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miR-34b/c Regulates Wnt1 and Enhances Mesencephalic Dopaminergic Neuron Differentiation. | LitMetric

AI Article Synopsis

  • The differentiation of dopaminergic neurons involves a crucial interaction between morphogens and transcription factors within a specific timeframe, with little known about microRNA's impact.
  • A microarray screening identified miR-34b/c as significantly upregulated during this differentiation, where it influences Wnt1 expression and promotes the transition of cells from the cycle, leading to increased dopaminergic neuron production.
  • Combining miR-34b/c with transcription factors ASCL1 and NURR1 effectively doubled the conversion of fibroblasts to dopaminergic neurons, which displayed dopamine synthesis and electrical activity similar to natural brain neurons, suggesting a promising avenue for improved neuronal generation in lab settings.

Article Abstract

The differentiation of dopaminergic neurons requires concerted action of morphogens and transcription factors acting in a precise and well-defined time window. Very little is known about the potential role of microRNA in these events. By performing a microRNA-mRNA paired microarray screening, we identified miR-34b/c among the most upregulated microRNAs during dopaminergic differentiation. Interestingly, miR-34b/c modulates Wnt1 expression, promotes cell cycle exit, and induces dopaminergic differentiation. When combined with transcription factors ASCL1 and NURR1, miR-34b/c doubled the yield of transdifferentiated fibroblasts into dopaminergic neurons. Induced dopaminergic (iDA) cells synthesize dopamine and show spontaneous electrical activity, reversibly blocked by tetrodotoxin, consistent with the electrophysiological properties featured by brain dopaminergic neurons. Our findings point to a role for miR-34b/c in neuronal commitment and highlight the potential of exploiting its synergy with key transcription factors in enhancing in vitro generation of dopaminergic neurons.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5998209PMC
http://dx.doi.org/10.1016/j.stemcr.2018.02.006DOI Listing

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