Yeast-Plant Coupled Vector System for Identification of Nuclear Proteins
Author(s) -
Adi Zaltsman,
BuYoung Yi,
Alexander Krichevsky,
Yedidya Gafni,
Vitaly Citovsky
Publication year - 2007
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.107.105973
Subject(s) - biology , cloning (programming) , computational biology , nuclear localization sequence , multiple cloning site , nuclear protein , microbiology and biotechnology , plant cell , yeast , cloning vector , expression vector , genetics , vector (molecular biology) , recombinant dna , nucleus , gene , computer science , transcription factor , programming language
Nuclear proteins are involved in many critical biological processes within plant cells and, therefore, are in the focus of studies that usually begin with demonstrating that the protein of interest indeed exhibits nuclear localization. Thus, studies of plant nuclear proteins would be facilitated by a convenient experimental system for identification of proteins that are actively imported into the cell nucleus and visualization of their nuclear accumulation in vivo. To this end, we developed a system of vectors that allows screening for cDNAs coding for nuclear proteins in a simple genetic assay in yeast cells, and verification of nuclear accumulation in planta following one-step transfer and autofluorescent tagging of the identified clones into a multiple cloning site-compatible and reading frame-compatible plant expression vector. In a recommended third experimental step, the plant expression cassette containing the identified clone can be transferred, also by a one-step cloning, into a binary multigene expression vector for transient or stable coexpression with any other proteins.
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