Studying the role of essential proteins is dependent upon a method for rapid inactivation, in order to study the immediate phenotypic consequences. Auxin-inducible degron (AID) technology allows rapid depletion of proteins in animal cells and fungi, but its application to human cells has been limited by the difficulties of tagging endogenous proteins. We have developed a simple and scalable CRISPR/Cas-based method to tag endogenous proteins in human HCT116 and mouse embryonic stem (ES) cells by using donor constructs that harbor synthetic short homology arms. Using a combination of AID tagging with CRISPR/Cas, we have generated conditional alleles of essential nuclear and cytoplasmic proteins in HCT116 cells, which can then be depleted very...
Although modulation of protein levels is an important tool for study of protein function, it is diff...
Methods that allow for the manipulation of genes or their products have been highly fruitful for bio...
Our understanding of the mechanisms that regulate hematopoietic stem/progenitor cells (HSPCs) has be...
SummaryStudying the role of essential proteins is dependent upon a method for rapid inactivation, in...
The auxin-inducible degron (AID) system is a promising tool for dynamic protein degradation. In mamm...
Auxin-inducible degrons are a chemical genetic tool for targeted protein degradation and are widely ...
Work in yeast models has benefitted tremendously from the insertion of epitope or fluorescence tags ...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
Summary: Protein degradation technologies represent a powerful functional genomics tool, allowing fa...
To establish a method for conditional disruption of protein function in Caenorhabditis elegans, we a...
Experimental manipulation of protein abundance in living cells or organisms is an essential strategy...
Systematic protein localization and protein-protein interaction studies to characterize specific pro...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
The work described in this thesis emphasizes the development of cell-based strategies with increased...
Auxin-inducible degron technology allows rapid and controlled protein depletion. However, basal degr...
Although modulation of protein levels is an important tool for study of protein function, it is diff...
Methods that allow for the manipulation of genes or their products have been highly fruitful for bio...
Our understanding of the mechanisms that regulate hematopoietic stem/progenitor cells (HSPCs) has be...
SummaryStudying the role of essential proteins is dependent upon a method for rapid inactivation, in...
The auxin-inducible degron (AID) system is a promising tool for dynamic protein degradation. In mamm...
Auxin-inducible degrons are a chemical genetic tool for targeted protein degradation and are widely ...
Work in yeast models has benefitted tremendously from the insertion of epitope or fluorescence tags ...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
Summary: Protein degradation technologies represent a powerful functional genomics tool, allowing fa...
To establish a method for conditional disruption of protein function in Caenorhabditis elegans, we a...
Experimental manipulation of protein abundance in living cells or organisms is an essential strategy...
Systematic protein localization and protein-protein interaction studies to characterize specific pro...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
The work described in this thesis emphasizes the development of cell-based strategies with increased...
Auxin-inducible degron technology allows rapid and controlled protein depletion. However, basal degr...
Although modulation of protein levels is an important tool for study of protein function, it is diff...
Methods that allow for the manipulation of genes or their products have been highly fruitful for bio...
Our understanding of the mechanisms that regulate hematopoietic stem/progenitor cells (HSPCs) has be...