A Two-Hybrid Assay to Study Protein Interactions within the Secretory Pathway

蛋白质-蛋白质相互作用 相互作用体 生物 蛋白质片段互补分析 细胞生物学 转录因子 MyoD公司 高尔基体 肌动蛋白 双杂交筛选 血浆蛋白结合 双分子荧光互补 分泌途径 遗传学 基因 表型 互补 内质网
作者
Danielle H. Dube,Bin Li,Ethan J. Greenblatt,Sadeieh Nimer,A. Kevin Raymond,Jennifer J. Kohler
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:5 (12): e15648-e15648 被引量:10
标识
DOI:10.1371/journal.pone.0015648
摘要

Interactions of transcriptional activators are difficult to study using transcription-based two-hybrid assays due to potent activation resulting in false positives. Here we report the development of the Golgi two-hybrid (G2H), a method that interrogates protein interactions within the Golgi, where transcriptional activators can be assayed with negligible background. The G2H relies on cell surface glycosylation to report extracellularly on protein-protein interactions occurring within the secretory pathway. In the G2H, protein pairs are fused to modular domains of the reporter glycosyltransferase, Och1p, and proper cell wall formation due to Och1p activity is observed only when a pair of proteins interacts. Cells containing interacting protein pairs are identified by selectable phenotypes associated with Och1p activity and proper cell wall formation: cells that have interacting proteins grow under selective conditions and display weak wheat germ agglutinin (WGA) binding by flow cytometry, whereas cells that lack interacting proteins display stunted growth and strong WGA binding. Using this assay, we detected the interaction between transcription factor MyoD and its binding partner Id2. Interfering mutations along the MyoD:Id2 interaction interface ablated signal in the G2H assay. Furthermore, we used the G2H to detect interactions of the activation domain of Gal4p with a variety of binding partners. Finally, selective conditions were used to enrich for cells encoding interacting partners. The G2H detects protein-protein interactions that cannot be identified via traditional two-hybrid methods and should be broadly useful for probing previously inaccessible subsets of the interactome, including transcriptional activators and proteins that traffic through the secretory pathway.
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