Split Nano luciferase complementation for probing protein‐protein interactions in plant cells

荧光素酶 拟南芥 双分子荧光互补 融合蛋白 互补 蛋白质片段互补分析 化学 激发子 细胞生物学 生物 计算生物学 生物化学 基因 突变体 重组DNA 转染
作者
Fengzhu Wang,Nannan Zhang,Yanjun Guo,Ben‐Qiang Gong,Jianfeng Li
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:62 (8): 1065-1079 被引量:32
标识
DOI:10.1111/jipb.12891
摘要

Abstract Deciphering protein‐protein interactions (PPIs) is fundamental for understanding signal transduction pathways in plants. The split firefly luciferase (Fluc) complementation (SLC) assay has been widely used for analyzing PPIs. However, concern has risen about the bulky halves of Fluc interfering with the functions of their fusion partners. Nano luciferase (Nluc) is the smallest substitute for Fluc with improved stability and luminescence. Here, we developed a dual‐use system enabling the detection of PPIs through the Nluc‐based SLC and co‐immunoprecipitation assays. This was realized by coexpression of two proteins under investigation in fusion with the HA‐ or FLAG‐tagged Nluc halves, respectively. We validated the robustness of this system by reproducing multiple previously documented PPIs in protoplasts or Agrobacterium ‐transformed plants. We next applied this system to evaluate the homodimerization of Arabidopsis CERK1, a coreceptor of fungal elicitor chitin, and its heterodimerization with other homologs in the absence or presence of chitin. Moreover, split fragments of Nluc were fused to two cytosolic ends of Arabidopsis calcium channels CNGC2 and CNGC4 to help sense the allosteric change induced by the bacterial elicitor flg22. Collectively, these results demonstrate the usefulness of the Nluc‐based SLC assay for probing constitutive or inducible PPIs and protein allostery in plant cells.
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