scholarly article | Q13442814 |
P50 | author | Steven M. Jay | Q43855197 |
Yan Wang | Q48037840 | ||
Catherine Fenselau | Q87432462 | ||
P2093 | author name string | Nathan J Edwards | |
Suzanne Ostrand-Rosenberg | |||
Virginia K Clements | |||
Divya B Patel | |||
Katherine R Adams | |||
Sitara Chauhan | |||
P2860 | cites work | MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis | Q24311780 |
p600, a unique protein required for membrane morphogenesis and cell survival | Q24533398 | ||
Myeloid-derived suppressor cells: linking inflammation and cancer | Q24641811 | ||
Proinflammatory S100 proteins regulate the accumulation of myeloid-derived suppressor cells | Q24658240 | ||
Recommendations for myeloid-derived suppressor cell nomenclature and characterization standards | Q26744395 | ||
Energy-requiring uptake of prostasomes and PC3 cell-derived exosomes into non-malignant and malignant cells | Q27303191 | ||
The Doa4 deubiquitinating enzyme is functionally linked to the vacuolar protein-sorting and endocytic pathways | Q27936688 | ||
Advantages of Extracellular Ubiquitin in Modulation of Immune Responses | Q28078650 | ||
Reactome: a database of reactions, pathways and biological processes | Q28298042 | ||
Coordinated regulation of myeloid cells by tumours | Q28395157 | ||
A proteomics approach to understanding protein ubiquitination | Q29547312 | ||
Ceramide triggers budding of exosome vesicles into multivesicular endosomes | Q29616811 | ||
Extracellular vesicles: exosomes, microvesicles, and friends | Q29618137 | ||
Mass Spectrometric Analysis of Lysine Ubiquitylation Reveals Promiscuity at Site Level | Q30002367 | ||
Exosome poly-ubiquitin inhibits platelet activation, downregulates CD36 and inhibits pro-atherothombotic cellular functions | Q30597581 | ||
ProSight Lite: graphical software to analyze top-down mass spectrometry data | Q30920560 | ||
Cloning and characterization of a 20-kDa ubiquitin carrier protein from wheat that catalyzes multiubiquitin chain formation in vitro | Q33238681 | ||
Weighing in on ubiquitin: the expanding role of mass-spectrometry-based proteomics | Q34015771 | ||
Global analysis of lysine ubiquitination by ubiquitin remnant immunoaffinity profiling | Q34159143 | ||
Ubiquitinated proteins in exosomes secreted by myeloid-derived suppressor cells | Q34669523 | ||
Middle-down mass spectrometry enables characterization of branched ubiquitin chains | Q35212971 | ||
Reduced inflammation in the tumor microenvironment delays the accumulation of myeloid-derived suppressor cells and limits tumor progression | Q35478848 | ||
Beneficial effect of novel proteasome inhibitors in murine lupus via dual inhibition of type I interferon and autoantibody-secreting cells | Q36096756 | ||
Proteolytic Potential of the MSC Exosome Proteome: Implications for an Exosome-Mediated Delivery of Therapeutic Proteasome | Q36125132 | ||
Unexpected trypsin cleavage at ubiquitinated lysines. | Q36142435 | ||
Proteasome protease mediated regulation of cytokine induction and inflammation | Q36301130 | ||
Deubiquitylation of Protein Cargo Is Not an Essential Step in Exosome Formation. | Q36876090 | ||
Ubiquitin-dependent sorting of integral membrane proteins for degradation in lysosomes | Q36906047 | ||
Cellular stress conditions are reflected in the protein and RNA content of endothelial cell-derived exosomes | Q37141177 | ||
Exosomes from myeloid-derived suppressor cells carry biologically active proteins | Q37624283 | ||
Endosomal transport via ubiquitination | Q37940139 | ||
Ubiquitin in inflammation: the right linkage makes all the difference | Q38201969 | ||
A Comprehensive Proteomics Analysis Reveals a Secretory Path- and Status-Dependent Signature of Exosomes Released from Tumor-Associated Macrophages | Q38840439 | ||
Ubiquitination as a Mechanism To Transport Soluble Mycobacterial and Eukaryotic Proteins to Exosomes | Q38846056 | ||
Top-down analysis of low mass proteins in exosomes shed by murine myeloid-derived suppressor cells | Q40064673 | ||
Tryptic digestion of ubiquitin standards reveals an improved strategy for identifying ubiquitinated proteins by mass spectrometry | Q40157141 | ||
Inflammation induces myeloid-derived suppressor cells that facilitate tumor progression | Q40338318 | ||
PepArML: A Meta-Search Peptide Identification Platform for Tandem Mass Spectra | Q41461307 | ||
Phosphoproteins in extracellular vesicles as candidate markers for breast cancer. | Q41710047 | ||
Peptide-based systems analysis of inflammation induced myeloid-derived suppressor cells reveals diverse signaling pathways | Q42493330 | ||
Surface Glycoproteins of Exosomes Shed by Myeloid-Derived Suppressor Cells Contribute to Function | Q46064256 | ||
Comparison of label-free methods for quantifying human proteins by shotgun proteomics. | Q46568113 | ||
Particle size distribution of exosomes and microvesicles determined by transmission electron microscopy, flow cytometry, nanoparticle tracking analysis, and resistive pulse sensing | Q47173522 | ||
Evaluation of Spectral Counting for Relative Quantitation of Proteoforms in Top-Down Proteomics | Q48950646 | ||
Get on the exosome bus with ALIX | Q58298795 | ||
P433 | issue | 1 | |
P921 | main subject | inflammation | Q101991 |
extracellular vesicle | Q21097485 | ||
P304 | page(s) | 315-324 | |
P577 | publication date | 2017-11-10 | |
P1433 | published in | Journal of Proteome Research | Q3186939 |
P1476 | title | Ubiquitin Conjugation Probed by Inflammation in Myeloid-Derived Suppressor Cell Extracellular Vesicles | |
P478 | volume | 17 |
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