MicroRNA-375 is induced during astrocyte-to-neuron reprogramming and promotes survival of reprogrammed neurons when overexpressed
Chen, X.; Sokirniy, I.; Wang, X.; Jiang, M.; Mseis-Jackson, N.; Williams, C.; Mayes, K.; Jiang, N.; Puls, B.; Du, Q.; Shi, Y.; Li, H.
Show abstract
While astrocyte-to-neuron (AtN) reprogramming holds great promise in regenerative medicine, the molecular mechanisms that govern this unique biological process remain elusive. MicroRNAs (miRNAs), as post-transcriptional regulators of gene expression, play crucial roles during development and under various pathological conditions. To understand the function of miRNAs during AtN reprogramming process, we performed RNA-seq of both mRNAs and miRNAs on human astrocyte (HA) cultures upon NeuroD1 overexpression. Bioinformatics analyses showed that NeuroD1 not only activates essential neuronal genes to initiate reprogramming process but also induces miRNA changes in HA. Among the upregulated miRNAs, we identified miR-375 and its targets, neuronal ELAVL genes (nELAVLs), which encode a family of RNA-binding proteins and are also upregulated by NeuroD1. We further showed that manipulating miR-375 level regulates nELAVLs expression during NeuroD1-mediated reprogramming. Interestingly, miR-375/nELAVLs are also induced by reprogramming factors Neurog2 and ASCL1 in HA suggesting a conserved function to neuronal reprogramming, and by NeuroD1 in the mouse astrocyte culture and spinal cord. Functionally, we showed that miR-375 overexpression improves NeuroD1-mediated reprogramming efficiency by promoting cell survival at early stages in HA even in cultures treated with the chemotherapy drug Cisplatin. Moreover, miR-375 overexpression doesnt appear to compromise maturation of the reprogrammed neurons in long term HA cultures. Lastly, overexpression of miR-375-refractory ELAVL4 induces apoptosis and reverses the cell survival-promoting effect of miR-375 during AtN reprogramming. Together, we demonstrate a neuro-protective role of miR-375 during NeuroD1-mediated AtN reprogramming and suggest a strategy of combinatory overexpression of NeuroD1 and miR-375 for improving neuronal reprogramming efficiency.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The histone deacetylase complex MiDAC regulates a neurodevelopmental gene expression program 94%
- Safb1 regulates cell fate determination in adult neural stem cells by enhancing Drosha cleavage of NFIB mRNA 94%
- Extracellular matrix-inducing Sox9 orchestrates basal progenitor proliferation and gliogenesis in developing neocortex 94%
Similar papers in this journal
Similar papers in this journal
- The piRNA pathway sustains adult neurogenesis by repressing protein synthesis and cellular senescence 95%
- A novel stem cell type at the basal side of the subventricular zone maintains adult neurogenesis 93%
- Gradual centriole maturation associates with the mitotic surveillance pathway in mouse development 93%
Similar papers in this journal
- Generation of excitatory and inhibitory neurons from common progenitors via Notch signaling in the cerebellum 94%
- miR-17~92 exerts stage-specific effects in adult V-SVZ neural stem cell lineages 93%
- Role of PARP1 in oligodendrocyte differentiation during developmental myelination and remyelination after myelin damage 93%
Similar papers in this journal
- In vivo transition in chromatin accessibility during differentiation of deep-layer excitatory neurons in the neocortex 96%
- Rapid and robust directed differentiation of mouse epiblast stem cells into definitive endoderm and forebrain organoids 94%
- NANOGP1, a tandem duplicate of NANOG, exhibits partial functional conservation in human naive pluripotent stem cells 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.