. The bovine metHb beta-93 SH shows a much lower absorptivity than that of horse or human metHb, and thus it has a different local tertiary equilibrium conformation than does horse or human hemoglobin. X-ray diffraction studies have shown the beta-93 SH in carbon monoxide or oxygen bound hemoglobin to be situated within a nonpolar pocket between the F, G, and H helices. The higher than usual SH absorption frequency (2592 cm-1) that we observe implies there is no hydrogen bonding for this thiol group while situated within this nonpolar pocket. A similar beta-93 SH absorption has been observed in the beta-chain tetramer (thalassemic hemoglobin H in vivo). The beta-112 SH stretching band, previously observed in the alpha 2 beta 2 tetramer, was observed for the first time in the beta-chain tetramer. A band at 2610 cm-1 that is not due to SH was resolved and found to be ligand dependent.

摘要

利用傅里叶变换红外光谱法,观察了天然配体血红蛋白(人血红蛋白A、马血红蛋白和牛血红蛋白)浓水溶液中半胱氨酸F9(β-93)的SH振动吸收。β-93 SH吸收强度的模式取决于配体。在牛血红蛋白衍生物中,SH吸收强度模式为:碳氧血红蛋白(HbCO)大于氧合血红蛋白(HbO2)=氰化高铁血红蛋白(HbCN)远大于高铁血红蛋白(metHb)和脱氧血红蛋白(deoxyHb)。在马和人血红蛋白衍生物中,模式为:HbCO大于或等于HbO2大于HbCN大于metHb。牛metHb的β-93 SH的吸光度远低于马或人metHb的吸光度,因此它具有与马或人血红蛋白不同的局部三级平衡构象。X射线衍射研究表明,一氧化碳或氧气结合的血红蛋白中的β-93 SH位于F、G和H螺旋之间的非极性口袋内。我们观察到的高于正常的SH吸收频率(2592 cm-1)意味着该巯基位于该非极性口袋内时不存在氢键。在β链四聚体(体内地中海贫血血红蛋白H)中观察到了类似的β-93 SH吸收。以前在α2β2四聚体中观察到的β-112 SH伸缩带首次在β链四聚体中被观察到。一个并非由SH引起的2610 cm-1处的谱带被分辨出来,并且发现它取决于配体。

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