首页> 外文会议>Fluorescence Science and Technology >EFFECT OF DISORDERED HEMES AND DIMERIZATION IN ISOLATED a-SUBUNITS OF HEMOGLOBIN DETECTED BY TIME RESOLVED FLUORESCENCE SPECTROSCOPY IN THE PICOSECOND RANGE
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EFFECT OF DISORDERED HEMES AND DIMERIZATION IN ISOLATED a-SUBUNITS OF HEMOGLOBIN DETECTED BY TIME RESOLVED FLUORESCENCE SPECTROSCOPY IN THE PICOSECOND RANGE

机译:在PicoSecond范围内定位荧光光谱中检测到血红蛋白中分离的血红蛋白分离的血液和二聚化的影响

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Our recent linear dichroism study of transition moment directions for protoporphyrin derivatives [1,2] demonstrate that heme cannot be considered a planar oscillator when it acts as an acceptor of radiationless excitation energy transfer from tryptophan. The linear nature of the heme absorption transition moment implies a strong dependence of the transfer rate factors on the relative angular position of the heme and tryptophan, i.e. on the K' orientation parameter of the Forster equation. Using the atomic coordinates of human hemoglobin and taking into account the direction of the transition moment of the near UV (300-380 nm) heme absorption band we have estimated the rate of energy transfer from tryptophan to heme in the isolated a chains, which are a single tryptophan protein. It appears that the rate of energy transfer is very sensitive to the orientation of the transition moment of the heme and similarly to myoglobin [3] natural heme disorder significantly reduces the transfer efficiency in isolated a subunits. On this basis we were able to predict very accurately the two lifetimes detectable in the systems, of 32 and 1050 ps respectively, where the amplitude of the longer lifetime is very consistent with the amount of disordered hemes found by La Mar [4,5] for the a subunits of hemoglobin.
机译:我们最近对不同原子蛋白衍生物的过渡时刻方向的线性二色性研究[1,2]证明血红能不能被认为是当它作为来自色氨酸的无辐射励磁能量转移的受体时是一个平面振荡器。血红素吸收过渡时刻的线性性质意味着转移率因子对血红素和色氨酸的相对角度位置的强烈依赖性,即福斯特方程的K'取向参数。使用人血红蛋白的原子坐标并考虑到近紫外线(300-380nm)血红素吸收带的过渡时刻的方向,我们估计了从孤立的链中从色氨酸到血红素的能量转移率,即单个色氨酸蛋白。看来,能量转移率对血红素过渡时刻的取向非常敏感,类似于肌球蛋白[3]天然血红蛋白疾病显着降低了分离亚基的转移效率。在此基础上,我们能够在系统中非常精确地预测到系统中可检测的两种寿命,其中32和1050 ps,其中较长的寿命的幅度与La Mar发现的无序血液的量非常一致[4,5]对于血红蛋白的亚基。

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