| 1998 |
POSH (SH3RF1) was identified as a direct target of activated Rac GTPase via yeast two-hybrid selection. POSH contains four SH3 domains and its ectopic expression activates the JNK pathway and induces nuclear translocation of NF-κB. Overexpression in fibroblasts induces apoptosis, establishing POSH as a Rac effector scaffold linking Rac to JNK/NF-κB signaling. |
Yeast two-hybrid selection, ectopic overexpression with JNK/NF-κB activity assays |
The EMBO journal |
High |
9482736
|
| 2003 |
POSH acts as a scaffold for a multiprotein JNK apoptotic complex. POSH binds GTP-Rac1 and also binds mixed-lineage kinases (MLKs) both in vivo and in vitro, and complexes with MKK4, MKK7, and JNKs. POSH overexpression promotes apoptotic neuronal death suppressed by dominant-negative MLKs, MKK4/7, and c-Jun; POSH antisense oligonucleotides and siRNA suppress c-Jun phosphorylation and neuronal apoptosis induced by NGF withdrawal. |
Co-immunoprecipitation (in vivo and in vitro binding), dominant-negative epistasis, antisense oligonucleotides, siRNA knockdown in primary neurons |
The EMBO journal |
High |
12514131
|
| 2003 |
Akt2 negatively regulates the POSH-MLK-JNK signaling complex. POSH binds Akt2; a POSH W489A mutant unable to bind Akt2 shows enhanced MLK3 binding and increased JNK activation. Inhibition of PI3K/Akt signaling increases MLK3 association with POSH. Akt2 phosphorylates MLK3 within the POSH complex, promoting complex disassembly and JNK pathway downregulation. |
Co-immunoprecipitation, mutagenesis (POSH W489A), PI3K/Akt inhibitor treatment, kinase assay |
The Journal of biological chemistry |
High |
14504284
|
| 2005 |
Human POSH (hPOSH) is localized to the trans-Golgi network and is essential for HIV-1 Gag targeting to the plasma membrane. siRNA silencing of hPOSH ablates virus secretion and Gag plasma membrane localization. Reintroduction of native but not a RING finger mutant hPOSH restores virus release, indicating that POSH's E3 ubiquitin ligase (RING finger) activity is required for protein sorting at the trans-Golgi network. |
siRNA knockdown, RING finger mutant complementation, confocal microscopy, virus release assays |
Proceedings of the National Academy of Sciences of the United States of America |
High |
15659549
|
| 2005 |
Siah1 is a binding partner of POSH and promotes apoptosis by activating the JNK pathway through POSH. Siah1's E3 ligase activity is required for its proapoptotic function. Apoptotic stimuli stabilize Siah1 protein in a JNK pathway-dependent manner requiring interaction with POSH; phosphorylation of Siah1 at tyrosines 100 and 126 enhances this stabilization, forming a positive feedback loop. |
Yeast two-hybrid, co-immunoprecipitation, siRNA knockdown, mutagenesis of Siah1 phosphorylation sites |
The Journal of biological chemistry |
High |
16230351
|
| 2005 |
POSH is an E3 ubiquitin ligase for Hrs (hepatocyte growth factor-regulated tyrosine kinase substrate) on early endosomes. POSH colocalizes with Hrs on early endosomes via interaction with POSH's two C-terminal SH3 domains. The RING domain of POSH regulates Hrs stability through ubiquitin-proteasomal degradation. JNK1 binding to POSH reduces POSH-catalyzed ubiquitination of Hrs, indicating reciprocal regulation between POSH's scaffold and E3 ligase activities. |
Co-immunoprecipitation, confocal colocalization, ubiquitination assay, domain mapping |
Cellular signalling |
Medium |
16084064
|
| 2005 |
POSH knockdown in rat hippocampus is neuroprotective after cerebral ischemia by reducing activation of the MLK3-MKK4-JNK pathway. Co-immunoprecipitation showed enhanced interactions of MLK3, MKK4, and phospho-JNKs with POSH during reperfusion. POSH antisense oligodeoxynucleotides reduced POSH protein, decreased these interactions, attenuated JNK pathway activation, and increased neuronal survival in CA1. |
Co-immunoprecipitation, antisense oligodeoxynucleotides (intracerebroventricular infusion), immunohistochemistry, western blot |
Journal of neurochemistry |
Medium |
16248889
|
| 2006 |
POSH and JIP scaffold proteins directly associate to form a POSH-JIP apoptotic complex (PJAC) containing all kinase components of the apoptotic JNK pathway (MLKs, MKK4/7, JNKs). This POSH-JIP interaction is required for JNK activation and apoptotic cell death in response to apoptotic stimuli. |
Co-immunoprecipitation, direct binding assays, dominant-negative interference, epistasis |
The Journal of biological chemistry |
High |
16571722
|
| 2006 |
Nix (a pro-apoptotic BH3-only protein) directly interacts with POSH via yeast two-hybrid and co-immunoprecipitation. Nix promotes apoptosis and JNK/c-Jun activation in a POSH-dependent manner; in cells lacking POSH, Nix does not promote JNK/c-Jun phosphorylation or apoptosis. Nix and POSH mutually stabilize each other. |
Yeast two-hybrid, co-immunoprecipitation, in vitro binding, loss-of-function (POSH-negative cells), overexpression with JNK/apoptosis readout |
The Journal of biological chemistry |
Medium |
17095503
|
| 2006 |
Drosophila POSH forms a complex with ALG-2 and ALIX in a calcium-dependent manner. Overexpression of ALG-2 or ALIX induces ectopic JNK activation, and POSH co-overexpression enhances these phenotypes, suggesting POSH/ALG-2/ALIX function together in regulation of the JNK pathway. |
Co-immunoprecipitation, Drosophila genetic overexpression, JNK activation assay |
FEBS letters |
Medium |
16698022
|
| 2007 |
POSH is an E3 ubiquitin ligase that regulates calcium homeostasis through spatial control of Herp. Herp is both a substrate and activator of POSH; Herp-mediated POSH activation requires the Ubl domain and promotes K63-linked polyubiquitination exclusively. Calcium perturbation (thapsigargin) induces POSH-dependent K63 ubiquitination of Herp which is required for Herp relocalization from trans-Golgi network to ER. POSH overexpression attenuates while dominant-negative POSH or siRNA enhances thapsigargin-induced calcium burst. |
In vitro ubiquitination assay, confocal microscopy, dominant-negative overexpression, siRNA, K63-linkage-specific ubiquitination assay |
The Journal of cell biology |
High |
17420289
|
| 2007 |
POSH is a direct substrate for phosphorylation by Akt in vivo and in vitro. Serine 304 within the Rac-binding domain is a major Akt phosphorylation site. Phosphorylation at S304 reduces POSH binding to activated Rac, and phosphomimetic mutations S304D and S304E reduce both Rac binding and POSH-induced apoptosis. |
In vitro kinase assay, site-directed mutagenesis (S304D, S304E), co-immunoprecipitation, apoptosis assay |
The Journal of biological chemistry |
High |
17535800
|
| 2008 |
POSH negatively regulates axon outgrowth via its third SH3 domain interaction with the actomyosin regulatory protein Shroom3. POSH RNAi enhances axon outgrowth; complementation requires the third SH3 domain. Shroom3 recruits Rho kinase to inhibit process outgrowth, and myosin II inhibition reverses the POSH/Shroom3 RNAi phenotype, indicating POSH-Shroom3 inhibit outgrowth through the actin-myosin network. |
RNAi knockdown in primary neurons, SH3 domain complementation analysis, dominant-negative approaches, myosin II inhibition |
Molecular biology of the cell |
Medium |
18829867
|
| 2009 |
POSH acts as an E3 ubiquitin ligase for ROMK1 (Kir1.1) potassium channels, stimulating their ubiquitination and clathrin-independent, dynamin-dependent endocytosis. POSH binds ROMK1 at its N-terminus. POSH overexpression decreases surface expression and potassium currents in a RING-domain-dependent manner; POSH deltaRING mutant abolishes both ubiquitination and current inhibition. In vitro ubiquitination assays confirm POSH E3 activity toward ROMK. |
Co-immunoprecipitation, GST pulldown, in vitro ubiquitination assay, biotinylation surface expression assay, electrophysiology, RING domain deletion mutant |
The Journal of biological chemistry |
High |
19710010
|
| 2009 |
POSH interacts with ALIX and functions as its E3 ubiquitin ligase in human cells, inducing K63-linked ubiquitination of ALIX on multiple lysine residues in vivo and in vitro. Wild-type POSH but not the RING finger mutant (POSHV14A) enhances ALIX-mediated HIV-1 YPXnL-dependent virus release. This ubiquitination does not destabilize ALIX, suggesting a regulatory function. |
Co-immunoprecipitation, in vitro ubiquitination assay, RING finger mutant, virus release assay |
BMC biochemistry |
Medium |
19393081
|
| 2010 |
POSH is required for normal Drosophila embryogenesis and epidermal dorsal closure. In posh null mutants, F-actin accumulation and adherens junction formation are defective during dorsal closure. POSH acts downstream of dTAB2 and upstream of dTAK1 in the TNF (Eiger)-JNK signaling pathway. |
Drosophila null mutant analysis, genetic epistasis, F-actin staining, adherens junction imaging |
Journal of genetics and genomics |
Medium |
20933214
|
| 2011 |
Sh3rf2 (POSHER), a homologue of POSH, promotes proteasomal degradation of POSH through a mechanism requiring the RING domains of both proteins. Sh3rf2 knockdown stabilizes POSH protein, activates JNK signaling, and causes apoptosis of neuronal cells. Apoptotic stimuli rapidly decrease Sh3rf2 levels, thereby stabilizing POSH and activating JNK-driven death. |
siRNA knockdown of Sh3rf2 and POSH, proteasome inhibitor assays, dominant-negative RING mutants, western blot for protein stability |
The Journal of biological chemistry |
Medium |
22128169
|
| 2011 |
POSH and Siah2 physically interact (confirmed by yeast two-hybrid and co-immunoprecipitation); the RPxAxVxP motif in POSH's spacer region (aa 601-607) is the Siah2 binding site. Both POSH and Siah2 mediate resistance to death-receptor (TRAIL/Fas ligand)-induced caspase-8 activation in prostate cancer cells; POSH protein levels (not solely its E3 activity) are critical for maintaining viability. |
siRNA screen, co-immunoprecipitation, yeast two-hybrid domain mapping, caspase-8 activity assay |
Molecular cancer |
Medium |
21586138
|
| 2012 |
POSH is concentrated in the proximal cytoplasmic dilation of the leading process (PCDLP) of migratory neocortical neurons and is essential for neuronal migration in vivo. POSH knockdown impairs PCDLP formation, centrosome translocation, and nucleokinesis. POSH colocalizes with F-actin and activated Rac1; its knockdown impairs F-actin assembly and delocalizes activated Rac1. Disruption of Rac1 activity also disrupts F-actin assembly and PCDLP formation. |
In utero electroporation knockdown, confocal imaging, F-actin staining, activated Rac1 localization |
Cell reports |
High |
22959435
|
| 2013 |
POSH and JIP-1 form a multiprotein scaffold network (POSH/JIP-1) in CD8+ T cells that specifically regulates TCR-mediated JNK1 (not JNK2) activation. Disruption of the POSH/JIP-1 complex impairs JNK1 activation, reduces c-Jun, T-bet, and Eomesodermin induction, and results in defective proliferation, cytokine expression, and tumor control. |
Dominant-negative disruption of POSH/JIP-1 complex, immunoblotting for JNK1/2 activation, adoptive transfer tumor models |
European journal of immunology |
Medium |
23963642
|
| 2015 |
Drosophila POSH and TAK1 regulate synaptic growth downstream of Rab8 at the neuromuscular junction. In Rab8 mutant synapses, POSH (as an endosomal JNK scaffold) and TAK1 (a JNK kinase kinase) are required for JNK/AP-1 overactivation that drives synaptic overgrowth. Recycling endosomes serve as a key compartment for POSH-mediated synaptic growth regulation. |
Drosophila genetic screen, mutant analysis, genetic epistasis, JNK/AP-1 signaling assays |
The Journal of cell biology |
Medium |
25800055
|
| 2015 |
POSH is an intracellular signal transducer for the axon outgrowth inhibitor Nogo66, acting downstream of the PirB receptor. POSH RNAi in cortical and cerebellar granule neurons releases cells from myelin/Nogo66 inhibition. Leucine zipper kinase (LZK) operates downstream of NogoA/PirB in a POSH-dependent manner; Shroom3 is also a POSH-associated effector in this pathway. |
RNAi knockdown in cortical/cerebellar neurons, suppression analysis (LZK epistasis), process outgrowth assays with Nogo66/myelin |
The Journal of neuroscience |
Medium |
20926658
|
| 2016 |
POSH regulates CD4+ T cell differentiation and survival through a Tak1-dependent mechanism. Disruption of POSH in CD4+ T cells leads to loss of Tak1-dependent JNK1/2 activation, decreased survival, and skewing toward Th2 differentiation. The POSH scaffold complex composition and POSH post-translational modifications differ between CD4+ and CD8+ T cells, indicating cell-type-specific mechanisms. |
POSH complex disruption, immunoblotting for JNK1/2 and Tak1, flow cytometry for T cell fate, apoptosis assays |
Journal of immunology |
Medium |
27084103
|
| 2017 |
SH3RF1 (POSH) is an E3 ubiquitin ligase that acts as a negative post-translational regulator of FAT1 cadherin protein levels. Identified by yeast two-hybrid screen against FAT1 cytoplasmic tail juxtamembrane region. siRNA-mediated ablation of SH3RF1 increases cellular FAT1 protein levels and stabilizes FAT1 at the cell surface, while SH3RF1 overexpression reduces FAT1 levels. |
Yeast two-hybrid, siRNA knockdown, overexpression, cell surface expression assay |
FEBS letters |
Medium |
28129444
|
| 2017 |
POSH participates in epilepsy by increasing surface expression of NMDA receptors. Co-immunoprecipitation demonstrated POSH-NMDAR1 interaction. POSH overexpression increased while knockdown decreased mEPSCs and NMDAR-mediated currents, and altered surface NMDAR1 expression in hippocampus of epileptic mice. |
Co-immunoprecipitation, lentiviral knockdown/overexpression, whole-cell patch-clamp electrophysiology, western blot for surface NMDAR1 |
Expert opinion on therapeutic targets |
Medium |
29057721
|
| 2018 |
POSH is a key regulator of Hippo signaling in Drosophila through ubiquitin-mediated degradation of Expanded (Ex). POSH binds the C-terminal of Ex and is essential for Crumbs-induced ubiquitination and degradation of Ex. POSH overexpression synergizes with loss of Kibra to induce tissue overgrowth and upregulation of Hippo target genes; POSH knockdown impedes Yorkie-dependent intestinal stem cell renewal. |
Genetic epistasis in Drosophila, co-immunoprecipitation, ubiquitination assay, tissue overgrowth/reporter assays |
Proceedings of the National Academy of Sciences of the United States of America |
High |
29440430
|
| 2018 |
POSH/SH3RF1 mediates neuropathology in Drosophila and mammalian models of CHMP2BIntron5-associated frontotemporal dementia. CHMP2BIntron5 expression causes aberrant, AKT-dependent accumulation of POSH throughout the nervous system. POSH knockdown is neuroprotective, alleviating neuronal morphology defects, behavioral deficits, premature lethality, dendritic collapse, and reducing elevated JNK/apoptotic markers. |
Drosophila and rat primary neuron models, POSH knockdown, AKT inhibition, JNK/apoptotic marker quantification, behavioral assays |
Human molecular genetics |
Medium |
29432529
|
| 2022 |
POSH directly interacts with PSD-95 and SHANK2/3 at excitatory synapses, assembling the NMDAR/PSD-95/POSH/SHANK complex. In POSH conditional knockout mice, synaptic clustering of the NMDAR/PSD-95/SHANK complex is disrupted, accompanied by abnormal dendritic spine development, impaired glutamatergic transmission, and autism-like behaviors (social deficits, repetitive behaviors, learning/memory impairment). |
Co-immunoprecipitation, POSH conditional knockout mice, electrophysiology (glutamatergic transmission), dendritic spine imaging, behavioral assays |
Cell reports |
High |
35385725
|
| 2023 |
SH3RF1 mediates K63-linked ubiquitination of snakehead vesiculovirus phosphoprotein (P) specifically at lysine 264, facilitating viral replication and maintaining P protein stability. Identified through RNAi screening of cellular E3 ligases; SH3RF1 interacted with and ubiquitinated SHVV-P, and K264R mutation abolished K264 ubiquitination and reduced SHVV replication. |
4D label-free ubiquitome analysis, RNAi screening, co-immunoprecipitation, ubiquitination assay, site-directed mutagenesis (K264R), virus replication assay |
International journal of biological macromolecules |
Medium |
37979762
|
| 2023 |
Bruce (E2 ubiquitin-conjugating enzyme) synergizes with POSH (E3 ligase) to regulate ubiquitination-mediated degradation of Expanded (Ex) in Drosophila Hippo signaling. Bruce acts upstream of Ex but in parallel with canonical Hippo-Warts cascade. Loss of Bruce suppresses POSH-mediated wing overgrowth and Hippo target gene expression. |
Drosophila genetic screen, genetic epistasis, ubiquitination assay, tissue overgrowth quantification |
Cell death & disease |
Medium |
37699871
|
| 2026 |
POSH loss reduces SRC postsynaptic enrichment and weakens SRC-NMDAR-PSD-95 complex interactions. NMDAR activation triggers RAC1-GTP-dependent recruitment of POSH to the membrane, leading to NMDAR-induced SRC activation. Prolonged NMDAR activation depletes both POSH and SRC, establishing a negative feedback loop that prevents NMDAR hyperexcitation. POSH acts as a molecular rheostat integrating RAC1-driven membrane targeting with SRC activation. |
POSH conditional knockout mice, co-immunoprecipitation, synaptic fractionation, RAC1-GTP pulldown, SRC activity assays, live imaging |
iScience |
Medium |
42058917
|
| 2025 |
POSH is essential for coordinating JNK, NF-κB, and Akt signaling in CD8+ T cells. POSH conditional knockout (POSHfl/fl CD4-Cre and GzmB-Cre) mice show impaired induction of all three pathways, resulting in reduced differentiation into short-lived effector cells, delayed proliferation, and decreased survival of memory precursor cells during contraction phase. |
Conditional T cell POSH knockout reporter mouse models, flow cytometry, immunoblotting, adoptive transfer with VSV-OVA infection |
Frontiers in immunology |
Medium |
40672960
|