scholarly article | Q13442814 |
P356 | DOI | 10.1039/C6MB00653A |
P698 | PubMed publication ID | 28401970 |
P2093 | author name string | Jun He | |
Xuan Wang | |||
Shu Zhang | |||
Yi Chen | |||
Zhong Cheng | |||
Guan Wang | |||
Jinjin Wang | |||
Lingyu Huang | |||
Xiang Yuan | |||
Zhaozhi Li | |||
Yiqiong Yin | |||
Ziyi Qin | |||
P2860 | cites work | XBP1 mRNA splicing triggers an autophagic response in endothelial cells through BECLIN-1 transcriptional activation | Q24304996 |
Beclin 1, an autophagy gene essential for early embryonic development, is a haploinsufficient tumor suppressor | Q24569647 | ||
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Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2−ΔΔCT Method | Q25938999 | ||
Integration Analysis of Three Omics Data Using Penalized Regression Methods: An Application to Bladder Cancer | Q27310019 | ||
Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources | Q27860739 | ||
Apg14p and Apg6/Vps30p form a protein complex essential for autophagy in the yeast, Saccharomyces cerevisiae | Q27940093 | ||
Cloning and genomic organization of beclin 1, a candidate tumor suppressor gene on chromosome 17q21 | Q28138953 | ||
Autophagy promotes tumor cell survival and restricts necrosis, inflammation, and tumorigenesis | Q29617725 | ||
Autophagic effect of programmed cell death 5 (PDCD5) after focal cerebral ischemic reperfusion injury in rats. | Q30774139 | ||
Integration and comparison of different genomic data for outcome prediction in cancer. | Q31013326 | ||
Web-TCGA: an online platform for integrated analysis of molecular cancer data sets | Q31043453 | ||
Simultaneous analysis of distinct Omics data sets with integration of biological knowledge: Multiple Factor Analysis approach | Q33401075 | ||
Role of autophagy in breast cancer | Q33808483 | ||
Combining multidimensional genomic measurements for predicting cancer prognosis: observations from TCGA. | Q35221326 | ||
Decreased BECN1 mRNA Expression in Human Breast Cancer is Associated with Estrogen Receptor-Negative Subtypes and Poor Prognosis. | Q35223716 | ||
Computational design, chemical synthesis, and biological evaluation of a novel ERK inhibitor (BL-EI001) with apoptosis-inducing mechanisms in breast cancer | Q35740070 | ||
Systems biology network-based discovery of a small molecule activator BL-AD008 targeting AMPK/ZIPK and inducing apoptosis in cervical cancer | Q35781507 | ||
Identification of ULK1 as a novel biomarker involved in miR-4487 and miR-595 regulation in neuroblastoma SH-SY5Y cell autophagy | Q35860240 | ||
MYBL2 guides autophagy suppressor VDAC2 in the developing ovary to inhibit autophagy through a complex of VDAC2-BECN1-BCL2L1 in mammals. | Q36111722 | ||
Integrating genetic association, genetics of gene expression, and single nucleotide polymorphism set analysis to identify susceptibility Loci for type 2 diabetes mellitus | Q36402184 | ||
Molecular characterization of basal-like and non-basal-like triple-negative breast cancer | Q36630430 | ||
ACTP: A webserver for predicting potential targets and relevant pathways of autophagy-modulating compounds | Q36962855 | ||
Survival or death: disequilibrating the oncogenic and tumor suppressive autophagy in cancer | Q37577447 | ||
Beclin-1: autophagic regulator and therapeutic target in cancer | Q38082656 | ||
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Atg1 family kinases in autophagy initiation | Q38463112 | ||
Unraveling the roles of Atg4 proteases from autophagy modulation to targeted cancer therapy | Q38709994 | ||
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AMBRA1 and BECLIN 1 interplay in the crosstalk between autophagy and cell proliferation | Q38895769 | ||
The antipsychotic agent chlorpromazine induces autophagic cell death by inhibiting the Akt/mTOR pathway in human U-87MG glioma cells | Q39149568 | ||
Autophagy negatively regulates Wnt signalling by promoting Dishevelled degradation | Q39678666 | ||
Mechanistic study of TRPM2-Ca(2+)-CAMK2-BECN1 signaling in oxidative stress-induced autophagy inhibition | Q39721297 | ||
The BECN1 N-terminal domain is intrinsically disordered | Q40326289 | ||
BECN1 is involved in the initiation of mitophagy: it facilitates PARK2 translocation to mitochondria | Q41166658 | ||
The GST-BHMT assay reveals a distinct mechanism underlying proteasome inhibition-induced macroautophagy in mammalian cells | Q41948789 | ||
Markers of autophagy are adapted to hyperglycaemia in skeletal muscle in type 2 diabetes | Q42477947 | ||
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ADRB2 signaling promotes HCC progression and sorafenib resistance by inhibiting autophagic degradation of HIF1α. | Q53106081 | ||
Integrated genetic and epigenetic analysis of bladder cancer reveals an additive diagnostic value of FGFR3 mutations and hypermethylation events. | Q54651233 | ||
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 991-999 | |
P577 | publication date | 2017-04-12 | |
P1433 | published in | Molecular BioSystems | Q3319467 |
P1476 | title | Integrating multiple omics data for the discovery of potential Beclin-1 interactions in breast cancer | |
P478 | volume | 13 |
Q97519668 | Construction of a Comprehensive Multiomics Map of Hepatocellular Carcinoma and Screening of Possible Driver Genes |
Q64082786 | Downregulation of CYB5D2 is associated with breast cancer progression |
Q64079239 | Integrative analysis of Paneth cell proteomic and transcriptomic data from intestinal organoids reveals functional processes dependent on autophagy |
Q47771300 | Stryphnodendron adstringens ("Barbatimão") Leaf Fraction: Chemical Characterization, Antioxidant Activity, and Cytotoxicity Towards Human Breast Cancer Cell Lines. |
Q58769452 | What We Learned From Big Data for Autophagy Research |
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