| Literature DB >> 32084266 |
Jason Mighty1,1, Jing Zhou1,1, Alberto Benito-Martin1, Sami Sauma1, Samer Hanna2, Onyekwere Onwumere1,1, Cui Shi1,1, Martin Muntzel1, Moira Sauane1,1, Michael Young2, Henrik Molina2, Dianne Cox2, Stephen Redenti1,1,1.
Abstract
Purpose: Extracellular vesicles (EVs) contain RNA and protein cargo reflective of the genotype and phenotype of the releasing cell of origin. Adult neural retina EV release, RNA transfer, and proteomic cargo are the focus of this study.Entities:
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Year: 2020 PMID: 32084266 PMCID: PMC7326611 DOI: 10.1167/iovs.61.2.30
Source DB: PubMed Journal: Invest Ophthalmol Vis Sci ISSN: 0146-0404 Impact factor: 4.799
Primers and Product Sizes for qRT-PCR
| Gene | Primer Sequence (5′–3′) | (bp) |
|---|---|---|
| Klf14 | F: TCT TGG ATT TGG GGT GAG AG | 276 |
| R: GGG ATC ATA GGG GAC CTC AT | ||
| Smoc | F: GGG ACT TCC ACA CGC TAT GT | 169 |
| R: CCT GAA CCA TGT CTG TGG TG | ||
| Igsf8 | F: GCA CCG CTG TCT CTA TCT CC | 293 |
| R: GTT GCC CAG GTA CTG CGT AT | ||
| Gprc5b | F: AGT TCA AAC GGT GGA AGG TG | 247 |
| R: TAG TTG GGT GGG TTC TCC TG | ||
| β-actin | F: TTC CAG CCT TCC TTC TTG | |
| R: GGA GCC AGA GCA GTA ATC | ||
| GAPDH | F: AAC TTT GGC ATT GTG GAA GG | 223 |
| R: ACA CAT TGG GGG TAG GAA CA |
Figure 1.Retinal EV release rate and diameter range. Nanosight laser diffraction analysis of individual EVs in single frames of tracking for (a) conditioned media and (b) control medium. Concentration and diameter traces from (c) retina conditioned media and (d) control medium reveal variation in concentration and range of diameters. (e) Nanoparticle Tracking Analysis (NTA) revealed significantly more EVs in retina-conditioned medium (1.42 +/− 0.08 × 108/mL) compared to those present in control (0.15 +/− 0.09 × 108; P = 0.0097). (f) NTA analysis revealed a significant difference in mean diameter of EVs released from adult retina, 202 +/− 21.7 nm, compared to EVs in control medium 120 +/− 9.9 nm (P = 0.0389). Retina EVs were most concentrated in diameter ranges from 50 to 610 nm, compared to 50 to 410 nm in controls (g). (h) At each diameter analyzed from 50 to 370 nm, retina EV concentrations were greater than those present in controls.
Figure 2.TEM and immunogold EM of retinal EV ultrastructure and protein localization. TEM analysis of EVs released from adult retina revealed cup-shaped and spheroid morphologies, characteristic of exosomes and microvesicles, respectively (Scale: 100 nm). Retinal EVs also showed positive immunogold-labeling with canonical EV markers including (a) the MVB synthesis protein, tumor susceptibility gene 101 protein (TSG 101), and (b) the transmembrane extracellular protein CD63. In retina EV controls with secondary antibody alone, (c) no labeling was detected. Scale: 100 nm.
Figure 3.Retinal EV marker protein and select retinal mRNA content. Western blot analysis of 5 µg of protein analyzed from EVs and retina revealed, (a) the canonical exosome marker CD63 is concentrated in EV samples, with (b) CD63 intensity quantification showing higher levels of CD63 in EVs compared to retina (c) beta-actin showed higher levels in retina proteins compared to equal amount of EV proteins. qRT-PCR analysis showed (d) retina and EV expression levels of transcripts associated with neural differentiation and organization, including GPRC5b and Igsf8. Smoc1 was found in retina but not detected in EVs. Analysis also showed (e) adult retinal and neuronal markers in both retina and EVs, including rhodopsin and Neun. Recoverin was only detected in retinal cells.
Figure 4.Lipid membrane and RNA labeled EVs released from adult retina are up-taken by unlabeled retinal cells. Super-resolution microscopy was used to visualize RNA (SytoRNA/green) and lipid membrane (PKH26/red) labeled EVs released from adult retina and taken up by control non-labeled adult retinal cells in a transfer experiment. Shown are adult retinal cells with internalized EVs imaged for transferred (a) total RNA (FITC/green) and (b) lipid membrane (TRITC/red) with (c) nuclei labeled with (DAPI). Overlay revealed, (d) colocalization of transferred EVs with visible RNA and lipid membrane throughout the cytoplasm and in the proximity of the perinuclear envelope of the receiving retinal cells.
Figure 5.Retinal EVs contain unique protein profiles compared to retina. A Venn diagram showing, (a) the distribution of the 2732 proteins detected in retina, EVs or both. Of the proteins identified, 957 were present in both retina and EVs, 1696 were detected only in retina, and 82 in EVs alone. (b) Venn diagram showing the top biological processes associated with the 82 proteins detected in EVs alone. (c) The percent distribution of molecular processes associated with proteins identified only in EVs. (d) The table shows the percent distribution of the biologic processes associated with total EV protein cargo, including protein species detected exclusively in EVs (82) and EV cargo shared with retina (957).