Angeli Renata, da Paz Nathalia V N, Maciel Jackeline C, Araújo Flávia F B, Paiva Patrícia M G, Calazans Glícia M T, Valente Ana Paula, Almeida Fábio C L, Coelho Luana C B B, Carvalho Luiz B, Silva Maria da Paz C, dos Santos Correia Maria Tereza
Laboratório de Glicoproteínas, Departamento de Bioquímica, Universidade Federal de Pernambuco, 50670-901 Recife, PE, Brazil.
J Biomed Biotechnol. 2009;2009:179106. doi: 10.1155/2009/179106. Epub 2009 Jun 14.
A simple and inexpensive procedure used magnetite and levan to synthesize a composite recovered by a magnetic field. Lectins from Canavalia ensiformis (Con A) and Cratylia mollis (Cramoll 1 and Cramoll 1, 4) did bind specifically to composite. The magnetic property of derivative favored washing out contaminating proteins and recovery of pure lectins with glucose elution. Cramoll 1 was purified by this affinity binding procedure in two steps instead of a previous three-step protocol with ammonium sulfate fractionation, affinity chromatography on Sephadex G-75, and ion exchange chromatography through a CM-cellulose column.
一种简单且成本低廉的方法利用磁铁矿和聚左旋糖合成了一种可通过磁场回收的复合材料。来自刀豆(伴刀豆球蛋白A)和毛蟹爪兰(克拉莫尔凝集素1和克拉莫尔凝集素1,4)的凝集素确实能特异性结合该复合材料。衍生物的磁性有利于洗去污染蛋白,并通过葡萄糖洗脱回收纯凝集素。克拉莫尔凝集素1通过这种亲和结合方法分两步进行纯化,而不是之前采用硫酸铵分级分离、Sephadex G - 75亲和色谱以及通过CM - 纤维素柱进行离子交换色谱的三步方案。