1 | MSV000085400 | Soluble SORLA enhances neurite outgrowth and regeneration through activation of EGFR and MAPK pathways | false |  |
2 | MSV000085698 | Multi-omic comparison of Alzheimers variants in human ESC-derived microglia reveals convergence at APOE | false |  |
3 | MSV000083373 | Proteome profiling of triple negative breast cancer cells overexpressing NOD1 and NOD2 receptors unveils molecular signatures of malignant cell proliferation | false |  |
4 | MSV000087321 | EZH2-dependent transcriptional complex promotes aberrant epithelial remodelling after injury | false |  |
5 | MSV000083740 | Metabolic Targeting of Cancer by a Ubiquinone Uncompetitive Inhibitor of Mitochondrial Complex I | false |  |
6 | MSV000088245 | A BioID-derived proximity interactome for SARS-CoV-2 proteins | false |  |
7 | MSV000094352 | Deep, Unbiased and Quantitative mass spectrometry-based plasma proteome analysis of personalized response to mRNA COVID-19 vaccine | false |  |
8 | MSV000086739 | Combined Inhibition of AKT and KIT Restores Expression of Programmed Cell Death 4 (PDCD4) in Gastrointestinal Stromal Tumor | false |  |
9 | MSV000084057 | A reference map of the human proinsulin biosynthetic interaction network | false |  |
10 | MSV000092536 | Longitudinal Deep Multi-Omics Profiling in a CLN3 Minipig Model Reveals Novel Biomarker Signatures for Batten Disease | false |  |
11 | MSV000094973 | Discovery of Monovalent Direct Degraders of BRD4 That Act Via the Recruitment of DCAF11 | false |  |
12 | MSV000084223 | Loss of HIF1A From Pancreatic Cancer Cells Increases Expression of PPP1R1B and Degradation of p53 to Promote Invasion and Metastasis | false |  |
13 | MSV000083857 | Coordinate Enhancer Reprogramming by GATA3 and AP1 Promotes Phenotypic Plasticity to Achieve Breast Cancer Endocrine Resistance | false |  |
14 | MSV000089081 | Transmembrane Batten disease proteins interact with a shared network of vesicle sorting proteins, impacting synaptic composition and function | false |  |
15 | MSV000086560 | PTEN DEFICIENCY LEADS TO PROTEASOME ADDICTION, A NOVEL VULNERABILITY IN GLIOBLASTOMA | false |  |