Hayashi Takashi, Dejima Hirohisa, Matsuo Takashi, Sato Hideaki, Murata Dai, Hisaeda Yoshio
Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, and PRESTO in Japan Science and Technology Corporation, Fukuoka 812-8581, Japan.
J Am Chem Soc. 2002 Sep 25;124(38):11226-7. doi: 10.1021/ja0265052.
Myoglobin will be a good scaffold for engineering a function into proteins. To modulate the physiological function of myoglobin, almost all approaches have been demonstrated by site-directed mutagenesis, however, there are few studies which show a significant improvement in the function. In contrast, we focused on the replacement of heme in the protein with an artificial prosthetic group. Recently, we prepared a novel myoglobin reconstituted with an iron porphycene as a structural isomer of mesoheme. The bluish colored reconstituted myoglobin is relatively stable and the deoxymyoglobin reversibly binds ligands. Interestingly, the O2 affinity of the reconstituted myoglobin, 1.1 x 109 M-1, is a significant 1,400-fold higher than that of the native myoglobin. Furthermore, the unfavorable autoxidation kinetics show 7-fold decrease in rate for the reconstituted myoglobin relative to the native myoglobin, indicating the stable oxy-form against autoxidation. The net results come from the slow dissociation of the O2 ligand in the reconstituted myoglobin, koff = 0.11 s-1, because of the formation of strong hydrogen bond between His64 and negatively charged dioxygen. The present study indicates that the replacement of native heme with an artificially created prosthetic group will give us a unique function into a hemoprotein.
肌红蛋白将是用于在蛋白质中构建功能的良好支架。为了调节肌红蛋白的生理功能,几乎所有方法都已通过定点诱变得到证实,然而,很少有研究表明功能有显著改善。相比之下,我们专注于用人工辅基替代蛋白质中的血红素。最近,我们制备了一种用铁卟啉作为中位血红素的结构异构体重构的新型肌红蛋白。蓝色的重构肌红蛋白相对稳定,脱氧肌红蛋白可与配体可逆结合。有趣的是,重构肌红蛋白的O2亲和力为1.1×109 M-1,比天然肌红蛋白高1400倍,这是一个显著的差异。此外,不利的自氧化动力学表明,重构肌红蛋白的自氧化速率相对于天然肌红蛋白降低了7倍,这表明其氧合形式对自氧化具有稳定性。最终结果源于重构肌红蛋白中O2配体的缓慢解离,koff = 0.11 s-1,这是由于His64与带负电荷的双氧之间形成了强氢键。本研究表明,用人工合成的辅基替代天然血红素将赋予血红蛋白独特的功能。