| Literature DB >> 32514332 |
Yanfang Zhao1, Hongliang Liu1, Qili Zhang1, Yuan Zhang2.
Abstract
The capacities for neural stem cells (NSCs) self-renewal with differentiation are need to be precisely regulated for ensuring brain development and homeostasis. Recently, increasing number of studies have highlighted that long non-coding RNAs (lncRNAs) are associated with NSC fate determination during brain development stages. LncRNAs are a class of non-coding RNAs more than 200 nucleotides without protein-coding potential and function as novel critical regulators in multiple biological processes. However, the correlation between lncRNAs and NSC fate decision still need to be explored in-depth. In this review, we will summarize the roles and molecular mechanisms of lncRNAs focusing on NSCs self-renewal, neurogenesis and gliogenesis over the course of neural development, still more, dysregulation of lncRNAs in all stage of neural development have closely relationship with development disorders or glioma. In brief, lncRNAs may be explored as effective modulators in NSCs related neural development and novel biomarkers for diagnosis and prognosis of neurological disorders in the future.Entities:
Keywords: Gliogenesis; LncRNA; Neural differentiation; Neural stem cells; Neurogenesis; Neurological disorders; Self-renewal
Year: 2020 PMID: 32514332 PMCID: PMC7260844 DOI: 10.1186/s13578-020-00435-x
Source DB: PubMed Journal: Cell Biosci ISSN: 2045-3701 Impact factor: 7.133
Fig. 1Schematic representation the regulatory networks of lncRNAs in major biology activities during brain developmental process. It was depicted in details that lncRNAs contribute to NSCs self-renewal, neurogenesis/neuronal differentiation, neurodevelopmental disorders and gliogenesis major emerging as sponging of miRNAs, crucial regulators in signaling pathway and targeting proximal gene expression
The functional characterization of lncRNAs on neural related stem cells self-renewal
| LncRNA name | Mechanism | Biological function | References |
|---|---|---|---|
| Restrain FGF/ERK signalling | Suppress NPCs self-renewal | [ | |
| Interact with Wdr5 | Block ESCs transformation into NPCS | [ | |
| Activated by TGF-β, miR-200 s/ZEB1, miR200s/ZNF596/EZH2/STAT3 | Promote GSC self-renewal | [ | |
| Activated by Notch, sponging of miR-145 and recruiting polycomb via YY1 | Promote GSC self-renewal | [ | |
| miR-103a-3p/FEZF1 axis | Promote GSC proliferation | [ | |
| NF-κB1 pathway | Inhibit GSC self-renewal | [ | |
| Regulated by E2F1, miR-21/miR-191 | Promote GSC self-renewal | [ | |
| Enhancing the NEDD4-1-dependent inhibition of PTEN | Promote glioma proliferation | [ |
The roles of lncRNAs on NSCs differentiation/neurogenesis and oligodendrogenesis
| LncRNA name | Mechanism | Biological function | References |
|---|---|---|---|
| Link with Sox2, interact with YY1 | Prohibit NSCs proliferation and advance neuronal differentiation | [ | |
| Target Sox2 | Promote neurogenesis | [ | |
| Bind with hnRNPAB and activate Kdm2b gene expression | Promote neurogenesis | [ | |
| Bind with local genes-Pax6 and KAP1 | Promote neurogenesis | [ | |
| Interact with miR-30e-3p, miR-431 and miR-147 | Inhibit NSCs proliferation while promote NSCs differentiation | [ | |
| miR-200c/ZEB1/2 axis | Promote neural differentiation | [ | |
| Activated by C/EBPβ, miR-96/Sox6 | Enhance neural differentiation | [ | |
| miR-467a-3p/Sox6, miR-101-3a/GSK-3β | Enhance neural differentiation | [ | |
| Activate ERK/MAPK, inhibit PPAR/p53 | Promote neural differentiation | [ | |
| Interact with PTBP1 | Inhibit neural differentiation and neurogenesis | [ | |
| Interact with HuR and activate Wnt signalling | Inhibit neural differentiation | [ | |
| Targeting TrkB signaling pathway | Inhibit eNSCs-derived neurite outgrowth | [ | |
| miR-1/Hes1 | Promote NSCs differentiation to astrocyte but neuron | [ | |
| Regulated by OLIG2 | Promote oligodendrogenesis | [ | |
| Form a complex with Suz12 | Promote oligodendrogenesis | [ | |
| Promote NFIB expression | Promote oligodendrogenesis | [ | |
| Oligodendrogenesis marker | [ | ||
| Regulate oligodendrocyte maturation | [ |
The major roles of lncRNAs in neurodevelopmental disorders
| LncRNA name | Mechanism | Biological function | Disease | References |
|---|---|---|---|---|
| Interact with RBPs | Promote neural differentiation | HD | [ | |
| Derived from FMR1 locus | Promote hNPCs proliferation | Fragile X syndrome | [ | |
| Interact with RPS10P2 | ASD | [ | ||
| Regulate chromatin organization and immune response related gene | Inhibit neural differentiation | ASD | [ | |
| miR-140-5p/BMP2 | Promote neurogenesis | ASD | [ | |
| p53/Notch1 pathway | Block neurogenesis | Ischemic stroke | [ | |
| Notch or Wnt/β-catenin signaling pathway, miR-128-3p/ATRA/cAMP/CREB axis | Promote neurogenesis/neural differentiation | Ischemia-reperfusion injury | [ | |
| Associated with Wnt signaling | Promote oligodendrogenesis | Schizophrenia | [ | |
| miR-136-5p/AKT2-NF-κB | Demyelination | [ |