Newnham Laura E, Wright Michael J, Holdsworth Gill, Kostarelos Kostas, Robinson Martyn K, Rabbitts Terence H, Lawson Alastair D
a UCB ; Slough , UK.
MAbs. 2015;7(1):180-91. doi: 10.4161/19420862.2015.989023.
The Wnt signaling pathway is of central importance in embryogenesis, development and adult tissue homeostasis, and dysregulation of this pathway is associated with cancer and other diseases. Despite the developmental and potential therapeutic significance of this pathway, many aspects of Wnt signaling, including the control of the master transcriptional co-activator β-catenin, remain poorly understood. In order to explore this aspect, a diverse immune llama VHH phagemid library was constructed and panned against β-catenin. VHH antibody fragments from the library were expressed intracellularly, and a number of antibodies were shown to possess function-modifying intracellular activity in a luciferase-based Wnt signaling HEK293 reporter bioassay. Further characterization of one such VHH (named LL3) confirmed that it bound endogenous β-catenin, and that it inhibited the Wnt signaling pathway downstream of the destruction complex, while production of a control Ala-substituted complementarity-determining region (CDR)3 mutant demonstrated that the inhibition of β-catenin activity by the parent intracellular antibody was dependent on the specific CDR sequence of the antibody.
Wnt信号通路在胚胎发生、发育及成体组织稳态中至关重要,该通路失调与癌症及其他疾病相关。尽管此通路具有发育及潜在治疗意义,但Wnt信号的许多方面,包括对主要转录共激活因子β-连环蛋白的调控,仍知之甚少。为探究这一方面,构建了一个多样化的免疫羊驼VHH噬菌体展示文库,并针对β-连环蛋白进行淘选。文库中的VHH抗体片段在细胞内表达,在基于荧光素酶的Wnt信号HEK293报告基因生物测定中,许多抗体显示出具有功能修饰的细胞内活性。对其中一个这样的VHH(命名为LL3)的进一步表征证实,它结合内源性β-连环蛋白,并在破坏复合物下游抑制Wnt信号通路,而对照丙氨酸取代互补决定区(CDR)3突变体的产生表明,亲本细胞内抗体对β-连环蛋白活性的抑制依赖于抗体的特定CDR序列。