| 1995 |
RSK3 (RPS6KA2) is a serine/threonine kinase that, upon growth factor, serum, or phorbol ester stimulation, undergoes autophosphorylation and phosphorylates protein substrates including c-Fos and histones. Unlike RSK1, RSK3 kinase activity was NOT activated by in vitro incubation with ERK2/MAP kinase, suggesting a distinct upstream activator. RSK3 is inactivated by protein phosphatase 2A in vitro. |
Epitope-tagged expression in COS cells, in vitro kinase assay, in vitro phosphatase treatment, comparison with RSK1 |
Molecular and cellular biology |
High |
7623830
|
| 1995 |
Endogenous RSK3 undergoes serum-stimulated nuclear translocation in HeLa cells, consistent with a unique N-terminal putative nuclear localization signal encoded by RSK3. |
Immunofluorescence with affinity-purified RSK3 antibodies in HeLa cells |
Molecular and cellular biology |
Medium |
7623830
|
| 2006 |
Re-expression of RPS6KA2 in ovarian cancer cell lines suppressed colony formation, reduced proliferation, caused G1 arrest, increased apoptosis, and reduced levels of phosphorylated ERK. Conversely, siRNA knockdown of RPS6KA2 in 41M cells had the opposite effects, consistent with a tumor suppressor role downstream of the MAPK pathway. |
Transient transfection re-expression, colony formation assay, flow cytometry (cell cycle/apoptosis), Western blot for pERK, siRNA knockdown |
Oncogene |
Medium |
16878154
|
| 2013 |
RSK3 (RPS6KA2) acts downstream of EGFR/RAS/MEK/ERK signaling in pancreatic cancer cells and is activated by EGF independently of KRAS mutation status. RSK3 activates ribosomal protein S6 as a downstream effector, and its overexpression rescues cells from erlotinib- and gemcitabine-induced apoptosis. |
siRNA knockdown, overexpression, kinome-wide siRNA screen, Western blot for pathway components, apoptosis assays, pharmacological inhibition (BI-D1870) |
Neoplasia (New York, N.Y.) |
Medium |
24403857
|
| 2013 |
Overexpression of RSK3 (RPS6KA2) supports cell proliferation and attenuates apoptosis upon PI3K/mTOR inhibition in breast cancer, partly through upregulation of protein translation. MEK or RSK inhibitors can overcome this resistance, placing RSK3 in the RAS-MAPK pathway as a parallel survival route to PI3K signaling. |
Overexpression in breast cancer cell lines, in vitro proliferation/apoptosis assays, in vivo xenograft models, pharmacological inhibition of MEK and RSK |
The Journal of clinical investigation |
High |
23635776
|
| 2016 |
RSK3 is required for concentric cardiac myocyte hypertrophy downstream of ERK1/2 signaling in an activated RAF1 (Noonan syndrome) mouse model. RSK3 knockout prevents RAF1(L613V)-dependent concentric myocyte growth and attenuates cardiac hypertrophy, placing RSK3 as an ERK1/2 effector in pathological cardiac remodeling. |
RSK3 knockout mice crossed with Raf1(L613V) knock-in mice; cardiac morphometry; immunohistochemistry |
Journal of molecular and cellular cardiology |
High |
26940993
|
| 2020 |
RSK3 interacts with RIP3 (receptor-interacting protein 3) as shown by co-immunoprecipitation, and acts as an upstream regulator of RIP3 phosphorylation during oxygen-glucose deprivation-induced necroptosis in retinal ganglion cells. RSK inhibition (LJH685) or RSK3 siRNA downregulated RIP3 phosphorylation; RIP3 overexpression did not affect RSK3 expression, establishing a directional RSK3→RIP3 regulatory relationship. |
Co-immunoprecipitation, siRNA knockdown, RSK inhibitor (LJH685), Western blot for pRIP3, computer simulation, in vivo intraocular pressure model |
Journal of anatomy |
Medium |
32162697
|
| 2020 |
RSK3 phosphorylates ribosomal protein S6 (rpS6) in cartilage stem/progenitor cells (CSPC) to promote their proliferation. RSK3 expression positively correlates with cartilage repair capacity across mouse strains and RSK3-deficient mice show aggravated cartilage damage in OA models. |
RSK3 knockout mice, chemical enhancement of RSK3 expression, CSPC proliferation assays, transcriptional profiling, in vivo OA model |
Theranostics |
Medium |
32550912
|
| 2020 |
ERK1/2 and ERK5 kinases phosphorylate and activate RSK3 (RPS6KA2) downstream of EGFR-MEK1/2/5 signaling, leading to enrichment of activated RSK3 that promotes resistance to BET inhibitors (JQ1) in cancer cells. |
Western blot for RSK3 phosphorylation, MEK/ERK inhibitors, siRNA knockdown of JunD/RSK3, pharmacological rescue experiments |
Nature communications |
Medium |
31937753
|
| 2021 |
RSK3 binds IκBα as a novel protein-protein interaction partner, identified by kinase library screen and cell-based distribution assay. Active RSK3 phosphorylates IκBα, and a small-molecule inhibitor of the RSK3/IκBα complex reduces breast cancer cell proliferation and increases apoptosis. |
Kinase library screen, mammalian two-hybrid (MTH) assay, cell-based distribution assay, cell proliferation/colony formation assay, FACS apoptosis assay |
Cancers |
Medium |
34198590
|
| 2022 |
RSK3 promotes cell survival in TNBC by phosphorylating BAD at Ser112. MYSM1 overexpression leads to RSK3 inactivation and decreased BAD phosphorylation, increasing cisplatin-induced apoptosis. This places RSK3 upstream of the BAD pro-survival pathway in TNBC. |
Overexpression/knockdown of MYSM1 in TNBC cell lines, Western blot for pBAD(Ser112), apoptosis assays, cisplatin treatment |
Cell death discovery |
Medium |
35217648
|
| 2023 |
BET inhibition in SCLC leads to RSK3 upregulation, which promotes cell survival by activating the TSC2-mTOR-p70S6K1-BAD cascade. mTOR inhibition blocks this protective RSK3 signaling and augments BET inhibitor-induced apoptosis in vitro and in vivo. |
Drug combination screens, xenograft models, Western blot for pathway components (TSC2, mTOR, p70S6K1, BAD), apoptosis assays |
JCI insight |
Medium |
36883564
|
| 2023 |
RSK3 expression is suppressed by TGFβ in a SMAD3-dependent manner, and constitutive RSK3 expression rescues SMAD3-induced senescence in primary human mammary epithelial cells. RSK3 inhibits the NF-κB pathway by decreasing proteasome-mediated IκBα degradation, thereby switching cell fate from TGFβ-induced senescence to malignant EMT progression. |
Retroviral transduction, kinase library screen, FLAG-IP coupled to mass spectrometry proteomics, proteasome activity assays, Western blot, immunofluorescence, RNA microarray/GSEA, murine intraductal xenografts |
Journal of experimental & clinical cancer research : CR |
High |
38008756
|
| 2025 |
RPS6KA2 interacts with PCSK9 within the cytoplasmic compartment of colorectal cancer cells and suppresses PCSK9 and MAPK signaling pathway. RPS6KA2 inhibition (BI-D1780) increases PCSK9 and MAPK pathway protein expression, while MAPK inhibitors/stimulators do not affect RPS6KA2 or PCSK9 expression, placing RPS6KA2 upstream of PCSK9-MAPK in CRC. |
Co-immunoprecipitation/interaction assay, RPS6KA2 inhibitor (BI-D1780), MAPK modulation, Western blot, in vivo tumor growth/metastasis assays |
Cancer treatment and research communications |
Medium |
40112524
|
| 2025 |
RPS6KA2 inhibits autophagy by modulating the PI3K-AKT-mTOR signaling pathway in ovarian cancer cells, thereby increasing sensitivity to cisplatin. RPS6KA2 also facilitates ferroptosis. miR-512-3p negatively regulates RPS6KA2, driving cisplatin resistance through its suppression. |
Western blot for PI3K-AKT-mTOR components, autophagy flux assays, autophagosome visualization, ferroptosis parameters (iron content, GSH, ROS, mitochondrial membrane potential), in vivo xenograft experiments |
Oncology research |
Medium |
41502518
|