Lee Sanghwa, Lee Jun Hyuck, Kim Han-Woo, Hong Jong Wook
Department of Bionano Engineering, Hanyang University, Kyunggi-do, 15588, Republic of Korea; Biomedical Engineering Research Center, Asan Medical Center, University of Ulsan College of Medicine, Seoul, 05505, Republic of Korea.
Unit of Polar Genomics, Korea Polar Research Institute, Incheon, 21990, Republic of Korea; Department of Polar Sciences, University of Science and Technology, Incheon, 21990, Republic of Korea.
Cryobiology. 2018 Dec;85:33-38. doi: 10.1016/j.cryobiol.2018.10.005. Epub 2018 Oct 5.
Ice binding proteins (IBPs) have been attracting significant interest on account of their characteristic of inhibiting ice growth and recrystallization. Owing to their unique characteristics, IBPs have been studied for applications in food, pharmaceuticals, and medicine, as well as from a general scientific point of view. In this study, we have used differential scanning calorimetry (DSC) and Raman spectroscopy as tools to understand the ice binding activity of the Arctic-yeast-originating extracellular ice binding glycoprotein (LeIBP) isolated from Leucosporidium sp. AY30. From the DSC results, an increase in the specific heat capacity was confirmed for 1 mg/mL LeIBP, which suggested that additional heat flow was required for the change in temperature. In addition, the temperature corresponding to the phase change of the solution was measured, and Raman spectroscopy was carried out on the frozen and molten phases, respectively. From the results of Raman analysis, we confirmed that the helical vibrations related to the ice binding sites on LeIBP were dramatically suppressed when the LeIBP solution was frozen. Furthermore, principal component analysis (PCA) of the Raman spectra yielded the contrast factor between the freezing and melting states. Both DSC and Raman spectroscopy are widely used to study the ice binding activity and the structural changes associated with molecular vibrations in cryobiology.
冰结合蛋白(IBPs)因其抑制冰生长和重结晶的特性而备受关注。由于其独特的特性,IBPs已被研究用于食品、制药和医学领域,以及从一般科学的角度进行研究。在本研究中,我们使用差示扫描量热法(DSC)和拉曼光谱作为工具,来了解从嗜冷白冬孢酵母AY30中分离出的源自北极酵母的细胞外冰结合糖蛋白(LeIBP)的冰结合活性。从DSC结果来看,对于1 mg/mL的LeIBP,确认其比热容有所增加,这表明温度变化需要额外的热流。此外,测量了溶液相变对应的温度,并分别对冷冻相和熔融相进行了拉曼光谱分析。从拉曼分析结果来看,我们确认当LeIBP溶液冷冻时,与LeIBP上冰结合位点相关的螺旋振动被显著抑制。此外,拉曼光谱的主成分分析(PCA)得出了冷冻态和熔融态之间的对比因子。DSC和拉曼光谱都被广泛用于研究低温生物学中冰结合活性以及与分子振动相关的结构变化。