Embryonic Stem Cell-Derived Microvesicles Induce Gene Expression Changes in Muller Cells of the Retina

作者:Katsman Diana; Stackpole Emma J; Domin Daniel R; Farber Debora B*
来源:PLos One, 2012, 7(11): e50417.
DOI:10.1371/journal.pone.0050417

摘要

Cell-derived microvesicles (MVs), recognized as important components of cell-cell communication, contain mRNAs, miRNAs, proteins and lipids and transfer their bioactive contents from parent cells to cells of other origins. We have studied the effect that MVs released from embryonic stem cells (ESMVs) have on retinal progenitor Muller cells. Cultured human Muller cells were exposed to mouse ESMVs every 48 hours for a total of 9 treatments. Morphological changes were observed by light microscopy in the treated cells, which grew as individual heterogeneous cells, compared to the uniform, spindle-like adherent cellular sheets of untreated cells. ESMVs transferred to Muller cells embryonic stem cell (ESC) mRNAs involved in the maintenance of pluripotency, including Oct4 and Sox2, and the miRNAs of the 290 cluster, important regulators of the ESC-specific cell cycle. Moreover, ESMV exposure induced up-regulation of the basal levels of endogenous human Oct4 mRNA in Muller cells. mRNA and miRNA microarrays of ESMV-treated vs. untreated Muller cells revealed the up-regulation of genes and miRNAs involved in the induction of pluripotency, cellular proliferation, early ocular genes and genes important for retinal protection and remodeling, as well as the down-regulation of inhibitory and scar-related genes and miRNAs involved in differentiation and cell cycle arrest. To further characterize the heterogeneous cell population of ESMV-treated Muller cells, their expression of retinal cell markers was compared to that in untreated control cells by immunocytochemistry. Markers for amacrine, ganglion and rod photoreceptors were present in treated but not in control Muller cells. Together, our findings indicate that ESMs induce de-differentiation and pluripotency in their target Muller cells, which may turn on an early retinogenic program of differentiation.

  • 出版日期2012-11-30