Gupta Garima, Gemma Emiliano, Oscarson Stefan, Surolia Avadhesha
Molecular Biophysics Unit, Indian Institute of Science, Bangalore, 560012, India.
Glycoconj J. 2008 Nov;25(8):797-802. doi: 10.1007/s10719-008-9151-7. Epub 2008 Jun 15.
Calreticulin (CRT) is a soluble, lectin chaperone found in the endoplasmic reticulum of eukaryotes. It binds the N-glycosylated polypeptides via the glycan intermediate Glc(1)Man(5-9)GlcNAc(2), present on the target glycoproteins. Earlier we have studied interactions of substrate with CRT by isothermal titration calorimetry (ITC) and molecular modeling, to establish that CRT recognizes the Glcalpha1-3 linkage and forms contacts with each saccharide moiety of the oligosaccharide Glcalpha1-3Manalpha1-2Manalpha1-2Man. We also delineated the amino acid residues in the sugar binding pocket of CRT that play a crucial role in sugar-CRT binding. Here, we have used mono-deoxy analogues of the trisaccharide unit Glcalpha1-3Manalpha1-2Man to determine the role of various hydroxyl groups of the sugar substrate in sugar-CRT interactions. Using the thermodynamic data obtained by ITC with these analogues we demonstrate that the 3-OH group of Glc1 plays an important role in sugar-CRT binding, whereas the 6-OH group does not. Also, the 4-OH, 6-OH of Man2 and 3-OH, 4-OH of Man3 in the trisaccharide are involved in binding, of which 6-OH of Man2 and 4-OH of Man3 have a more significant role to play. This study sheds light further on the interactions between the substrate sugar of glycoproteins and the lectin chaperone CRT.
钙网蛋白(CRT)是一种可溶性的凝集素伴侣蛋白,存在于真核生物的内质网中。它通过靶标糖蛋白上存在的聚糖中间体Glc(1)Man(5 - 9)GlcNAc(2)与N - 糖基化多肽结合。此前我们通过等温滴定量热法(ITC)和分子建模研究了底物与CRT的相互作用,以确定CRT识别Glcα1 - 3连接并与寡糖Glcα1 - 3Manα1 - 2Manα1 - 2Man的每个糖部分形成接触。我们还描绘了CRT糖结合口袋中在糖 - CRT结合中起关键作用的氨基酸残基。在此,我们使用三糖单元Glcα1 - 3Manα1 - 2Man的单脱氧类似物来确定糖底物的各种羟基在糖 - CRT相互作用中的作用。利用ITC获得的这些类似物的热力学数据,我们证明Glc1的3 - OH基团在糖 - CRT结合中起重要作用,而6 - OH基团则不然。此外,三糖中Man2的4 - OH、6 - OH和Man3的3 - OH、4 - OH参与结合,其中Man2的6 - OH和Man3的4 - OH起更重要的作用。这项研究进一步揭示了糖蛋白的底物糖与凝集素伴侣蛋白CRT之间的相互作用。