Lee Jeffrey E, Fusco Marnie L, Saphire Erica Ollmann
Department of Immunology and Microbial Science, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.
Nat Protoc. 2009;4(4):592-604. doi: 10.1038/nprot.2009.29.
Glycoproteins are involved in diverse biological processes ranging from extracellular contact and recognition to intracellular signaling. Crystal structures of glycoproteins would yield tremendous insight into these processes. But glycoprotein structural analysis has been hindered by difficulties in expressing milligram quantities of stable, homogeneous protein and determining which modifications will yield samples amenable to crystallization. We describe a platform, which we have proven to be effective for rapidly screening expression and crystallization of a challenging glycoprotein target. In this protocol, multiple glycoprotein ectodomain constructs are produced in parallel by transient expression of adherent human embryonic kidney (HEK) 293T cells and are subsequently screened for crystals in microscale quantities by free interface diffusion. As a result, recombinant proteins are produced and processed in a native, mammalian environment, and crystallization screening can be accomplished with as little as 65 microg of protein. Moreover, large numbers of constructs can be generated, screened and scaled up for expression and crystallization, with results obtained in 4 weeks.
糖蛋白参与了从细胞外接触与识别到细胞内信号传导等多种生物过程。糖蛋白的晶体结构将为深入了解这些过程提供巨大帮助。但由于难以表达毫克级稳定、均一的蛋白质,以及确定哪些修饰会产生适合结晶的样品,糖蛋白结构分析受到了阻碍。我们描述了一个平台,已证明该平台对于快速筛选具有挑战性的糖蛋白靶点的表达和结晶有效。在此方案中,通过贴壁人胚肾(HEK)293T细胞的瞬时表达并行产生多个糖蛋白胞外域构建体,随后通过自由界面扩散对微量晶体进行筛选。结果,重组蛋白在天然的哺乳动物环境中产生和加工,并且只需65微克蛋白质就能完成结晶筛选。此外,可以生成、筛选大量构建体并扩大其表达和结晶规模,4周内即可获得结果。