Gene description for TSG101 |
| Gene name |
tumor susceptibility 101 |
| Gene symbol |
TSG101 |
| Other names/aliases |
TSG10 VPS23 |
| Species |
Homo sapiens |
Experiment description of studies that identified TSG101 in Mammary epithelial cells |
| 1
|
| Experiment ID | 2642 |
| Identified molecule | protein
|
| Extracellular vesicle type | Exosomes |
| MISEV | Small EVs |
| Identification method | Western blotting
|
| PubMed ID |
35649370
|
| Organism | Homo sapiens |
| Experiment description | Rab39 and its effector UACA regulate basolateral exosome release from polarized epithelial cells |
| Authors | Matsui T, Sakamaki Y, Nakashima S, Fukuda M. |
| Journal name |
Cell Rep
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Filtration Immunoaffinity capture Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Western blotting |
| EV-TRACK |
-
|
|
|
| 2
|
| Experiment ID | 2643 |
| Identified molecule | protein
|
| Extracellular vesicle type | Exosomes |
| MISEV | Small EVs |
| Identification method | Western blotting
|
| PubMed ID |
35649370
|
| Organism | Homo sapiens |
| Experiment description | Rab39 and its effector UACA regulate basolateral exosome release from polarized epithelial cells |
| Authors | Matsui T, Sakamaki Y, Nakashima S, Fukuda M. |
| Journal name |
Cell Rep
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Filtration Immunoaffinity capture Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Western blotting |
| EV-TRACK |
-
|
|
|
| 3
|
| Experiment ID | 2644 |
| Identified molecule | protein
|
| Extracellular vesicle type | Exosomes |
| MISEV | Small EVs |
| Identification method | Western blotting
|
| PubMed ID |
35649370
|
| Organism | Homo sapiens |
| Experiment description | Rab39 and its effector UACA regulate basolateral exosome release from polarized epithelial cells |
| Authors | Matsui T, Sakamaki Y, Nakashima S, Fukuda M. |
| Journal name |
Cell Rep
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Filtration Immunoaffinity capture Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Western blotting |
| EV-TRACK |
-
|
|
|
| 4
|
| Experiment ID | 2645 |
| Identified molecule | protein
|
| Extracellular vesicle type | Exosomes |
| MISEV | Small EVs |
| Identification method | Western blotting
|
| PubMed ID |
35649370
|
| Organism | Homo sapiens |
| Experiment description | Rab39 and its effector UACA regulate basolateral exosome release from polarized epithelial cells |
| Authors | Matsui T, Sakamaki Y, Nakashima S, Fukuda M. |
| Journal name |
Cell Rep
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Filtration Immunoaffinity capture Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Western blotting |
| EV-TRACK |
-
|
|
|
| 5
|
| Experiment ID | 2571 |
| Identified molecule | protein
|
| Extracellular vesicle type | Extracellular vesicles |
| MISEV | Small EVs |
| Identification method | Mass spectrometry
|
| PubMed ID |
35689797
|
| Organism | Homo sapiens |
| Experiment description | Proteomic alterations in extracellular vesicles induced by oncogenic PIK3CA mutations |
| Authors | Saraswat M, Garapati K, Kim J, Budhraja R, Pandey A. |
| Journal name |
Proteomics
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Mass spectrometry |
| EV-TRACK |
-
|
|
|
| 6
|
| Experiment ID | 2572 |
| Identified molecule | protein
|
| Extracellular vesicle type | Extracellular vesicles |
| MISEV | Small EVs |
| Identification method | Mass spectrometry
|
| PubMed ID |
35689797
|
| Organism | Homo sapiens |
| Experiment description | Proteomic alterations in extracellular vesicles induced by oncogenic PIK3CA mutations |
| Authors | Saraswat M, Garapati K, Kim J, Budhraja R, Pandey A. |
| Journal name |
Proteomics
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Mass spectrometry |
| EV-TRACK |
-
|
|
|
| 7
|
| Experiment ID | 2573 |
| Identified molecule | protein
|
| Extracellular vesicle type | Extracellular vesicles |
| MISEV | Small EVs |
| Identification method | Mass spectrometry
|
| PubMed ID |
35689797
|
| Organism | Homo sapiens |
| Experiment description | Proteomic alterations in extracellular vesicles induced by oncogenic PIK3CA mutations |
| Authors | Saraswat M, Garapati K, Kim J, Budhraja R, Pandey A. |
| Journal name |
Proteomics
|
| Publication year | 2022 |
| Sample | Mammary epithelial cells |
| Sample name | MCF10A |
| Isolation/purification methods | Differential centrifugation Ultracentrifugation |
| Flotation density | - |
| Molecules identified in the study | Protein |
| Methods used in the study | Mass spectrometry |
| EV-TRACK |
-
|
|
|