| Literature DB >> 31316349 |
Abstract
Nerve injuries may cause severe disability and affect the quality of life. It is of great importance to get a full understanding of the biological processes and molecular mechanisms underlying nerve injuries to find and target specific molecules for nerve regeneration. Numerous studies have shown that noncoding RNAs (ncRNAs) participate in diverse biological processes and diseases. Long noncoding RNAs (lncRNAs) and circular RNAs (circRNAs) are two major groups of ncRNAs, which attract growing attention. The altered expression patterns of lncRNAs and circRNAs following nerve injury suggest that these ncRNAs might be associated with nerve regeneration. This review will give a brief introduction of lncRNAs and circRNAs. We then summarize the current studies on lncRNAs and circRNAs following peripheral nerve injury and spinal cord injury (SCI). Typical lncRNAs and circRNAs are introduced to illustrate the diverse molecular mechanisms for nerve regeneration. In addition, we also discuss some issues to be addressed in future investigations on lncRNAs and circRNAs.Entities:
Keywords: circular RNA; long noncoding RNA; nerve regeneration; peripheral nerve injury; spinal cord injury
Year: 2019 PMID: 31316349 PMCID: PMC6611387 DOI: 10.3389/fnmol.2019.00165
Source DB: PubMed Journal: Front Mol Neurosci ISSN: 1662-5099 Impact factor: 5.639
List of studies on long noncoding RNA (lncRNA) and circular RNA (circRNA) alteration after nerve injury.
| Injury model | Tissue | Time points post injury | Methods | Reference |
|---|---|---|---|---|
| Rat sciatic nerve transection | L4-L6 DRGs | 0, 1, 4, 7 days | Microarray | Yu et al. ( |
| Mouse sciatic nerve crush | DRGs | 0, 1, 4, 7 days | RNA-Seq | Perry et al. ( |
| Mouse sciatic nerve crush | Distal sciatic nerve | 0, 3, 7, 14 days | Microarray | Pan et al. ( |
| Mouse sciatic nerve transection itransection | Distal sciatic nerve | uncut, 7 days | RNA-Seq | Arthur-Farraj et al. ( |
| IL-22 treated rat SCs | SCs | RNA-Seq | Xu et al. ( | |
| Rat sciatic nerve transection | Sciatic nerve | 8 weeks | Microarray | Wang et al. ( |
| Rat sciatic nerve crush | Sciatic nerve | 0, 1, 4, 7 days | Microarray | Yao et al. ( |
| Rat contusion SCI | Epicenter spinal cord | 0, 1, 4 and 7 days | RNA-Seq | Wang J. et al. ( |
| Mouse contusion SCI | Epicenter spinal cord | 0, 1, 3 days, 1 and 3 weeks | Microarray | Ding et al. ( |
| Rat contusion SCI | Epicenter spinal cord | 0, 1, 3, 6 months | RNA-Seq | Duran et al. ( |
| Rat contusion SCI | Epicenter spinal cord | 2 days | Microarray | Shi et al. ( |
| Rat traumatic SCI | Spinal cord | 3 days | Microarray | Qin et al. ( |
| Rat traumatic SCI | Spinal cord | 6 h | RNA-Seq | Zhou et al. ( |
| Mice sciatic nerve injury | Gastrocnemius muscles | 0, 1, 2, 4, 8 weeks | RNA-Seq | Weng et al. ( |
| Rat sciatic nerve compression | Sciatic nerve | 1 day | RNA-Seq | Zhou Z.-B. et al. ( |
Summary of the functions and mechanisms of lncRNAs and circRNAs in nerve injury.
| LncRNA | Injury model | Expression | Function | Mechanism | Reference |
|---|---|---|---|---|---|
| BC089918 | Rat sciatic nerve transection | down | Negatively regulate neurite outgrowth | Unclear | Yu et al. ( |
| Uc.217 | Rat sciatic nerve transection | down | Negatively regulate neurite outgrowth | Affect the expressions of genes involved in nerve regeneration | Yao et al. ( |
| Silc1 | Mouse sciatic nerve crush | up | Depletion of Silc1 impair neurite outgrowth | Activate in | Perry et al. ( |
| NONMMUG014387 | Rat sciatic nerve transection | up | Promote SC proliferation | Increase Cthrc1 expression and activate Wnt/PCP pathway | Pan et al. ( |
| BC088327 | Rat sciatic nerve transection | up | Promote SC proliferation | Synergic with heregulin-1β | Wang et al. ( |
| TNXA-PS1 | Rat sciatic nerve crush | down | Downregulation of TNXA-PS1 promote SC migration | Act as a ceRNA to affect Dusp1 expression | Yao et al. ( |
| Egr2-AS-RNA | Mouse sciatic nerve transection | up | Induce demyelination | Inhibit Egr2 expression | Martinez-Moreno et al. ( |
| lncSCIR1 | Rat contusion SCI | down | Negatively regulate astrocyte proliferation and migration. | Affect the expressions of Adm, Bmp7, Snca and Wnt3 | Wang J. et al. ( |
| lncSNHG5 | Rat contusion SCI | up | Enhance astrocytes and microglia viability | Interact with KLF4 | Jiang and Zhang ( |
| lncRNA-Map2k4 | Mouse contusion SCI | down | Promote neuron proliferation and inhibit apoptosis | Through an miR-199a/FGF1 pathway | Lv ( |
| XIST | Rat contusion SCI | up | Induce neuronal apoptosis | Negatively modulate PI3K/AKT pathway by decreasing miR-494 and increasing PTEN expression | Gu et al. ( |
| BDNF-AS | Rat ASCI and hypoxia cellular model | up | Promote neuronal cell apoptosis | Sponge miR-130b-5p to regulate PRDM5 | Zhang et al. ( |
| DGCR5 | Rat ASCI and hypoxia cellular model | down | Suppress neuronal apoptosis | Bind and negatively regulate PRDM5 | Zhang et al. ( |
| MALAT1 | Rat ASCI | up | Regulate inflammatory response of microglia | Zhou H.-J. et al. ( | |
| circRNA 2837 | Rat sciatic nerve compression | down | Regulate autophagy in neurons | Serve as a miRNA sponge for the miR-34 family | Zhou Z.-B. et al. ( |
Figure 1The scheme of long noncoding RNAs (lncRNAs) and circular RNAs (circRNAs) in nerve injury.