miRNA description for miR-274 |
miRNA accession |
miR-274 |
Species |
Drosophila melanogaster |
miR-274 identified in exosomes derived from the following tissue/cell type |
Embryonic cells [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Hemolymph [Exosomes]
|
31666321
|
Experiment description of studies that identified miR-274 in exosomes |
1
|
Experiment ID | 3405 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Embryonic cells |
Sample name | S2 |
Molecules identified in the study | Protein miRNA |
Methods used in the study | RT-PCR Western blotting |
EV-TRACK |
-
|
|
|
2
|
Experiment ID | 3406 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | Protein miRNA |
Methods used in the study | RT-PCR Western blotting |
EV-TRACK |
-
|
|
|
3
|
Experiment ID | 3408 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
4
|
Experiment ID | 3409 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
5
|
Experiment ID | 3410 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
6
|
Experiment ID | 3411 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
7
|
Experiment ID | 3412 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
8
|
Experiment ID | 3413 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|
9
|
Experiment ID | 3414 |
Identified molecule | miRNA
|
Identification method | RT-PCR
|
PubMed ID |
31666321
|
Organism | Drosophila melanogaster |
Experiment description | Glia-derived exosomal miR-274 targets Sprouty in trachea and synaptic boutons to modulate growth and response to hypoxia |
Authors | Tsai YW, Sung HH, Li JC, Yeh CY, Chen PY, Cheng YJ, Chen CH, Tsai YC, Chien CT. |
Journal name |
Proc Natl Acad Sci U S A
|
Publication year | 2019 |
Sample | Hemolymph |
Sample name | Circulating hemolymph |
Molecules identified in the study | miRNA |
Methods used in the study | RT-PCR |
EV-TRACK |
-
|
|
|