Experimental manipulation of protein abundance in living cells or organisms is an essential strategy for investigation of biological regulatory mechanisms. Whereas powerful techniques for protein expression have been developed in Caenorhabditis elegans, existing tools for conditional disruption of protein function are far more limited. To address this, we have adapted the auxin-inducible degradation (AID) system discovered in plants to enable conditional protein depletion in C. elegans. We report that expression of a modified Arabidopsis TIR1 F-box protein mediates robust auxin-dependent depletion of degron-tagged targets. We document the effectiveness of this system for depletion of nuclear and cytoplasmic proteins in diverse somatic and g...
The auxin-inducible degron (AID) system is a promising tool for dynamic protein degradation. In mamm...
Removal of protein activity by genetic mutation or pharmacological inhibition has been used extensiv...
The growth substance auxin mediates many cellular processes, including division, elongation and diff...
Experimental manipulation of protein abundance in living cells or organisms is an essential strategy...
As developmental biologists in the age of genome editing, we now have access to an ever-increasing a...
As developmental biologists in the age of genome editing, we now have access to an ever-increasing a...
ABSTRACT As developmental biologists in the age of genome editing, we now have access to an ever-inc...
To establish a method for conditional disruption of protein function in Caenorhabditis elegans, we a...
The auxin-inducible degradation system in C. elegans allows for spatial and temporal control of prot...
The auxin-inducible degradation system in C. elegans allows for spatial and temporal control of prot...
The auxin-inducible degron (AID) system has emerged as a powerful tool to conditionally deplete prot...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
Summary: The auxin-inducible degron (AID) provides reversible, spatiotemporal control for the knockd...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
The analysis of consequences resulting after experimental elimination of gene function has been and ...
The auxin-inducible degron (AID) system is a promising tool for dynamic protein degradation. In mamm...
Removal of protein activity by genetic mutation or pharmacological inhibition has been used extensiv...
The growth substance auxin mediates many cellular processes, including division, elongation and diff...
Experimental manipulation of protein abundance in living cells or organisms is an essential strategy...
As developmental biologists in the age of genome editing, we now have access to an ever-increasing a...
As developmental biologists in the age of genome editing, we now have access to an ever-increasing a...
ABSTRACT As developmental biologists in the age of genome editing, we now have access to an ever-inc...
To establish a method for conditional disruption of protein function in Caenorhabditis elegans, we a...
The auxin-inducible degradation system in C. elegans allows for spatial and temporal control of prot...
The auxin-inducible degradation system in C. elegans allows for spatial and temporal control of prot...
The auxin-inducible degron (AID) system has emerged as a powerful tool to conditionally deplete prot...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
Summary: The auxin-inducible degron (AID) provides reversible, spatiotemporal control for the knockd...
Auxin-inducible degradation is a powerful tool for the targeted degradation of proteins with spatiot...
The analysis of consequences resulting after experimental elimination of gene function has been and ...
The auxin-inducible degron (AID) system is a promising tool for dynamic protein degradation. In mamm...
Removal of protein activity by genetic mutation or pharmacological inhibition has been used extensiv...
The growth substance auxin mediates many cellular processes, including division, elongation and diff...