官方服务:
资源简介:
Network inference analysis identifies SETDB1 as a key regulator for reverting colorectal cancer cells into differentiated normal-like cells
应用场景:
创建时间:
2019-08-06
相关数据集
The role of compensatory metabolic reprogramming in ensuring PDAC cell survival under the limitation of glutamine
KPC1199 cells were treated in Cont group(2 mmol/L glutamine and 2.25 g/L glucose) or Low Gln group (0.4 mmol/L glutamine and 2.25 g/L glucose) , and harvested after 72 hours for RNA preparation. Overa
NIAID Data Ecosystem30
STRIPAK directs PP2A activity to promote oncogenic transformation
We evaluated the effects of suppressing MAP4K4 on transcriptome and YAP1 pathway based on the observation that partial suppression of MAP4K4 leads to transformation through activation of YAP1. Mutatio
NIAID Data Ecosystem10
OTUB2 silencing promotes ovarian cancer via mitochondrial metabolic reprogramming and can be synthetically targeted by CA9 inhibition
These findings delineate the mechanism of OTUB2 epigenetic silencing in ovarian cancer, demonstrate the critical roles of OTUB2/SNX29P2 in inhibiting glycolysis and eliciting cuproptosis in cancer cel
NIAID Data Ecosystem00
DataSheet_1_A Multi-Center Validated Subtyping Model of Esophageal Cancer Based on Three Metabolism-Related Genes.docx
Metabolic reprogramming is a hallmark of malignancy. Understanding the characteristics of metabolic reprogramming in esophageal squamous cell carcinoma (ESCC) helps uncover novel targets for cancer pr
NIAID Data Ecosystem30
RFX6 facilitates aerobic glycolysis-mediated growth and metastasis of hepatocellular carcinoma through targeting PGAM1 [ChIP-Seq]
Background: Hepatocellular carcinoma (HCC) cells undergo reprogramming of glucose metabolism to support uncontrolled proliferation, of which the intrinsic mechanism still merits further investigation.
NIAID Data Ecosystem00



