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A Genome-Scale Resource for In Vivo Tag-Based Protein Function Exploration in C. elegans
Author(s) -
Mihail Sarov,
John I. Murray,
Kristin Schanze,
Andrei Pozniakovski,
Wei Niu,
Karolin Angermann,
Susanne Hasse,
Michaela Rupprecht,
Elisabeth Vinis,
Matthew Tinney,
Elicia Preston,
Andrea Zinke,
Susanne Enst,
Tina Teichgraber,
J. Janette,
Kadri Reis,
Stephan Janosch,
Siegfried Schloissnig,
Radoslaw K. Ejsmont,
C. Slightam,
Xiao Xu,
Stuart K. Kim,
V Reinke,
A. Francis Stewart,
M Snyder,
R Waterston,
Anthony A. Hyman
Publication year - 2012
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2012.08.001
Subject(s) - biology , caenorhabditis elegans , computational biology , chromatin , transgene , proteome , genome , multicellular organism , context (archaeology) , dna , microbiology and biotechnology , gene , genetics , paleontology
Understanding the in vivo dynamics of protein localization and their physical interactions is important for many problems in biology. To enable systematic protein function interrogation in a multicellular context, we built a genome-scale transgenic platform for in vivo expression of fluorescent- and affinity-tagged proteins in Caenorhabditis elegans under endogenous cis regulatory control. The platform combines computer-assisted transgene design, massively parallel DNA engineering, and next-generation sequencing to generate a resource of 14,637 genomic DNA transgenes, which covers 73% of the proteome. The multipurpose tag used allows any protein of interest to be localized in vivo or affinity purified using standard tag-based assays. We illustrate the utility of the resource by systematic chromatin immunopurification and automated 4D imaging, which produced detailed DNA binding and cell/tissue distribution maps for key transcription factor proteins.

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