| 2016 |
ANKRD13A (Ankrd13 family) contains ubiquitin-interacting motifs (UIMs) that bind preferentially to Lys-63-linked polyubiquitin chains on Caveolin-1 (Cav-1), forming a ternary complex with VCP/p97 on endosomal membranes to facilitate lysosomal trafficking of ubiquitinated Cav-1 oligomers. |
Co-immunoprecipitation, mass spectrometry (ubiquitin chain-type analysis), UIM-deletion mutagenesis, overexpression phenotypic assay (enlarged hollow late endosomes), interaction studies with IBMPFD-associated VCP mutants |
The Journal of biological chemistry |
High |
26797118
|
| 2020 |
ANKRD13A forms a complex with RNF11 (RING finger protein 11) in vivo via its UIMs, and this interaction is modulated by EGF stimulation. A ternary complex of ANKRD13A, RNF11, and activated EGFR is transiently assembled during early receptor endocytosis. Loss of ITCH E3 ligase abrogates ANKRD13A ubiquitination while loss of RNF11 increases it; the ubiquitination status of ANKRD13A controls its ability to bind activated EGFR, thereby regulating EGFR sorting for lysosomal degradation. |
SILAC-based co-immunoprecipitation proteomics, in vivo Co-IP with UIM-deletion mutants, EGF stimulation time-course assays, loss-of-function (RNAi) of ITCH and RNF11 with ubiquitination readout |
The FEBS journal |
High |
31985874
|
| 2021 |
ANKRD13A acts as a novel component of TNF signaling complex-II (death-inducing complex). It binds to ubiquitinated RIP1 via its UIM domain and limits the association of FADD and caspase-8 with RIP1, thereby setting a higher threshold for TNF-induced cell death without affecting NF-κB activation. ANKRD13A deficiency shifts the cellular response to TNF from survival to apoptosis. |
Co-immunoprecipitation of ANKRD13A with ubiquitinated RIP1, complex-II assembly assays, ANKRD13A knockout/knockdown with TNF-induced cell death and NF-κB reporter readouts, UIM-dependent interaction studies |
Cell death and differentiation |
High |
34839354
|
| 2025 |
ANKRD13A relocates to depolarized mitochondria upon PINK1/Parkin activation and promotes mitophagy by recruiting VCP/p97 to the mitochondrial outer membrane (OMM). VCP and its recruitment factors including ANKRD13A are required for OMM rupture, which exposes inner mitochondrial membrane mitophagy receptors for autophagic recognition. |
Live-cell fluorescence imaging (novel OMM-rupture biosensor), ANKRD13A localization assay (fractionation/imaging of depolarized mitochondria), Co-IP with mitochondrial proteins, loss-of-function (knockdown/knockout) with mitophagy and OMM-rupture readouts |
The Journal of biological chemistry |
High |
40975168
|
| 2023 |
ANKRD13A is recruited to ubiquitinated Toxoplasma gondii parasitophorous vacuoles (PVs) in IFNγ-stimulated endothelial cells together with p97/VCP and UBXD1. PV ubiquitination is a prerequisite for ANKRD13A recruitment, and its deposition directs Tg PVs to acidification, restricting parasite survival. |
Genetic knockdown/knockout with parasite restriction assay, immunofluorescence localization of ANKRD13A to ubiquitinated PVs, IFNγ stimulation experiments, co-depletion epistasis with p97/VCP |
mSphere |
Medium |
37975677
|
| 2013 |
Ankrd13A controls focal adhesion formation and distribution in lens and neural crest cells. miR-204 directly targets Ankrd13A; elevated Ankrd13A (from miR-204 inactivation) causes abnormal focal adhesion dynamics, reduced cell motility, and aberrant lens morphogenesis. In vivo restoration of Ankrd13A levels rescued the lens phenotype. |
Morpholino-mediated miR-204 knockdown and Ankrd13A overexpression in medaka (live imaging), in vitro focal adhesion assays, miR-204 target validation (3'UTR reporter), in vivo rescue experiment |
PloS one |
Medium |
23620728
|
| 2021 |
ANKRD13A recognizes Lys-63-linked polyubiquitin chains on HLA class I (HLA-I), and elevated ANKRD13A expression (induced by lncRNA USP30-AS1 via H3K4me3/H3K27Ac chromatin changes) promotes HLA-I internalization from the cell membrane, contributing to immune evasion in AML cells. |
USP30-AS1 knockdown/overexpression, ANKRD13A knockdown, cell surface HLA-I assay (flow cytometry/imaging), ChIP analysis for histone marks |
Human cell |
Low |
34694569
|