Species
|
Resource
|
RRC ID
|
Title
|
Journal
|
Published
|
Link
|
Human and Animal Cells
|
MC3T3-E1(RCB1126)
|
82658
|
METTL14 Mediates Glut3 m6A methylation to improve osteogenesis under oxidative stress condition.
|
Redox Rep |
2025-12-1 |
Pubmed
Full text
|
Human and Animal Cells
|
293T(RCB2202)
|
82099
|
U-to-C RNA editing by synthetic PPR-DYW proteins in bacteria and human culture cells.
|
Commun Biol |
2022-9-15 |
Pubmed
Full text
|
Human and Animal Cells
|
HuH-7
|
74472
|
Adenosine N6-methylation upregulates the expression of human CYP2B6 by altering the chromatin status.
|
Biochem Pharmacol |
2022-11-1 |
Pubmed
Full text
|
Yeast
|
BYP7150(pSP-G1)
|
74194
|
Concentrative Nucleoside Transporter, CNT, Results in Selective Toxicity of Toyocamycin against Candida albicans.
|
Microbiol Spectr |
2022-8-31 |
Pubmed
Full text
|
Human and Animal Cells
|
Hep G2
|
72430
|
m6A modification impacts hepatic drug and lipid metabolism properties by regulating carboxylesterase 2.
|
Biochem Pharmacol |
2021-11-1 |
Pubmed
Full text
|
Drosophila
|
pBFv-U6.2
|
65776
|
Hakai is required for stabilization of core components of the m6A mRNA methylation machinery.
|
Nat Commun |
2021-6-18 |
Pubmed
Full text
|
Human and Animal Cells
|
KP4(RCB1005)
,
Lu99(RCB1900)
|
64934
|
MTAP Deletions in Cancer Create Vulnerability to Targeting of the MAT2A/PRMT5/RIOK1 Axis.
|
Cell Rep |
2016-4-19 |
Pubmed
Full text
|
Human and Animal Cells
|
Huh-7
|
64001
|
The N6-methyladenosine modification posttranscriptionally regulates hepatic UGT2B7 expression.
|
Biochem Pharmacol |
2021-7-1 |
Pubmed
Full text
|
Human and Animal Cells
|
HeLa(RCB0007)
,
Hep G2(RCB1648)
|
61237
|
Adenosine deaminase inhibitor EHNA exhibits a potent anticancer effect against malignant pleural mesothelioma.
|
Cell Physiol Biochem |
2015-1-1 |
Pubmed
Full text
|
Drosophila
|
5183R-1
,
5183R-2
,
4322R-1
,
4780R-3
,
4780R-1
,
9668R-2
,
31640R-3
,
7000R-2
,
9668R-1
,
7227R-1
,
...
|
58236
|
An in vivo RNAi screen uncovers the role of AdoR signaling and adenosine deaminase in controlling intestinal stem cell activity.
|
Proc Natl Acad Sci U S A |
2020-1-7 |
Pubmed
Full text
|
Human and Animal Cells
|
COS-7(RCB0539)
|
57756
|
Bcl-2 and IP3 compete for the ligand-binding domain of IP3Rs modulating Ca2+ signaling output.
|
Cell Mol Life Sci |
2019-10-1 |
Pubmed
Full text
|
Human and Animal Cells
|
PC-12(RCB0009)
|
54688
|
COA-Cl induces dopamine release and tyrosine hydroxylase phosphorylation: In vivo reverse microdialysis and in vitro analysis.
|
Brain Res |
2019-3-1 |
Pubmed
Full text
|
C.elegans
|
tm668
|
53948
|
C. elegans ADARs antagonize silencing of cellular dsRNAs by the antiviral RNAi pathway.
|
Genes Dev |
2018-2-1 |
Pubmed
Full text
|
C.elegans
|
tm668
|
53388
|
A-to-I RNA editing promotes developmental stage-specific gene and lncRNA expression.
|
Genome Res |
2017-3-1 |
Pubmed
Full text
|
C.elegans
|
tm668
|
51491
|
The C. elegans neural editome reveals an ADAR target mRNA required for proper chemotaxis.
|
Elife |
2017-9-19 |
Pubmed
Full text
|
Human and Animal Cells
,
Zebrafish
|
CHO-K1(RCB0285)
,
Tg(OMP6k:GFP)rw033
,
Tg(TRPC24.5k:gap-Venus)rw037
,
Tg(OMP:Gal4FF)rw0320
,
Tg(UAS:G-CaMP7)rw0322
|
48826
|
An Adenosine Receptor for Olfaction in Fish.
|
Curr Biol |
2017-5-22 |
Pubmed
Full text
|
Drosophila
|
pBFv-U6.2
|
47294
|
m6A modulates neuronal functions and sex determination in Drosophila.
|
Nature |
2016-12-8 |
Pubmed
Full text
|
C.elegans
|
tm668
|
46233
|
The dsRBP and inactive editor ADR-1 utilizes dsRNA binding to regulate A-to-I RNA editing across the C. elegans transcriptome.
|
Cell Rep |
2014-2-27 |
Pubmed
Full text
|
Human and Animal Cells
|
|
42945
|
Molecular characterization of MbADGF, a novel member of the adenosine deaminase-related growth factor in the cabbage armyworm, Mamestra brassicae: the functional roles in the midgut cell proliferation.
|
Insect Mol Biol |
2007-6-1 |
Pubmed
Full text
|
Prokaryotes B. subtilis
|
MBS295
,
MBS296
,
MBS311
,
MBS312
,
MBS313
,
MBS317
,
MBS323
,
MBS329
,
MBS330
,
MBS331
,
...
|
33564
|
Heavy involvement of stringent transcription control depending on the adenine or guanine species of the transcription initiation site in glucose and pyruvate metabolism in Bacillus subtilis.
|
J Bacteriol |
2010-3-1 |
Pubmed
Full text
|