Carpenter J F, Crowe J H
Department of Zoology, University of California, Davis 95616.
Biochemistry. 1989 May 2;28(9):3916-22. doi: 10.1021/bi00435a044.
Fourier-transform infrared spectroscopy was used to characterize the interaction of stabilizing carbohydrates with dried proteins. Freeze-drying of trehalose, lactose, and myo-inositol with lysozyme resulted in substantial alterations of the infrared spectra of the dried carbohydrates. In the fingerprint region (900-1500 cm-1), there were large shifts in the frequencies of bands, a decrease in absorbance, and a loss of band splitting. These effects mimic those of water on hydrated trehalose. Bands assigned to hydroxyl stretching modes (around 3350 cm-1) were decreased in intensity and shifted to higher frequencies in the presence of the protein. In complementary experiments, it was found that dehydration-induced shifts in the positions of amide I and amide II bands for lysozyme could be partially and fully reversed, respectively, when the protein was freeze-dried in the presence of either trehalose or lactose. In addition, the carboxylate band, which was not detectable in the protein dried without the sugar, was apparent when these sugars were present. myo-Inositol was less effective at shifting the amide bands, and the carboxylate band was not detected in the presence of this carbohydrate. Also tested was the concentration dependency of the carbohydrates' influence on the position of the amide II band for dried lysozyme. The results showed that the ability of a given concentration of a carbohydrate to shift this band back toward the position noted with the hydrated protein coincided, at least in the extreme cases, with the capacity of that same level of carbohydrate to preserve the activity of rabbit skeletal muscle phosphofructokinase during freeze-drying.(ABSTRACT TRUNCATED AT 250 WORDS)
傅里叶变换红外光谱法用于表征稳定糖类与干燥蛋白质之间的相互作用。海藻糖、乳糖和肌醇与溶菌酶一起冷冻干燥,导致干燥糖类的红外光谱发生显著变化。在指纹区(900 - 1500 cm-1),谱带频率发生大幅偏移,吸光度降低,谱带分裂消失。这些效应与水对水合海藻糖的效应相似。归属于羟基伸缩振动模式的谱带(约3350 cm-1)在有蛋白质存在时强度降低并向高频移动。在补充实验中发现,当溶菌酶在海藻糖或乳糖存在下冷冻干燥时,脱水诱导的酰胺I和酰胺II谱带位置的偏移分别可以部分和完全逆转。此外,在无糖条件下干燥的蛋白质中无法检测到的羧酸盐谱带,当有这些糖类存在时则变得明显。肌醇在使酰胺谱带移动方面效果较差,在这种糖类存在时未检测到羧酸盐谱带。还测试了糖类对干燥溶菌酶酰胺II谱带位置影响的浓度依赖性。结果表明,给定浓度的糖类将该谱带移回与水合蛋白质相同位置的能力,至少在极端情况下,与该浓度的糖类在冷冻干燥过程中保留兔骨骼肌磷酸果糖激酶活性的能力相符。(摘要截短至250字)