Siegel Robert W, Coleman James R, Miller Keith D, Feldhaus Michael J
Pacific Northwest National Laboratory, MSIN: K4-12, 902 Battelle Boulevard, P.O. BOX 999, Richland, WA 99352, USA.
J Immunol Methods. 2004 Mar;286(1-2):141-53. doi: 10.1016/j.jim.2004.01.005.
In order to more productively utilize the rich source of antigen-specific reagents present in the previously described non-immune single chain fragment variable (scFv) yeast display library, one must be able to efficiently isolate and characterize clones within the library. To this end, we have developed and validated a magnetic bead sorting technique utilizing the Miltenyi Macs system to recover greater than 90% of the antigen-specific clones present in the library. In combination with flow cytometry, we rapidly reduced diversity and enriched for antigen-specific clones in three rounds of selection. Furthermore, we demonstrate the use of pre-existing monoclonal antibodies (mAbs) for antigen labeling and subsequent flow cytometric sorting and characterization of epitope-specific scFv. Combining these two improvements in library screening allowed isolation and characterization of three epitope-specific scFv, including a previously uncharacterized epitope to a 6-kDa protein, epidermal growth factor.
为了更有效地利用先前所述的非免疫单链可变片段(scFv)酵母展示文库中丰富的抗原特异性试剂来源,必须能够有效地分离和鉴定文库中的克隆。为此,我们开发并验证了一种利用美天旎磁珠分选系统的磁珠分选技术,以回收文库中超过90%的抗原特异性克隆。结合流式细胞术,我们在三轮筛选中迅速降低了多样性并富集了抗原特异性克隆。此外,我们展示了使用预先存在的单克隆抗体(mAb)进行抗原标记以及随后的流式细胞术分选和表位特异性scFv的鉴定。将文库筛选中的这两项改进相结合,使得我们能够分离和鉴定三种表位特异性scFv,包括针对一种6 kDa蛋白(表皮生长因子)的先前未鉴定的表位。