| 1997 |
Yeast Enp1 protein (ortholog of human BYSL) is localized to the nucleus, as demonstrated by immunohistochemical studies using a c-myc-tagged fusion construct. |
Immunohistochemistry with epitope-tagged protein (c-myc fusion) |
Gene |
Medium |
9034325
|
| 2003 |
Yeast Enp1 is required for early pre-rRNA processing at sites A0, A1, and A2, and for synthesis of 20S pre-rRNA and 18S rRNA, leading to reduced 40S ribosomal subunit formation. Enp1 co-precipitates with Nop1 protein and with U3 and U14 snoRNAs, placing it in the early pre-rRNA processing machinery. |
Northern blot analysis of rRNA precursors in temperature-sensitive enp1-1 mutant; pulse-chase analysis; co-precipitation assay |
Nucleic acids research |
High |
12527778
|
| 2003 |
Yeast Enp1 is concentrated in the nucleolus, consistent with its role in ribosome biogenesis. |
Subcellular localization by co-precipitation and inferred from nucleolar protein Nop1 association |
Nucleic acids research |
Medium |
12527778
|
| 2006 |
Targeted disruption of the mouse Bysl gene results in embryonic lethality shortly after implantation, establishing that bystin is essential for post-implantation mouse embryo survival. Bystin expression was detected in uterine epithelia at peri-implantation stages and in blastocysts. |
Gene knockout (targeted disruption) in mouse; immunolocalization |
FEBS letters |
High |
17055491
|
| 2007 |
Mammalian Bysl (bystin-like) is an integral factor for 40S ribosomal subunit biogenesis. Loss of Bysl function via siRNA or dominant-negative mutants caused defects in 40S ribosomal subunit biogenesis. Exogenously expressed Bysl is concentrated in the nucleolus with diffuse nucleoplasmic distribution. |
siRNA knockdown; dominant-negative mutants; fluorescent protein tagging and live-cell imaging; 40S subunit biogenesis assay |
Molecular and cellular biology |
High |
17242206
|
| 2007 |
Bysl siRNA knockdown in mouse preimplantation embryos arrests development just prior to blastocyst formation, resulting in a defect in trophectoderm differentiation, establishing Bysl as essential for this developmental transition. |
siRNA injection into embryos; developmental staging |
Molecular and cellular biology |
High |
17242206
|
| 2020 |
BYSL promotes glioblastoma cell migration, invasion, and epithelial-mesenchymal transition (EMT) via the GSK-3β/β-catenin signaling pathway. BYSL overexpression increased phosphorylation of GSK-3β and nuclear distribution of β-catenin; GSK-3β inhibition partially reversed the effects of BYSL downregulation on β-catenin transcriptional activity and EMT markers. |
siRNA knockdown and overexpression in GBM cell lines; Western blot for EMT markers (β-catenin, N-cadherin, E-cadherin); pharmacological inhibition of GSK-3β (1-Azakenpaullone); nuclear fractionation; immunohistochemistry |
Frontiers in oncology |
Medium |
33178594
|
| 2021 |
BYSL forms a complex with RIOK2 and mTOR (mTORC2 complex components), and co-localizes with RIOK2 in glioma cells. Overexpression of BYSL or RIOK2 increased AKT/mTOR signaling activity, while knockdown decreased it, placing BYSL as a positive regulator of AKT/mTOR signaling through its association with RIOK2 and mTOR. |
Co-immunoprecipitation; double immunofluorescence co-localization; Western blot for AKT/mTOR signaling; overexpression and siRNA knockdown; orthotopic xenograft model |
Cancer biology & medicine |
Medium |
33628587
|
| 2022 |
miR-378a-3p directly binds to the 3'-UTR of BYSL mRNA and suppresses BYSL expression, establishing BYSL as a direct target of miR-378a-3p. BYSL upregulation under hypoxia enhanced Nrf2 expression in osteosarcoma cells. |
Dual-luciferase reporter assay; rescue assay; Western blot |
Frontiers in genetics |
Medium |
35154253
|
| 2026 |
BYSL knockdown in AML cell lines inhibits cell proliferation, reduces colony-forming ability, and induces G0/G1 cell cycle arrest. Mechanistically, BYSL suppression decreases PI3K and AKT phosphorylation. ChIP-qPCR confirmed that c-MYC directly binds to the BYSL promoter, establishing BYSL as a transcriptional target of c-MYC. |
shRNA knockdown in AML cell lines; Western blot for PI3K/AKT phosphorylation; ChIP-qPCR; cell cycle analysis; colony formation assay |
Clinical and experimental medicine |
Medium |
41854887
|