| 2015 |
LARP4B binds to 3' UTRs of a distinct set of cellular mRNAs, with a defined AU-rich binding motif identified by PAR-CLIP and in vitro binding assays; reduction of LARP4B destabilizes these mRNA targets and reduces their translation. |
PAR-CLIP transcriptome-wide analysis, biocomputational motif analysis, in vitro binding assays, knockdown with mRNA stability and proteome readout |
RNA (New York, N.Y.) |
High |
26001795
|
| 2016 |
The La module (LA motif + adjacent RRM) of LARP4B is required for its growth-suppressive activity and directly associates with BAX mRNA, as shown by mutagenesis and RNA association assays in glioma cells. |
La module deletion mutagenesis, RNA immunoprecipitation/association assay, overexpression in glioma cell lines with proliferation/apoptosis readout |
Cancer research |
Medium |
26933087
|
| 2020 |
The crystal structure of the variant PAM2w motif in the N-terminal region of LARP4B bound to the MLLE domain of PABPC1 revealed a new mode of PAM2–MLLE interaction; mutational studies in vitro and in vivo confirmed the structural contacts are required for binding. |
X-ray crystallography, mutational analysis in vitro and in vivo |
Biomolecules |
High |
32517187
|
| 2018 |
In Drosophila, overexpression of Larp4B reduces cell and organ size; this effect requires the LA motif and RRM RNA-binding domains and is mediated by downregulation of dMyc protein levels. Loss-of-function mutation of larp4B increases dMyc protein. Genetic epistasis showed that dMyc overexpression suppresses the larp4B-overexpression phenotype. |
Transgenic overexpression, deletion mutant transgenes, genetic epistasis (dMyc suppressor), Western blot for dMyc protein |
Biochemical and biophysical research communications |
Medium |
29462618
|
| 2024 |
LARP4B binds to SPINK1 mRNA via its La motif and stabilizes it, thereby activating the SPINK1–EGFR signaling pathway to promote HCC progression. LARP4B expression is upregulated in HCC via METTL3-mediated m6A modification recognized by IGF2BP3. |
RNA immunoprecipitation sequencing, RIP-seq, RNA pulldown, gain- and loss-of-function assays, in vivo xenograft, EGFR pathway readout |
Cell death discovery |
Medium |
38693111
|
| 2024 |
LARP4B binds to WNK1 mRNA and promotes its stability; stabilized WNK1 competitively binds the Kelch domain of Keap1, promoting NRF2 nuclear translocation and activation of the NRF2/GCH1/BH4 pathway, thereby inhibiting ferroptosis in pancreatic cancer cells. |
RNA binding/RIP assay for WNK1 mRNA, NRF2 nuclear translocation assay, NRF2 inhibitor (ML385) rescue, ROS/MDA/GSH/SOD measurements, in vivo xenograft |
Integrative biology : quantitative biosciences from nano to macro |
Medium |
41014504
|
| 2024 |
LARP4B (and LARP4) conserved region-2 (CR2), specifically positions 615–625, directly binds RACK1 region 200–317 (a ribosome-associated protein); CR2 mutations decrease LARP4B association with RACK1 and ribosomes, impair stabilization of AU-rich element (ARE)-containing mRNAs, and reduce translation efficiency of ARE-containing reporters. AlphaFold2-multimer predicted high-confidence interaction of CR2 with RACK1 propellers 5–6, consistent with experimental results. |
Yeast two-hybrid domain mapping, co-immunoprecipitation, polysome profiling, β-globin-ARE mRNA reporter assay, nanoLuc-ARE luciferase assay, CR2 mutagenesis, AlphaFold2-multimer structural prediction |
bioRxivpreprint |
Medium |
bio_10.1101_2024.11.01.621267
|
| 2024 |
LARP4B (but not LARP4A) specifically regulates cell cycle progression in osteosarcoma and prostate cancer cells, modulating key cell cycle proteins including Cyclins B1 and E2, Aurora B, and E2F1, as determined by transcriptomic profiling and high-content multiparametric analyses following LARP4B depletion. |
siRNA/shRNA depletion, transcriptomic profiling, high-content multiparametric imaging analysis, xenograft models |
iScience |
Medium |
38532886
|
| 2013 |
Knockdown of Larp4b in mouse Lin(-) hematopoietic progenitor cells did not affect colony-forming ability, apoptosis, or cell cycle in vitro (negative result). |
Lentiviral shRNA knockdown in mouse Lin(-) cells, colony forming cell assay, AnnexinV/PI staining, RT-PCR |
Zhongguo shi yan xue ye xue za zhi |
Low |
23815932
|