Adeline Goubil
Salk Institute for Biological Studies
4 Papers
2 Citations
Adeline Goubil is an academic researcher from Salk Institute for Biological Studies. The author has contributed to research in topics: Interactome & Massively parallel. The author has an hindex of 1, co-authored 3 publications.
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Papers
Next Generation Protein Interactomes for Plant Systems Biology and Biomass Feedstock Research
Joseph R. Ecker,Shelly A. Trigg,Renee M. Garza,Haili Song,Andrew MacWilliams,Joseph R. Nery,Joaquin Reina,Anna Bartlett,Rosa Castanon,Adeline Goubil,Joseph Feeney,Ronan C. O'Malley,Shao-shan Carol Huang,Zhuzhu Zhang,Mary Galli +14 more
- 30 Nov 2016
TL;DR: A next-generation sequencing integrated yeast two-hybrid system that will greatly improve the rate at which PPI data can be obtained and will be applicable to virtually any cell from which RNA can be extracted is developed.
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CrY2H-seq interactome screening
Joseph R. Ecker,Shelly A. Trigg,Renee M. Garza,Andrew MacWilliams,Joseph R. Nery,Anna Bartlett,Rosa Castanon,Adeline Goubil,Joseph Feeney,Ronan C. O'Malley,Shao-shan Carol Huang,Zhuzhu Zhang,Mary Galli +12 more
TL;DR: A massively-multiplexed yeast two-hybrid method, CrY2H-seq, is described for deep coverage interactome mapping and large-scale matrix screening can be carried out en masse and interactome data can rapidly be generated.
Author Correction: CrY2H-seq: a massively multiplexed assay for deep-coverage interactome mapping
Shelly A. Wanamaker,Renee M. Garza,Andrew MacWilliams,Joseph R. Nery,Anna Bartlett,Rosa Castanon,Adeline Goubil,Joseph Feeney,Ronan C. O'Malley,Shao Shan Huang,Zhuzhu Zhang,Mary Galli,Joseph R. Ecker +12 more
CrY2H-seq: a massively multiplexed assay for deep-coverage interactome mapping
Shelly A. Trigg,Shelly A. Trigg,Renee M. Garza,Andrew MacWilliams,Joseph R. Nery,Anna Bartlett,Rosa Castanon,Adeline Goubil,Joseph Feeney,Ronan C. O'Malley,Ronan C. O'Malley,Shao-shan Carol Huang,Zhuzhu Zhang,Mary Galli,Joseph R. Ecker +14 more
TL;DR: A massively multiplexed yeast two-hybrid method, CrY2H-seq, which uses a Cre recombinase interaction reporter to intracellularly fuse the coding sequences of two interacting proteins and next-generation DNA sequencing to identify these interactions en masse, is presented.