Skip to Content
Merck
  • Deconstructing Stepwise Fate Conversion of Human Fibroblasts to Neurons by MicroRNAs.

Deconstructing Stepwise Fate Conversion of Human Fibroblasts to Neurons by MicroRNAs.

Cell stem cell (2020-09-23)
Kitra Cates, Matthew J McCoy, Ji-Sun Kwon, Yangjian Liu, Daniel G Abernathy, Bo Zhang, Shaopeng Liu, Paul Gontarz, Woo Kyung Kim, Shawei Chen, Wenjun Kong, Joshua N Ho, Kyle F Burbach, Harrison W Gabel, Samantha A Morris, Andrew S Yoo
ABSTRACT

Cell-fate conversion generally requires reprogramming effectors to both introduce fate programs of the target cell type and erase the identity of starting cell population. Here, we reveal insights into the activity of microRNAs miR-9/9∗ and miR-124 (miR-9/9∗-124) as reprogramming agents that orchestrate direct conversion of human fibroblasts into motor neurons by first eradicating fibroblast identity and promoting uniform transition to a neuronal state in sequence. We identify KLF-family transcription factors as direct target genes for miR-9/9∗-124 and show their repression is critical for erasing fibroblast fate. Subsequent gain of neuronal identity requires upregulation of a small nuclear RNA, RN7SK, which induces accessibilities of chromatin regions and neuronal gene activation to push cells to a neuronal state. Our study defines deterministic components in the microRNA-mediated reprogramming cascade.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Hexadimethrine bromide, ≥94% (titration)
Sigma-Aldrich
Poly-L-ornithine solution, mol wt 30,000-70,000, 0.01%, sterile-filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
Retinoic acid, ≥98% (HPLC), powder
Sigma-Aldrich
Doxycycline hyclate
Sigma-Aldrich
CryoStor® cell cryopreservation media, CS10
Sigma-Aldrich
Laminin from Engelbreth-Holm-Swarm murine sarcoma basement membrane, 1-2 mg/mL in Tris-buffered saline, 0.2 μm filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
N6,2′-O-Dibutyryladenosine 3′,5′-cyclic monophosphate sodium salt, ≥96% (HPLC), powder