Kiger L, Stetzkowski-Marden F, Poyart C, Marden M C
Institut National de la Santé et de la Recherche Médicale, Hôpital de Bicêtre, Le Kremlin-Bicêtre, France.
Eur J Biochem. 1995 Mar 15;228(3):665-8. doi: 10.1111/j.1432-1033.1995.tb20307.x.
We have examined the absorbance of a charge-transfer transition near 760 nm, known as band III, in several hemoproteins and heme complexes. The band III position correlates with the rate of carbon monoxide binding to the heme. A band III present at 760 nm indicates an unfavorable geometry of the heme for carbon monoxide binding; a red-shift of the band III to 765 nm indicates a less-constrained geometry of the heme as evidenced by higher carbon monoxide association rates. The band III position correlates well with the Raman frequency of the Fe-His(F8) bond as suggested previously for normal hemoglobin A [Sassaroli, M. & Rousseau, D. L. (1987) Biochemistry 26, 3092-3098]. Aplysia myoglobin and the chimeric heme protein kinase FixL from Bradyrhizobium japonicum, hemoproteins with an apolar residue in place of the highly conserved polar histidine E7, do not fit the relationship between the band III position and the rate of binding of carbon monoxide to the heme. With these few exceptions, the measurement of band III appears to be a practical means to probe the stretch frequency of the Fe-His(F8) bond.
我们研究了几种血红蛋白和血红素复合物中靠近760 nm处的电荷转移跃迁吸光度,即III带。III带的位置与一氧化碳与血红素的结合速率相关。760 nm处出现的III带表明血红素的几何结构不利于一氧化碳结合;III带红移至765 nm表明血红素的几何结构限制较小,这一点可通过较高的一氧化碳缔合速率得到证明。正如之前针对正常血红蛋白A所提出的那样,III带的位置与Fe-His(F8)键的拉曼频率密切相关[Sassaroli, M. & Rousseau, D. L. (1987) Biochemistry 26, 3092 - 3098]。海兔肌红蛋白以及来自日本慢生根瘤菌的嵌合血红素蛋白激酶FixL,这些血红蛋白中高度保守的极性组氨酸E7被非极性残基取代,不符合III带位置与一氧化碳与血红素结合速率之间的关系。除了这几个例外情况,III带的测量似乎是探测Fe-His(F8)键伸缩频率的一种实用方法。