Structural Biology Brussels, Vrije Universiteit Brussel (VUB), Brussels, Belgium.
VIB-VUB Center for Structural Biology, VIB, Brussels, Belgium.
Sci Rep. 2019 Jan 23;9(1):382. doi: 10.1038/s41598-018-37212-3.
Fusions to the C-terminal end of the Aga2p mating adhesion of Saccharomyces cerevisiae have been used in many studies for the selection of affinity reagents by yeast display followed by flow cytometric analysis. Here we present an improved yeast display system for the screening of Nanobody immune libraries where we fused the Nanobody to the N-terminal end of Aga2p to avoid steric hindrance between the fused Nanobody and the antigen. Moreover, the display level of a cloned Nanobody on the surface of an individual yeast cell can be monitored through a covalent fluorophore that is attached in a single enzymatic step to an orthogonal acyl carrier protein (ACP). Additionally, the displayed Nanobody can be easily released from the yeast surface and immobilised on solid surfaces for rapid analysis. To prove the generic nature of this novel Nanobody discovery platform, we conveniently selected Nanobodies against three different antigens, including two membrane proteins.
在许多研究中,利用酿酒酵母 Aga2p 交配黏附蛋白的 C 末端融合,通过酵母展示进行亲和试剂的选择,然后进行流式细胞分析。在这里,我们提出了一种改进的酵母展示系统,用于筛选纳米抗体免疫文库,我们将纳米抗体融合到 Aga2p 的 N 末端,以避免融合的纳米抗体和抗原之间的空间位阻。此外,可以通过共价荧光团来监测单个酵母细胞表面克隆纳米抗体的表达水平,该荧光团通过单个酶促步骤与正交酰基辅酶 A(ACP)连接。此外,展示的纳米抗体可以很容易地从酵母表面释放出来,并固定在固体表面上进行快速分析。为了证明这个新型纳米抗体发现平台的通用性,我们方便地选择了针对三种不同抗原的纳米抗体,包括两种膜蛋白。