| 1998 |
TIP47/PLIN3 binds selectively to the cytoplasmic domains of both cation-independent and cation-dependent mannose 6-phosphate receptors (MPRs) and is required for MPR transport from endosomes to the trans-Golgi network in vitro and in vivo; it recognizes a phenylalanine/tryptophan signal in the tail of the cation-dependent MPR essential for proper endosomal sorting. |
Biochemical binding assays, in vitro transport assay, in vivo functional studies |
Cell |
High |
9590177
|
| 2001 |
TIP47/PLIN3 binds directly to the active (GTP-bound) form of Rab9 GTPase, and Rab9 binding increases TIP47 affinity for MPR cytoplasmic domains; a functional Rab9 binding site on TIP47 is required for stimulation of MPR transport in vivo. |
Direct binding assays (pulldown), in vivo transport assays, mutagenesis |
Science |
High |
11359012
|
| 2000 |
Recombinant TIP47/PLIN3 binds the cation-independent MPR cytoplasmic domain with Kd ~1 µM and the cation-dependent MPR with Kd ~3 µM, but fails to interact with furin, phosphorylated furin, metallocarboxypeptidase D, or TGN38 cytoplasmic domains, demonstrating highly selective cargo recognition. |
Quantitative binding assays with recombinant proteins |
The Journal of biological chemistry |
High |
10829017
|
| 2000 |
TIP47/PLIN3 associates with lipid droplets in a lipid-load-dependent manner: under low lipid conditions TIP47 is primarily cytosolic, but upon fatty acid supplementation a significant fraction redistributes to lipid droplet fractions in HeLa and MA10 Leydig cells. |
Immunofluorescence microscopy, subcellular fractionation, Western blotting |
The Journal of biological chemistry |
Medium |
11084026
|
| 2002 |
TIP47/PLIN3 residues 161–169 are essential (but not sufficient) for Rab9 binding; mutations in this region decrease Rab9 binding without altering global protein folding or MPR binding capacity, demonstrating that Rab9 and MPR binding involve distinct domains. |
Site-directed mutagenesis, binding assays, circular dichroism, partial proteolysis |
Proceedings of the National Academy of Sciences of the United States of America |
High |
12032303
|
| 2002 |
GFP-tagged TIP47/PLIN3 co-localizes with isolated intracellular lipid droplets, and antibodies specifically recognizing TIP47 label lipid droplet surfaces, demonstrating conserved lipid droplet association across PAT family members from mammals, Drosophila, and Dictyostelium. |
GFP co-localization, immunofluorescence with specific antibodies, lipid droplet isolation |
The Journal of biological chemistry |
Medium |
12077142
|
| 2003 |
TIP47/PLIN3 exists as oligomers (~300 kDa, ~13S) in cytosol, likely hexamers by chemical cross-linking; the N-terminal residues 1–151 contain the oligomerization domain. Oligomerization is not required for MPR binding but is required for TIP47 stimulation of MPR transport from endosomes to the trans-Golgi in vivo. |
Gel filtration, chemical cross-linking, co-expression studies, deletion mutagenesis, in vivo transport assay |
Traffic |
High |
12535272
|
| 2004 |
The crystal structure of the C-terminal domain of TIP47/PLIN3 (residues ~180–434) was solved at 2.8 Å resolution, revealing an α/β domain of novel topology and a four-helix bundle resembling the LDL receptor binding domain of apolipoprotein E, suggesting PAT proteins share structural analogy with apolipoproteins. |
X-ray crystallography |
Structure |
High |
15242596
|
| 2003 |
The cytoplasmic domain of HIV-1 gp41 binds TIP47/PLIN3 through a Y802W803 diaromatic motif; this interaction mediates retrograde transport of Env from endosomes to the TGN; mutation of the YW motif abolishes TGN targeting, TIP47 interaction, and results in poor Env incorporation into virions and reduced infectivity. |
Co-immunoprecipitation, internalization assays, overexpression of dominant-negative TIP47 mutant, mutagenesis |
Journal of virology |
High |
12768012
|
| 2005 |
S3-12, TIP47/PLIN3, and adipophilin coat nascent lipid droplets that emerge upon oleate treatment of adipocytes; oleate drives redistribution of TIP47 and adipophilin from cytosolic fractions to the lipid droplet fraction; this redistribution occurs independently of new protein synthesis, indicating a ready cytosolic reservoir of coat proteins. |
Immunofluorescence, subcellular fractionation, cycloheximide inhibition experiments |
The Journal of biological chemistry |
Medium |
15731108
|
| 2006 |
TIP47/PLIN3 acts as a connector between HIV-1 Gag (matrix domain) and Env glycoprotein, forming a ternary complex; Gag mutations abrogating TIP47 interaction inhibit Env incorporation and virion infectivity; TIP47 silencing impairs Env incorporation; TIP47 overexpression increases Env packaging. |
Co-immunoprecipitation, siRNA knockdown, overexpression, colocalization studies, infectivity assays |
Proceedings of the National Academy of Sciences of the United States of America |
High |
17003132
|
| 2006 |
TIP47/PLIN3 is a key effector for Rab9 localization: changing the cellular concentration of TIP47 shifts chimeric Rab5/9 or Rab1/9 proteins toward Rab9 localization, demonstrating that effector concentration influences Rab steady-state localization. |
Rab chimera localization studies, overexpression/modulation of TIP47 concentration, fluorescence microscopy |
The Journal of cell biology |
Medium |
16769818
|
| 2006 |
The C-terminal half of TIP47/PLIN3, specifically the putative hydrophobic cleft, is required for lipid droplet targeting and responsiveness to fatty acids; deletion of the C-terminal half abolishes LD targeting; TIP47 and ADRP have distinct LD-targeting mechanisms since Rab18 overexpression removes ADRP but not TIP47 from LDs. |
Deletion mutagenesis, immunofluorescence, Rab18 overexpression, siRNA knockdown of ADRP |
Biochemical and biophysical research communications |
Medium |
16808905
|
| 2006 |
TIP47/PLIN3 knockdown by siRNA in ADFP-null cells reduces lipid droplet formation and shifts utilization of exogenous fatty acids from triglycerides toward phospholipids, demonstrating a role in triglyceride storage and lipid droplet metabolism when ADRP is absent. |
siRNA knockdown, lipid droplet imaging, lipid metabolic measurements, mass spectrometry |
The Journal of biological chemistry |
Medium |
16968708
|
| 2009 |
TIP47/PLIN3 knockdown had no effect on MPR distribution, trafficking, or lysosomal enzyme sorting, arguing against a role as an MPR sorting device; instead, TIP47 is recruited to lipid droplets by an N-terminal sequence comprising 11-mer repeats, has apolipoprotein-like properties, reorganizes liposomes into small lipid discs, and its suppression blocks LD maturation and decreases triacylglycerol incorporation into LDs. |
siRNA knockdown, fluorescence microscopy, in vitro liposome reorganization assay, lipid analysis |
The Journal of cell biology |
High |
19451273
|
| 2009 |
Perilipin 3/TIP47-coated lipid droplets emerge along the endoplasmic reticulum; diacylglycerol (DG) enrichment of ER or lipid droplet membranes recruits PLIN3 to these membranes; blocking DG conversion to triacylglycerol (via DGAT1) attenuates this recruitment, linking PLIN3 membrane association to the metabolic state of the cell. |
Fluorescence microscopy, pharmacological manipulation (AlF4-, forskolin, DG lipase inhibitor, triacsin C), DGAT1 overexpression, lipid fractionation |
The Journal of biological chemistry |
High |
19748893
|
| 2009 |
TIP47/PLIN3 protein levels directly correlate with triglyceride levels in macrophages: siRNA knockdown decreases triglycerides while EGFP-TIP47 overexpression increases them; TIP47 is present in the plasma membrane of macrophages and clusters upon oleate treatment. |
siRNA knockdown, EGFP overexpression, freeze-fracture cytochemistry, triglyceride measurement |
Arteriosclerosis, thrombosis, and vascular biology |
Medium |
19286631
|
| 2010 |
TIP47/PLIN3 silencing in primary macrophages disrupts HIV-1 Gag and Env colocalization; mutations in Gag or Env that abolish TIP47 interaction impair HIV-1 propagation, infectivity, and Gag-Env coimmunoprecipitation; TIP47 depletion or Gag-TIP47 interaction disruption causes Gag to localize in scattered dots near the plasma membrane. |
siRNA knockdown, mutagenesis, colocalization imaging, co-immunoprecipitation, infectivity assay |
Traffic |
High |
20070608
|
| 2010 |
TIP47/PLIN3 overexpression protects NIH3T3 cells from H2O2-induced cell death and prevents mitochondrial depolarization; recombinant TIP47 increases mitochondrial membrane potential and partially prevents Ca2+-induced depolarization in vitro; TIP47 translocates from cytoplasm to mitochondria under oxidative stress. |
Overexpression, siRNA knockdown, JC1 mitochondrial potential assay, recombinant protein in vitro assay, immunolocalization |
FEBS letters |
Medium |
20556887
|
| 2012 |
Antisense oligonucleotide (ASO)-mediated reduction of TIP47/PLIN3 in mouse liver decreases hepatic triglyceride content by 35–52%, reduces hepatic steatosis, blunts hepatic triglyceride secretion, improves glucose tolerance, and increases insulin sensitivity in liver, adipose tissue, and muscle. |
Antisense oligonucleotide treatment in mice, liver histology, triglyceride measurement, glucose/insulin tolerance tests |
American journal of physiology. Regulatory, integrative and comparative physiology |
Medium |
22378776
|
| 2012 |
Full-length TIP47/PLIN3 adopts an extended conformation in solution with considerable spatial separation of N- and C-termini; the N-terminal region is predominantly β-structure (not helical), contrasting with the helical C-terminal domain, suggesting functional domain separation. |
Small-angle X-ray scattering (SAXS), solution structure analysis, N-terminal truncation mutants |
Proteins |
Medium |
22508559
|
| 2013 |
TIP47/PLIN3 interacts with HCV NS5A through its N-terminal PAT domain (NS5A residue W9 critical); TIP47 knockdown causes >10-fold decrease in HCV propagation and HCV RNA replication (shown in subgenomic replicon); TIP47 co-fractionates with NS3, NS5A, NS5B, and viral RNA in low-density LD-rich membrane fractions in HCV-replicating cells. |
Yeast two-hybrid screen, co-immunoprecipitation, shRNA knockdown, subgenomic replicon assay, point mutagenesis (W9A), membrane flotation assay |
PLoS pathogens |
High |
23593007
|
| 2013 |
TIP47/PLIN3 binds RNA-loaded NS5A via its N-terminal PAT domain in HCV-replicating cells; overexpression increases released HCV particles while complete knockdown abolishes virus replication; TIP47 stays associated with released HCV particles as shown by co-immunoprecipitation and immunogold electron microscopy. |
Co-immunoprecipitation, affinity chromatography, yeast two-hybrid, siRNA knockdown, lentiviral overexpression, immunogold electron microscopy |
Journal of hepatology |
High |
23354285
|
| 2013 |
Rab9 interaction with TIP47/PLIN3 is required for HCV particle release; TIP47 mutants lacking the Rab9 binding domain retain binding to viral particles but misdirect them to the autophagosomal/lysosomal compartment for degradation rather than releasing them; silencing Rab9 abolishes viral replication. |
Deletion/point mutagenesis of Rab9 binding domain, lentiviral siRNA, co-immunoprecipitation, electron microscopy with immunogold |
European journal of cell biology |
Medium |
24480419
|
| 2013 |
PLIN3/TIP47 knockdown by siRNA in HL-60-derived neutrophils abolishes lipid droplet formation and reduces PGE2 secretion by 65%; PLIN3 is the only PAT family member expressed in these differentiated neutrophils; PLIN3 suppression also reduces expression of mPGES-1, mPGES-2, and COX-2. |
siRNA knockdown, immunofluorescence, lipid droplet quantification, ELISA (PGE2), Western blotting |
PloS one |
Medium |
23936516
|
| 2013 |
TIP47/PLIN3 overexpression or RNAi-mediated depletion in HeLa cells and Jurkat T cells had no significant effect on HIV-1 Env incorporation, virus release, or particle infectivity, contradicting earlier reports of a required role in HIV Env incorporation in these cell types; NMR and SPR confirmed MA binds TIP47. |
NMR titration, surface plasmon resonance, RNAi, overexpression, infectivity assay |
Journal of virology |
Medium |
23325685
|
| 2019 |
Plin3/TIP47 interacts with dynein subunit Dync1i1 and mediates colocalization of lipid droplets with microtubules; Plin3 knockdown increases ER triglyceride accumulation and ER dilation after alcohol exposure; Plin3 promotes lipid export from the ER, protecting against ER lipotoxic stress. |
Co-immunoprecipitation, immunofluorescence colocalization, siRNA knockdown, triglyceride measurement, ER stress markers |
Journal of cellular biochemistry |
Medium |
31119787
|
| 2021 |
mTORC1 phosphorylates PLIN3 to promote lipid droplet degradation (lipophagy); PLIN3 knockdown abolishes lipophagy induced by oleic acid overload; PLIN3 directly interacts with autophagy proteins FAK200 and ATG16L, suggesting PLIN3 functions as a docking protein for autophagosome formation at lipid droplets. |
RNA interference knockdown, co-immunoprecipitation, phosphorylation assays, in vitro/in vivo/ex vivo lipophagy assays |
Hepatology |
Medium |
34233024
|
| 2021 |
ACSS3 reduces lipid droplet deposits by regulating the stability of PLIN3; loss of ACSS3 increases PLIN3 stability, promoting LD accumulation and intratumoral androgen synthesis in prostate cancer cells. |
Co-immunoprecipitation, Western blotting, Oil Red O staining, LC/MS, siRNA knockdown |
Theranostics |
Medium |
33391508
|
| 2006 |
TIP47/PLIN3 inhibits retinylester hydrolysis catalyzed by GS2 lipase and hormone-sensitive lipase in keratinocytes; two regions are involved in inhibitory activity: residues within carboxyl α3–α4 helices are essential in the context of the full-length protein, and N-terminal residues contribute in a context-dependent manner. |
cDNA library screen, deletion mutagenesis, enzyme activity assays |
The Journal of investigative dermatology |
Medium |
16741517
|
| 2007 |
All-trans-retinol generated by rhodopsin photobleaching triggers rapid translocation of TIP47/PLIN3 from cytosol to lipid droplets in retinal pigment epithelium; this translocation requires both the N-terminal and C-terminal halves of the molecule; a short C-terminal deletion enhances LD localization. |
Fluorescence microscopy, RNAi, deletion mutagenesis, HPLC retinyl ester measurement |
Investigative ophthalmology & visual science |
Medium |
17525222
|