| 1998 |
HsPMP34 (SLC25A17) is a peroxisomal integral membrane protein with six membrane-spanning segments, belonging to the mitochondrial solute carrier family, as demonstrated by localization of a GFP fusion protein to peroxisomes (co-localizing with peroxisomal thiolase) in HepG2 cells and mouse fibroblasts; in PEX5 knockout fibroblasts lacking functional peroxisomes, the fluorescence pattern was altered, confirming peroxisomal targeting. |
Fluorescence microscopy of GFP fusion protein; co-localization with peroxisomal marker; expression in PEX5 knockout fibroblasts |
European journal of biochemistry |
Medium |
9874197
|
| 2000 |
PMP34 (SLC25A17) is an integral peroxisomal membrane protein whose N- and C-terminal domains face the cytosol. The loop between transmembrane segments 4 and 5, containing basic residues, is required for peroxisome targeting; alanine substitution of those basic residues abrogates targeting. Three hydrophobic transmembrane segments flanking this loop are essential for membrane integration into peroxisomes. |
Differential membrane permeabilization, immunofluorescence of epitope-tagged variants in HeLa and CHO-K1 cells, deletion mutagenesis and GFP fusion localization assays |
The Journal of biological chemistry |
High |
11121399
|
| 2002 |
PMP34 (SLC25A17) functions as a peroxisomal adenine nucleotide (ATP) transporter, demonstrated by: (1) rescue of defective medium-chain fatty acid oxidation in S. cerevisiae ANT1-disrupted cells (which lack the peroxisomal adenine nucleotide carrier) and (2) direct in vitro reconstitution of purified PMP34 in proteoliposomes showing adenine nucleotide transport activity. |
Yeast genetic complementation (ANT1 deletion rescue); protein purification, reconstitution in proteoliposomes, in vitro transport assay |
Biochemical and biophysical research communications |
High |
12445829
|
| 2012 |
SLC25A17 is a peroxisomal transporter for multiple free cofactors: CoA, FAD, FMN, and AMP (primary substrates), and to a lesser extent NAD+, PAP, and ADP. Recombinant SLC25A17 reconstituted in liposomes operates almost exclusively by counter-exchange, is saturable, and is inhibited by pyridoxal 5'-phosphate and other mitochondrial carrier inhibitors. Its primary physiological role is to import CoA, FAD, and NAD+ into peroxisomes in exchange for intraperoxisomally generated PAP, FMN, and AMP. |
Recombinant protein expression, purification, reconstitution into liposomes, transport kinetics and inhibitor studies in vitro |
The Biochemical journal |
High |
22185573
|
| 2019 |
In zebrafish, Slc25a17 acts as a peroxisomal CoA transporter in vivo; knockdown severely compromises peroxisome function and alters lipid composition. Injection of exogenous CoA, but not NAD+, rescued the defective swim bladder development caused by slc25a17 knockdown, establishing CoA transport as the primary in vivo function. |
Zebrafish morpholino knockdown, lipid composition analysis, CoA/NAD+ rescue injection |
Journal of cellular physiology |
Medium |
31187491
|
| 2020 |
PMP34 (SLC25A17) is required for normal peroxisomal degradation of phytanic and pristanic acid in mice. Slc25a17 gene-trap knockout mice on dietary phytol showed hepatomegaly, liver inflammation, induction of peroxisomal enzymes, elevated hepatic triacylglycerols and cholesterylesters, and accumulation of phytanic and pristanic acid (as both free acids and CoA esters), partially mediated by PPARα. Other peroxisomal pathways (bile acid synthesis, VLCFA metabolism, plasmalogen levels) were unaffected, suggesting the role of PMP34 is specifically linked to branched-chain fatty acid CoA metabolism or SCPx-catalyzed thiolytic cleavage. |
Slc25a17 gene-trap knockout mouse model, dietary phytol challenge, lipid profiling (acyl-CoA esters, free fatty acids), bile acid analysis, peroxisomal enzyme assays, PPARα pathway analysis |
Frontiers in cell and developmental biology |
High |
32266253
|
| 2023 |
SLC25A17 inactivation in mammalian cells (HEK-293, HeLa, SV40-MEFs) shifts the glutathione redox couple toward a more reductive state (lower GSSG/GSH), with variable effects on NADPH and NAD+/NADH. This phenotype was rescued by expression of Candida boidinii Pmp47 (a putative ortholog). The redox change was not due to alterations in peroxisomal antioxidant enzyme expression, catalase activity, H2O2 permeability, or mitochondrial fitness. DEHA treatment revealed kinetic disconnection between peroxisomal and cytosolic glutathione pools and highlighted impact on peroxisomal NADPH metabolism. |
CRISPR/genetic inactivation of SLC25A17, redox sensor measurements (GSSG/GSH, NADPH, NAD+/NADH) in multiple cell lines, rescue with CbPmp47 expression, pharmacological dissection with DEHA |
Free radical biology & medicine |
High |
38159891
|
| 2025 |
USF2 transcriptionally activates PEX3, and upregulated PEX3 interacts with SLC25A17 to stabilize/upregulate its protein levels, thereby activating JAK2/STAT3 signaling and promoting lipid accumulation in lung adenocarcinoma cells. JAK2 inhibitor AG490 eliminated the lipid-accumulation effect of SLC25A17 overexpression. |
Chromatin binding assay (USF2 binding to PEX3 promoter), co-immunoprecipitation (PEX3-SLC25A17 interaction), overexpression/knockdown, western blotting, JAK2 inhibitor treatment |
Toxicology and applied pharmacology |
Medium |
40885408
|
| 2026 |
MARCH1 (an E3 ubiquitin ligase) directly ubiquitinates SLC25A17, promoting its degradation. Loss of SLC25A17 protein (via MARCH1-mediated ubiquitination) attenuates M2 macrophage polarization and cisplatin resistance in lung adenocarcinoma; re-expression of SLC25A17 reverses the sensitization to cisplatin induced by MARCH1 overexpression. |
Co-immunoprecipitation, ubiquitination assay, rescue overexpression experiment, flow cytometry, ELISA, western blotting |
Integrative biology : quantitative biosciences from nano to macro |
Medium |
41758657
|