Activation of the wnt signaling pathway is a major cause of colon cancer development. Tankyrase inhibitors (TNKSi) have recently been developed to block the wnt pathway by increasing axin levels to promote degradation of the wnt-regulator β-catenin. TNKSi bind to the PARP (poly(ADP)ribose polymerase) catalytic region of tankyrases (TNKS), preventing the PARylation of TNKS and axin that normally control axin levels through ubiquitination and degradation. TNKSi treatment of APC-mutant SW480 colorectal cancer cells can induce axin puncta which act as sites for assembly of β-catenin degradation complexes, however this process is poorly understood. Using this model system, we found that siRNA knockdown of TNKSs 1 and 2 actually blocked the abili...
The Wnt/β-catenin signalling pathway is pivotal for stem cell function and the control of cellular d...
Canonical Wnt signaling is controlled intracellularly by the level of β-catenin protein, which is de...
The Wnt/ß-catenin signaling pathway controls important cellular events during development and often ...
In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are under tig...
In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are under tig...
<div><p>In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are u...
<div><p>Constitutive Wnt signalling is characterized by excessive levels of β-catenin protein and is...
Constitutive Wnt signalling is characterized by excessive levels of b-catenin protein and is a frequ...
Constitutive Wnt signalling is characterized by excessive levels of b-catenin protein and is a frequ...
Inhibition of the tankyrase enzymes (TNKS1 and TNKS2) has recently been shown to induce highly dynam...
Inhibition of the tankyrase enzymes (TNKS1 and TNKS2) has recently been shown to induce highly dynam...
The stability of the Wnt pathway transcription factor -catenin is tightly regulated by the multi-sub...
The poly(ADP-ribose) polymerase (PARP) Tankyrase (TNKS and TNKS2) is paramount to Wnt-β-catenin sign...
Tankyrases (TNKS1 and TNKS2) are proteins in the poly ADP-ribose polymerase (PARP) family. They have...
Genetic alternations resulting in constitutive stabilization of β-catenin and altered transcription ...
The Wnt/β-catenin signalling pathway is pivotal for stem cell function and the control of cellular d...
Canonical Wnt signaling is controlled intracellularly by the level of β-catenin protein, which is de...
The Wnt/ß-catenin signaling pathway controls important cellular events during development and often ...
In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are under tig...
In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are under tig...
<div><p>In canonical Wnt signaling, the protein levels of the key signaling mediator β-catenin are u...
<div><p>Constitutive Wnt signalling is characterized by excessive levels of β-catenin protein and is...
Constitutive Wnt signalling is characterized by excessive levels of b-catenin protein and is a frequ...
Constitutive Wnt signalling is characterized by excessive levels of b-catenin protein and is a frequ...
Inhibition of the tankyrase enzymes (TNKS1 and TNKS2) has recently been shown to induce highly dynam...
Inhibition of the tankyrase enzymes (TNKS1 and TNKS2) has recently been shown to induce highly dynam...
The stability of the Wnt pathway transcription factor -catenin is tightly regulated by the multi-sub...
The poly(ADP-ribose) polymerase (PARP) Tankyrase (TNKS and TNKS2) is paramount to Wnt-β-catenin sign...
Tankyrases (TNKS1 and TNKS2) are proteins in the poly ADP-ribose polymerase (PARP) family. They have...
Genetic alternations resulting in constitutive stabilization of β-catenin and altered transcription ...
The Wnt/β-catenin signalling pathway is pivotal for stem cell function and the control of cellular d...
Canonical Wnt signaling is controlled intracellularly by the level of β-catenin protein, which is de...
The Wnt/ß-catenin signaling pathway controls important cellular events during development and often ...