SummaryWe adapted the yeast 2-hybrid assay to simultaneously uncover multiple transient protein interactions within a single screen by using a strategy termed DEEPN (dynamic enrichment for evaluation of protein networks). This approach incorporates high-throughput DNA sequencing and computation to follow competition among a plasmid population encoding interacting partners. To demonstrate the capacity of DEEPN, we identify a wide range of ubiquitin-binding proteins, including interactors that we verify biochemically. To demonstrate the specificity of DEEPN, we show that DEEPN allows simultaneous comparison of candidate interactors across multiple bait proteins, allowing differential interactions to be identified. This feature was used to ide...
<div><p>Yeast two-hybrid (Y2H) methods are powerful tools for detecting protein–protein interactions...
The yeast two-hybrid (Y2H) system exploits host cell genetics in order to display binary protein-pro...
A systems-level understanding of biological processes and information flow requires the mapping of c...
We adapted the yeast 2-hybrid assay to simultaneously uncover multiple transient protein interaction...
The yeast two-hybrid (Y2H) system is the most widely applied methodology for systematic protein-prot...
AbstractAutomated sequence technology has rendered functional biology amenable to genomic scale anal...
Protein-protein interaction networks are one of the most effective representations of cellular behav...
The yeast two-hybrid (Y2H) system is currently one of the most important techniques for protein-prot...
Protein-protein interaction (PPI) maps provide insight into cellular biology and have received consi...
Yeast two-hybrid (Y2H) is a well-established genetics-based system that uses yeast to selectively di...
International audienceA key property of complex biological systems is the presence of interaction ne...
The yeast two-hybrid system is a genetic method that detects protein-protein interactions, One appli...
An important aspect for designing precise medical therapies is to have an accurate knowledge of prot...
This article describes the general method to perform the classical two‐hybrid system. Although it ha...
Mapping protein-protein interactions (PPIs) is crucial for understanding cellular systems. PPIs can ...
<div><p>Yeast two-hybrid (Y2H) methods are powerful tools for detecting protein–protein interactions...
The yeast two-hybrid (Y2H) system exploits host cell genetics in order to display binary protein-pro...
A systems-level understanding of biological processes and information flow requires the mapping of c...
We adapted the yeast 2-hybrid assay to simultaneously uncover multiple transient protein interaction...
The yeast two-hybrid (Y2H) system is the most widely applied methodology for systematic protein-prot...
AbstractAutomated sequence technology has rendered functional biology amenable to genomic scale anal...
Protein-protein interaction networks are one of the most effective representations of cellular behav...
The yeast two-hybrid (Y2H) system is currently one of the most important techniques for protein-prot...
Protein-protein interaction (PPI) maps provide insight into cellular biology and have received consi...
Yeast two-hybrid (Y2H) is a well-established genetics-based system that uses yeast to selectively di...
International audienceA key property of complex biological systems is the presence of interaction ne...
The yeast two-hybrid system is a genetic method that detects protein-protein interactions, One appli...
An important aspect for designing precise medical therapies is to have an accurate knowledge of prot...
This article describes the general method to perform the classical two‐hybrid system. Although it ha...
Mapping protein-protein interactions (PPIs) is crucial for understanding cellular systems. PPIs can ...
<div><p>Yeast two-hybrid (Y2H) methods are powerful tools for detecting protein–protein interactions...
The yeast two-hybrid (Y2H) system exploits host cell genetics in order to display binary protein-pro...
A systems-level understanding of biological processes and information flow requires the mapping of c...