| 2004 |
p60TRP (GPRASP3) contains a basic helix-loop-helix (bHLH) domain and physically interacts with Ran-binding protein 5 (RanBP5) and protein phosphatase 2A (PP2A), as demonstrated by yeast-two-hybrid and Western blotting analyses. It also influences NNT1 and p48ZnF signaling and is downregulated in the brain of Alzheimer's disease subjects. |
Bioinformatics, Western blotting, yeast two-hybrid system, PCR, fluorescence microscopy |
Journal of cellular biochemistry |
Medium |
15034937
|
| 2004 |
p60TRP was identified as a potential rescue factor against cell death induced by p18AβrP (p18-amyloid-beta-responsive protein) in PC12 cells, using a death trap method based on cDNA subtraction analysis. |
cDNA subtraction analysis, death trap method, PC12 cell overexpression |
Nihon yakurigaku zasshi. Folia pharmacologica Japonica |
Low |
15333986
|
| 2004 |
p60TRP-expressing cells compared with control cells during apoptosis showed differential expression; cDNA subtraction analysis identified p48ZnF (a zinc-finger protein) as upregulated in response to p60TRP expression context, suggesting p60TRP influences neuronal survival signaling linked to p48ZnF. |
cDNA subtraction analysis, PCR |
Experimental & molecular medicine |
Low |
15150441
|
| 2011 |
Overexpression of p60TRP in neural stem cells (NSCs) and transgenic mice modulates phosphorylation and proteolytic processing of APP, N-cadherin (Cdh2), presenilin (Psen), and tau (Mapt). p60TRP acts as an inhibitor of BACE1 and presenilin (the secretase complex), shifting APP processing toward the non-amyloidogenic pathway. p60TRP overexpression promoted neuroprotection (reduced apoptosis in Annexin-V, TUNEL, caspase-3/7 assays) and neurosynaptogenesis, and improved cognitive function in transgenic mice. |
NSC overexpression, p60TRP knockdown, transgenic mouse model, Annexin-V/TUNEL/caspase-3/7 apoptosis assays, radial arm water maze, Western blotting |
Journal of cellular and molecular medicine |
Medium |
21199326
|
| 2013 |
In vivo neuronal overexpression of p60TRP in transgenic mice causes significant alterations in the brain proteome of cortex and hippocampus (56 proteins significantly altered out of 1,735 quantified), supporting that p60TRP modulates cognitive and neuroprotective capacities at a systems level. |
iTRAQ-based quantitative proteomics, transgenic mouse model |
Neuro-Signals |
Low |
23391701
|
| 2013 |
p60TRP is described as a GPCR-associated sorting protein whose signaling involves RIN1, PP2A, RanBP5, CREB, and SYNJ1 pathways, and whose interference with the GPCR/secretase signaling pathway is proposed as a therapeutic target. The review consolidates experimental evidence that p60TRP functions in G protein signaling networks relevant to neurodegeneration. |
Review synthesizing prior experimental data (yeast two-hybrid, transgenic models) |
Molecular neurobiology |
Low |
23345134
|
| 2014 |
Deletion of a 0.35 Mb subregion of the mouse X chromosome containing Armcx5, Gprasp1, Gprasp2, and Bhlhb9 (GPRASP3) is sufficient to cause the Xq22.1 syndrome phenotype, including respiratory failure, cleft palate, neonatal lethality (males), and seizures with growth delay (females). This genetic epistasis establishes that loss of Bhlhb9/GPRASP3 (among the four genes) contributes causally to these developmental defects. |
Targeted chromosomal deletion in mouse, phenotypic analysis (respiratory failure, cleft palate, survival, seizure monitoring) |
Human molecular genetics |
Medium |
24569167
|
| 2015 |
Computational 3D structural modeling predicts that p60TRP forms a bHLH-domain-containing homodimer with a Mg2+-containing binding site, and in silico ligand docking identifies CB1954 and B73 as potential interacting small molecules at this site. |
Computational structure prediction (Modeller, I-TASSER, PROCHECK, ClusPro/PIPER), in silico ligand docking |
Molecular informatics |
Low |
27491919
|
| 2021 |
GPRASP3 (GPRASP1, GPRASP2, GPRASP3/ARMCX subfamily 1) proteins possess armadillo-like repeats and interact with multiple GPCRs; GPRASP proteins participate in GPCR post-endocytic sorting. The review consolidates evidence that the subfamily 1 proteins (including GPRASP3) share structural features (armadillo repeats, additional repeated motifs) and interact with GPCRs, while subfamily 2 members are mitochondrially targeted. |
Review of in vitro and in vivo experiments across the family; GPRASP3-specific data includes structural domain annotation and family-level GPCR interaction context |
Current topics in medicinal chemistry |
Low |
33267763
|
| 2011 |
RNA interference knockdown of Bhlhb9 (GPRASP3 ortholog) in prechondrocyte ATDC5 cells demonstrated a functional role for Bhlhb9 in chondrocyte differentiation, establishing it as one of five genes (out of 28 highly connected network genes tested) with a novel role in this developmental process. |
RNA interference in ATDC5 prechondrocyte cells, systems genetics network analysis |
Journal of bone and mineral research |
Medium |
20954177
|