Kuhlenschmidt T B, Lee Y C
Biochemistry. 1984 Jul 31;23(16):3569-75. doi: 10.1021/bi00311a001.
Chicken hepatic lectin was isolated with affinity chromatography by using neoglycoproteins of bovine serum albumin (BSA) to which n moles of glycosides has been attached by amidination (Glycn-AI-BSA) [Lee, Y. C., Stowell, C. P., & Krantz, M. J. (1976) Biochemistry 15, 3956-3963] attached to Sepharose 4B. The same protein could be isolated from Man-, GlcNAc-, and Glc-AI-BSA-Sepharose columns and was identical with the protein previously reported [Kawasaki, T., & Ashwell, G. (1977) J. Biol. Chem. 252, 6536-6543]. The sugar specificity for binding to the isolated chicken hepatic lectin examined with Glycn-AI-BSA showed the order of potency for binding Glycn-AI-BSA to be D-GlcNAc greater than D-Glc, D-Man, L-Fuc greater than D-Gal, and the estimated Ki's for binding GlcNAc36-AI-BSA, Glc37-AI-BSA, Man33-AI-BSA, and L-Fuc28-AI-BSA were (6-20) X 10(-11), (2-3) X 10(-8), (3-9) X 10(-8), and 5 X 10(-8) M, respectively. The binding requirements of the binding protein were studied with a wide variety of Glycn-BSA's with different sugars and aglyconic linkages, as well as simple sugars and glycosides. It was concluded that (1) GlcNAc is the most potent sugar for binding, (2) the requirement for C-2 substituents is flexible, (3) an equatorial OH group at C-3 and C-4 must be present, (4) the 5-CH2OH group is not required for binding, (5) the lectin cannot accommodate a negative charge at C-6, and (6) D-Man and L-Fuc bind equally well.(ABSTRACT TRUNCATED AT 250 WORDS)
通过亲和色谱法,利用已通过脒基化连接了n摩尔糖苷的牛血清白蛋白(BSA)新糖蛋白(Glycn-AI-BSA)[Lee, Y. C., Stowell, C. P., & Krantz, M. J. (1976) Biochemistry 15, 3956 - 3963]连接到琼脂糖4B上,分离鸡肝凝集素。同样的蛋白质可以从甘露糖、N-乙酰葡糖胺和葡萄糖-AI-BSA-琼脂糖柱中分离出来,并且与先前报道的蛋白质相同[Kawasaki, T., & Ashwell, G. (1977) J. Biol. Chem. 252, 6536 - 6543]。用Glycn-AI-BSA检测分离出的鸡肝凝集素的糖结合特异性,结果显示Glycn-AI-BSA的结合效力顺序为:D-N-乙酰葡糖胺>D-葡萄糖、D-甘露糖、L-岩藻糖>D-半乳糖,并且结合GlcNAc36-AI-BSA、Glc37-AI-BSA、Man33-AI-BSA和L-Fuc28-AI-BSA的估计解离常数(Ki)分别为(6 - 20)×10⁻¹¹、(2 - 3)×10⁻⁸、(3 - 9)×10⁻⁸和5×10⁻⁸ M。用多种具有不同糖类和糖苷配基连接方式的Glycn-BSA以及单糖和糖苷研究了结合蛋白的结合要求。得出的结论是:(1)N-乙酰葡糖胺是结合能力最强的糖;(2)对C-2取代基的要求较为灵活;(3)C-3和C-4处必须存在赤道面羟基;(4)结合不需要5-CH₂OH基团;(5)凝集素不能容纳C-6处的负电荷;(6)D-甘露糖和L-岩藻糖结合能力相当。(摘要截断于250字)