Babu K R, Douglas D J
Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.
Biochemistry. 2000 Nov 28;39(47):14702-10. doi: 10.1021/bi001265t.
The equilibrium methanol-induced conformation changes of holomyoglobin (hMb) at pH 4.0 have been studied by circular dichroism, tryptophan fluorescence, and Soret band absorption and by electrospray ionization mass spectrometry (ESI-MS). Optical spectra show the following: (1) In 35-40% (v/v) methanol/water, the native-like secondary structure remains, the tertiary structure is lost, the heme protein interactions are decreased, and a folding intermediate is formed. (2) In 50% methanol, heme is lost from the protein, and there is a small decrease in helicity together with a loss of tertiary structure. (3) At >60% methanol, the helicity increases and the apoprotein goes into a helical denatured state. The conformations are also probed by the charge states produced in ESI-MS and by hydrogen/deuterium (H/D) exchange with mass measurement by ESI-MS. At 0-30% methanol, native hMb produces relatively low charge states (9(+)-13(+)) in ESI-MS and exchanges relatively few hydrogens. In 35-40% methanol, at which an intermediate is formed, there is a bimodal distribution of hMb ions with both low (9(+)-13(+)) and high (14(+)-23(+)) charge states and also a high charge state distribution (12(+)-26(+)) of apomyoglobin (aMb) ions. Low and high charge states of hMb and a high charge state of aMb all show the same H/D exchange rate, indicating that an unfolded hMb intermediate interconverts between folded hMb and unfolded aMb. The charge state distribution for the unfolded hMb intermediate observed here is similar to that of the recently reported transient intermediate formed during the acid denaturation of hMb. At 50% alcohol the protein produces predominantly high charge states of aMb ions and shows H/D exchange rates close to those of the acid-denatured protein. H/D exchange of the helical denatured protein at alcohol concentrations >60%, at which high charge states of aMb are produced, shows that the protein structure is more protected than at approximately 50% methanol.
通过圆二色性、色氨酸荧光、Soret带吸收以及电喷雾电离质谱(ESI-MS)研究了pH 4.0时全肌红蛋白(hMb)在甲醇诱导下的平衡构象变化。光谱显示如下:(1)在35 - 40%(v/v)甲醇/水体系中,类天然二级结构得以保留,三级结构丧失,血红素与蛋白质的相互作用减弱,形成一种折叠中间体。(2)在50%甲醇中,蛋白质中的血红素丢失,螺旋度略有下降,同时三级结构丧失。(3)在甲醇含量>60%时,螺旋度增加,脱辅基蛋白进入螺旋变性状态。构象还通过ESI-MS产生的电荷态以及通过ESI-MS进行质量测量的氢/氘(H/D)交换来探测。在0 - 30%甲醇中,天然hMb在ESI-MS中产生相对较低的电荷态(9(+) - 13(+)),且氢交换较少。在35 - 40%甲醇中,此时形成中间体,hMb离子呈现双峰分布,既有低电荷态(9(+) - 13(+))也有高电荷态(14(+) - 23(+)),脱辅基肌红蛋白(aMb)离子也有高电荷态分布(12(+) - 26(+))。hMb的低电荷态和高电荷态以及aMb的高电荷态都显示相同的H/D交换率,表明未折叠的hMb中间体在折叠的hMb和未折叠的aMb之间相互转化。此处观察到的未折叠hMb中间体的电荷态分布与最近报道的hMb酸变性过程中形成的瞬态中间体的电荷态分布相似。在50%乙醇时,蛋白质主要产生aMb离子的高电荷态,且显示出与酸变性蛋白相近的H/D交换率。在乙醇浓度>60%时,此时产生aMb的高电荷态,螺旋变性蛋白的H/D交换表明该蛋白质结构比在约50%甲醇时更受保护。