Related Experiment Video
Updated: May 1, 2026

Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Evaluating TBK1 as a therapeutic target in cancers with activated IRF3
Asli Muvaffak1, Qi Pan2, Haiyan Yan2
1Authors' Affiliations: Belfer Institute for Applied Cancer Science; asli_muvaffak@dfci.harvard.edu ywang@tesarobio.com.
Unlabelled:
TBK1 (TANK-binding kinase 1) is a noncanonical IκB protein kinase that phosphorylates and activates downstream targets such as IRF3 and c-Rel and, mediates NF-κB activation in cancer. Previous reports demonstrated synthetic lethality of TBK1 with mutant KRAS in non-small cell lung cancer (NSCLC); thus, TBK1 could be a novel target for treatment of KRAS-mutant NSCLC. Here, the effect of TBK1 on proliferation in a panel of cancer cells by both genetic and pharmacologic approaches was evaluated. In KRAS-mutant cancer cells, reduction of TBK1 activity by knockdown or treatment with TBK1 inhibitors did not correlate with reduced proliferation in a two-dimensional viability assay. Verification of target engagement via reduced phosphorylation of S386 of IRF3 (pIRF3(S386)) was difficult to assess in NSCLC cells due to low protein expression. However, several cell lines were identified with high pIRF3(S386) levels after screening a large panel of cell lines, many of which also harbor KRAS mutations. Specifically, a large subset of KRAS-mutant pancreatic cancer cell lines was uncovered with high constitutive pIRF3(S386) levels, which correlated with high levels of phosphorylated S172 of TBK1 (pTBK1(S172)). Finally, TBK1 inhibitors dose-dependently inhibited pIRF3(S386) in these cell lines, but this did not correlate with inhibition of cell growth. Taken together, these data demonstrate that the regulation of pathways important for cell proliferation in some NSCLC, pancreatic, and colorectal cell lines is not solely dependent on TBK1 activity.
Implications:
TBK1 has therapeutic potential under certain contexts and phosphorylation of its downstream target IRF3 is a biomarker of TBK1 activity.
Insights
TANK-binding kinase 1 (TBK1) inhibition did not reduce proliferation in KRAS-mutant cancer cells. Phosphorylation of IRF3 indicates TBK1 activity but does not correlate with growth inhibition in these models.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- TBK1 (TANK-binding kinase 1) is a kinase involved in NF-κB activation and has shown synthetic lethality with KRAS mutations in non-small cell lung cancer (NSCLC).
- This suggests TBK1 as a potential therapeutic target for KRAS-mutant NSCLC.
Purpose of the Study:
- To investigate the effect of TBK1 inhibition on cancer cell proliferation using genetic and pharmacologic approaches.
- To assess TBK1 activity and its correlation with proliferation in various cancer cell lines, particularly those with KRAS mutations.
Main Methods:
- Evaluated TBK1's effect on proliferation in cancer cell lines via knockdown and inhibitor treatments.
- Screened cell lines for phosphorylated IRF3 (pIRF3(S386)) as a marker of TBK1 activity.
- Assessed TBK1 inhibitor efficacy on pIRF3(S386) and cell growth.
Main Results:
- TBK1 inhibition did not consistently reduce proliferation in KRAS-mutant cancer cells.
- High constitutive pIRF3(S386) levels were observed in a subset of KRAS-mutant pancreatic cancer cell lines.
- TBK1 inhibitors reduced pIRF3(S386) but did not correlate with inhibited cell growth in these lines.
Conclusions:
- TBK1 activity is not solely responsible for regulating proliferation pathways in all tested NSCLC, pancreatic, and colorectal cancer cell lines.
- Phosphorylation of IRF3 serves as a biomarker for TBK1 activity.
- TBK1 may have therapeutic potential in specific contexts, but its role in proliferation requires further investigation.
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against...
NF-κB-dependent Signaling Pathway
NF-κB-dependent Signaling Mechanism
The...
PI3K/mTOR/AKT Signaling Pathway
mTOR Signaling and Cancer Progression
The mTOR pathway or the...

