Nagai Masako, Nagai Yukifumi, Aki Yayoi, Imai Kiyohiro, Wada Yoshinao, Nagatomo Shigenori, Yamamoto Yasuhiko
Research Center for Micro-Nano Technology, Hosei University, Tokyo 184-0003, Japan. masako.nagai.gv@ k.hosei.ac.jp
Biochemistry. 2008 Jan 15;47(2):517-25. doi: 10.1021/bi7015519. Epub 2007 Dec 18.
We found that recombinant human adult hemoglobin (rHb A) expressed in Escherichia coli showed heterogeneity of components with the intensity of a positive CD band at 260 nm and that it could be resolved into three components (SP-1, SP-2, and SP-3) by SP-Sepharose column chromatography. 1H NMR revealed that SP-1 is identical with native Hb A, while SP-2 and SP-3 largely contain the reversed heme isomer in both the alpha and beta subunits, with contents of approximately 50 and >80% in SP-2 and SP-3, respectively. Rotation of the heme 180 degrees about the 5,15-meso axis (reversed heme) causes an interexchange of the methyl groups at positions 2 and 7 with the vinyl groups at positions 8 and 3, respectively. To examine the effect of the modification of the heme-protein contact on the structure and function of Hb A, we compared the 1H NMR, CD, and oxygen binding properties of the three components with those of native Hb A. Native Hb A exhibits a distinct positive CD band in both the near-UV and Soret regions, but rHb A with reversed heme exhibits a very weak positive CD band at 260 nm and a prominent negative CD band in the Soret region. Cooperativity, as measured by Hill's n value, decreased from 3.18 (SP-1) to 2.94 (SP-2) to 2.63 (SP-3) with an increase in the reversed heme orientation. The effect of an allosteric effector, inositol hexaphosphate (IHP), on the oxygen binding properties was also reduced in rHb A with reversed heme. These results indicate that changes in the heme-globin contact exert a discernible influence on CD spectra and cooperative oxygen binding.
我们发现,在大肠杆菌中表达的重组人成人血红蛋白(rHb A)在260 nm处呈现出具有正性圆二色(CD)带强度的组分异质性,并且通过SP-琼脂糖凝胶柱色谱可将其分离为三个组分(SP-1、SP-2和SP-3)。1H核磁共振(NMR)显示SP-1与天然Hb A相同,而SP-2和SP-3在α和β亚基中均大量含有反向血红素异构体,在SP-2和SP-3中的含量分别约为50%和>80%。血红素围绕5,15-中位轴旋转180度(反向血红素)会导致2位和7位的甲基分别与8位和3位的乙烯基发生交换。为了研究血红素-蛋白质接触修饰对Hb A结构和功能的影响,我们比较了这三个组分与天然Hb A的1H NMR、CD和氧结合特性。天然Hb A在近紫外和索雷特区域均呈现出明显的正性CD带,但具有反向血红素的rHb A在260 nm处呈现出非常弱的正性CD带,在索雷特区域呈现出明显的负性CD带。用希尔系数n值衡量的协同性随着反向血红素取向的增加从3.18(SP-1)降至2.94(SP-2)再降至2.63(SP-3)。变构效应剂肌醇六磷酸(IHP)对具有反向血红素的rHb A的氧结合特性的影响也有所降低。这些结果表明,血红素-珠蛋白接触的变化对CD光谱和协同氧结合有明显影响。