Morishima I, Hara M
J Biol Chem. 1983 Dec 10;258(23):14428-32.
The effect of pressure on the tertiary and quaternary structures of human oxy, carbonmonoxy, and deoxyhemoglobin was examined by high pressure NMR spectroscopy at 300 MHz. The increased pressure displaced the ring current-shifted gamma 1-methyl resonance of beta E11 valine for oxy- and carbonmonoxyhemoglobin to the upfield side, whereas that of the alpha subunit was insensitive to pressure. Such a preferential pressure-induced upfield shift for the beta E11 valine gamma 1-methyl signal was also encountered for the isolated carbonmonoxy beta chain. For deoxyhemoglobin, hyperfine shifted resonances of the heme peripheral proton groups and the proximal histidyl NH proton for the beta subunit were pressure-dependent, in contrast to the pressure-insensitive responses for these resonances of the alpha subunit. These results indicate the structural nonequivalence of the pressure-induced structural changes in the alpha and beta subunits of hemoglobin. The exchangeable proton resonances due to the intra- and intersubunit hydrogen bonds which have been used as the oxy and deoxy quaternary structural probes were not changed upon pressurization. From all of above results, it was concluded that pressure induces the tertiary structural change preferentially at the beta heme pocket of the ferrous hemoglobin derivatives with the quaternary structure retained.
通过300兆赫的高压核磁共振光谱法研究了压力对人氧合血红蛋白、碳氧合血红蛋白和脱氧血红蛋白的三级和四级结构的影响。压力增加使氧合血红蛋白和碳氧合血红蛋白中β E11缬氨酸的环流位移γ 1-甲基共振向上场侧移动,而α亚基的该共振对压力不敏感。对于分离的碳氧合β链,β E11缬氨酸γ 1-甲基信号也出现了这种优先的压力诱导上移。对于脱氧血红蛋白,β亚基血红素外周质子基团和近端组氨酸NH质子的超精细位移共振与压力有关,而α亚基的这些共振对压力不敏感。这些结果表明血红蛋白α和β亚基中压力诱导的结构变化在结构上不相等。用作氧合和脱氧四级结构探针的亚基内和亚基间氢键引起的可交换质子共振在加压时没有变化。根据上述所有结果,得出结论:压力优先在保留四级结构的亚铁血红蛋白衍生物的β血红素口袋处诱导三级结构变化。