| 2011 |
Praja2 (PJA2) forms a stable complex with the regulatory (R) subunits of PKA, is phosphorylated by PKA, and ubiquitylates R subunits, promoting their proteolysis upon cAMP elevation. This sustains catalytic subunit activity and is required for efficient nuclear cAMP signaling and PKA-mediated long-term memory. |
Co-immunoprecipitation, ubiquitylation assays, in vivo phosphorylation, loss-of-function with behavioral readout |
Nature cell biology |
High |
21423175
|
| 2013 |
Praja2 ubiquitylates and degrades MOB1 (Mob), a core component of NDR/LATS kinase complexes and positive regulator of the Hippo tumor-suppressor cascade, thereby attenuating Hippo signaling and sustaining glioblastoma growth in vivo. |
Co-immunoprecipitation, ubiquitylation assays, in vivo degradation assays, in vivo xenograft/tumor models |
Nature communications |
High |
23652010
|
| 2014 |
PJA2 forms a complex with the AMPK-related kinase SIK2 and the CDK5 activator p35 (CDK5R1). Following glucose stimulation, SIK2 phosphorylates p35 at Ser91, triggering p35 ubiquitylation by PJA2, which promotes insulin secretion. This SIK2-p35-PJA2 axis is essential for β-cell functional compensation and glucose homeostasis. |
Affinity purification-mass spectrometry, co-immunoprecipitation, in vitro ubiquitylation assay, site-directed mutagenesis, β-cell-specific knockout mouse model |
Nature cell biology |
High |
24561619
|
| 2016 |
Praja2 acts as the E3 ligase that ubiquitylates KSR1, a scaffold protein of the Ras/MAP kinase pathway, leading to its polyubiquitination and proteolytic degradation, thereby attenuating ERK1/2 signaling. This mechanism controls cancer cell growth and maintenance of pluripotency in mouse embryonic stem cells. |
Co-immunoprecipitation, in vivo ubiquitylation assay, loss-of-function/overexpression in cancer cells and embryonic stem cells |
Cell death & disease |
High |
27195677
|
| 2017 |
Praja2 ubiquitylates MFHAS1 via pulldown-confirmed direct binding, but promotes accumulation of ubiquitylated MFHAS1 without degrading it (non-degradative ubiquitylation). This ubiquitylation positively regulates TLR2-mediated JNK/p38 pathway activation and promotes M1 macrophage polarization. |
In vitro pulldown, co-immunoprecipitation, in situ immunostaining, functional macrophage polarization assays |
Cell death & disease |
Medium |
28471450
|
| 2017 |
PJA2 ubiquitinates the HIV-1 Tat protein in a non-degradative manner at variable lysine residues with atypical polyubiquitin chain linkages, specifically regulating the transcription elongation step. Proper ubiquitin chain assembly by PJA2 requires that Tat first binds its P-TEFb cofactor. |
RNAi knockdown, in vivo ubiquitylation assay, site-directed mutagenesis of ubiquitin acceptor lysines, HIV transcription elongation assays, viral replication assays |
Scientific reports |
Medium |
28345603
|
| 2018 |
Pja2 binds TCF/LEF1 transcription factors and ubiquitylates them, reducing their protein levels and thereby downregulating Wnt/β-catenin signaling activity. |
Co-immunoprecipitation, ubiquitylation assay, overexpression/knockdown with reporter assays for Wnt signaling |
International journal of stem cells |
Medium |
30021253
|
| 2021 |
Praja2 assembles a centrosomal complex with TBC1D31, PKA, and the ciliopathy protein OFD1. Upon GPCR-cAMP stimulation, PKA phosphorylates OFD1 at Ser735, promoting OFD1 proteolysis through the praja2-ubiquitin-proteasome system. This pathway is essential for primary ciliogenesis, and a non-phosphorylatable OFD1 mutant impairs cilium morphology. Genetic disruption of TBC1D31/praja2/OFD1 axis impairs ciliogenesis in vivo in Medaka fish. |
Co-immunoprecipitation, in vivo ubiquitylation assay, site-directed mutagenesis (OFD1 S735A), in vivo Medaka fish ciliogenesis model, cycloheximide chase |
The EMBO journal |
High |
33934390
|
| 2021 |
Praja2 promotes ubiquitylation and degradation of KSR1 in gastric cancer cells, inhibiting MEK-ERK signaling and suppressing tumor cell proliferation, migration, and invasion in vitro and tumor growth in vivo. |
Co-immunoprecipitation, ubiquitylation assay, overexpression/knockdown in cancer cells, in vivo xenograft model, pharmacological proteasome inhibition (MG132) |
Aging |
Medium |
33461174
|
| 2021 |
ELK4 transcriptionally activates KDM5A, which removes H3K4me3 marks from the PJA2 promoter to suppress PJA2 expression. Reduced PJA2 leads to accumulation of KSR1 (its ubiquitination substrate), promoting M2 macrophage polarization and gastric cancer progression. |
Dual luciferase reporter, ChIP assay, co-immunoprecipitation, cycloheximide chase for KSR1 stability, gain/loss-of-function assays, xenograft model |
Journal of translational medicine |
Medium |
34372882
|
| 2024 |
PJA2 interacts with TYK2 and JAK1 (identified by TurboID proximity labeling and confirmed functionally), promotes their non-degradative ubiquitination, and limits activating phosphorylation of TYK2, thereby restraining downstream STAT1/STAT2 signaling in the type I interferon pathway. |
TurboID proximity labeling coupled with affinity purification-mass spectrometry, RNAi functional screen, E3 ligase activity assay, phosphorylation analysis |
Nature communications |
Medium |
38802340
|
| 2024 |
Praja2 forms a complex with the AP2 adapter complex, ubiquitylates it, and contributes to receptor endocytosis and clearance. Downregulation of praja2 in RCC by oncogenic miRNAs impairs endocytosis and clearance of EGFR, amplifying downstream mitogenic signaling. Genetic ablation of praja2 in mice upregulates EGFR and VEGFR and induces kidney epithelial and vascular alterations. |
Co-immunoprecipitation, ubiquitylation assay, in vivo endocytosis assay, genetic mouse knockout, oncomiR-mediated knockdown |
Communications biology |
Medium |
38379085
|
| 2025 |
Praja2 forms a multimeric complex with the RNA helicase DDX6, which inhibits translation of target RNAs within P-bodies. GPCR-cAMP signaling induces non-proteolytic polyubiquitylation of DDX6 by praja2, promoting P-body assembly and translational repression. Genetic inactivation of praja2 or expression of an ubiquitylation-defective DDX6 mutant suppresses P-body assembly and promotes GBM growth. |
Co-immunoprecipitation, in vivo ubiquitylation assay, ubiquitylation-defective mutant, polysome profiling, genetic inactivation with cellular phenotype (senescence, growth arrest) |
EMBO reports |
Medium |
40148504
|
| 2025 |
PJA2 recognizes HDAC2 via its RING-B-box domain, binds the N-terminal of HDAC2, and facilitates ubiquitination at lysine 90 (K90) of HDAC2, leading to its degradation. PJA2-mediated degradation of HDAC2 counteracts transcriptional repression of the IFIT family, suppressing colorectal cancer progression. |
Co-immunoprecipitation, proximity ligation assay, chromatin immunoprecipitation, RNA-seq, domain mapping, site-directed mutagenesis (K90), in vivo AOM/DSS mouse model |
Advanced science |
Medium |
39928532
|
| 2025 |
PJA2 ubiquitinates and degrades CHRM3 (muscarinic acetylcholine receptor 3), suppressing downstream TGFβ-pSMAD3 signaling and tumor cell progression in diffuse-type gastric cancer. A catalytically dead ΔRING mutant of PJA2 fails to suppress CHRM3-driven tumor growth. |
Mass spectrometry, co-immunoprecipitation, ubiquitylation assay, degradation assay, RING-dead mutant, patient-derived organoids, xenograft model |
British journal of cancer |
Medium |
40858831
|
| 2026 |
PJA2 mediates K48-linked polyubiquitination and subsequent proteasomal degradation of p53, thereby attenuating its tumor-suppressive function in lung adenocarcinoma. ERCC6L activates this PJA2-p53 axis to promote EMT and metastasis. |
Co-immunoprecipitation, ubiquitylation assay (K48-linkage specified), in vivo tumor/metastasis model with ERCC6L knockout |
Respiratory research |
Low |
42063149
|