Gerken T A, Dearborn D G
Biochemistry. 1984 Mar 27;23(7):1485-97. doi: 10.1021/bi00302a023.
Natural abundance 13C NMR spectroscopy has been used to study the solution structure and dynamics of the ovine submaxillary mucin (OSM). Results at both 45.3 and 67.9 MHz show the extremely viscous mucin to possess sufficient internal segmental flexibility to allow high-resolution 13C NMR studies. Essentially all of the resonances in the spectra have been assigned to individual carbons of the carbohydrate disaccharide side chain alpha- NeuNAc2 ----6 alpha-Gal-NAc-Ser/Thr and to the protonated carbons of the major peptide residues. Spin-lattice relaxation times and nuclear Overhauser enhancements reveal that the internal mobility of the mucin is unaffected by large changes in molecular weight and hence bulk viscosity. On the basis of the relaxation measurements the peptide and carbohydrate side chain mobilities increase stepwise from the glycosylated peptide residue alpha-carbons to the terminal sialic acid (NeuNAc) side-chain C9 carbon. Removal of the terminal sialic acid C8 and C9 side-chain carbons as well as the complete removal of the NeuNAc residue does not alter the dynamics of the peptide core. However, the removal of carbons C8 and C9 from the NeuNAc residue produces an increase in its ring mobility or conformational flexibility. Complete removal of sialic acid produces an increase in the mobility or flexibility of the GalNAc ring and reduces the chemical shift sensitivity of the GalNAc ring carbons to the different serine and threonine linkages. The pKa value for the sialic acid carboxyl group in the intact mucin is 2.0, while it increases to 2.4 after the removal of the NeuNAc C8 and C9 side-chain carbons. This change in pKa confirms the intramolecular hydrogen bond interaction of the C8 hydroxyl with the C2 carboxyl group in the alpha-NeuNAc residue as previously suggested by Jennings and Bhattacharjee [ Jennings , H.J., & Bhattacharjee , A.K. (1977) Carbohydr . Res. 55, 105-112]. The relaxation time values and temperature dependence of the chemical shift of the NeuNAc C7 carbon suggest that this group is also involved in an intramolecular interaction. Overall the 13C NMR results indicate that the relatively simple mucous glycoprotein, OSM, is a highly extended and internally flexible molecule which in solution possesses little secondary structure.
天然丰度13C核磁共振光谱已被用于研究绵羊颌下粘蛋白(OSM)的溶液结构和动力学。在45.3和67.9兆赫下得到的结果表明,这种极具粘性的粘蛋白具有足够的内部链段灵活性,从而能够进行高分辨率的13C核磁共振研究。光谱中的基本上所有共振峰都已被归属到碳水化合物二糖侧链α-NeuNAc2----6α-Gal-NAc-Ser/Thr的各个碳原子以及主要肽残基的质子化碳原子上。自旋晶格弛豫时间和核Overhauser增强效应表明,粘蛋白的内部流动性不受分子量大幅变化以及由此导致的体积粘度变化的影响。基于弛豫测量结果,肽和碳水化合物侧链的流动性从糖基化肽残基的α-碳原子到末端唾液酸(NeuNAc)侧链的C9碳原子逐步增加。去除末端唾液酸的C8和C9侧链碳原子以及完全去除NeuNAc残基并不会改变肽核心的动力学。然而,从NeuNAc残基上去除C8和C9碳原子会导致其环流动性或构象灵活性增加。完全去除唾液酸会导致GalNAc环的流动性或灵活性增加,并降低GalNAc环碳原子对不同丝氨酸和苏氨酸连接的化学位移敏感性。完整粘蛋白中唾液酸羧基基团的pKa值为2.0,而在去除NeuNAc的C8和C9侧链碳原子后,该值增加到2.4。pKa值的这种变化证实了C8羟基与α-NeuNAc残基中C2羧基基团之间的分子内氢键相互作用,正如Jennings和Bhattacharjee之前所提出的那样[Jennings, H.J., & Bhattacharjee, A.K. (1977) Carbohydr. Res. 55, 105 - 112]。NeuNAc C7碳原子的弛豫时间值和化学位移的温度依赖性表明该基团也参与了分子内相互作用。总体而言,13C核磁共振结果表明,相对简单的粘液糖蛋白OSM是一个高度伸展且内部灵活的分子,在溶液中几乎没有二级结构。