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Research Article

MiR-463-3p inhibits tibial nerve regeneration via post-transcriptional suppression of SPRR1A

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Pages 3631-3637 | Received 04 Jul 2019, Accepted 11 Aug 2019, Published online: 30 Aug 2019

References

  • Daly W, Yao L, Zeugolis D, et al. A biomaterials approach to peripheral nerve regeneration: bridging the peripheral nerve gap and enhancing functional recovery. J R Soc Interface. 2012;9:202–221.
  • Li S, Wang X, Gu Y, et al. Let-7 microRNAs regenerate peripheral nerve regeneration by targeting nerve growth factor. Mol Ther. 2015;23:423–433.
  • Schüning J, Scherens A, Haussleiter IS, et al. Sensory changes and loss of intraepidermal nerve fibers in painful unilateral nerve injury. Clin J Pain. 2009;25:683–690.
  • Taha MO, Rosseto M, Fraga MM, et al. Effect of retinoic acid on tibial nerve regeneration after anastomosis in rats: histological and functional analyses. Transplant Proc. 2004;36:404–408.
  • Navarro X, Vivó M, Valero-Cabré A. Neural plasticity after peripheral nerve injury and regeneration. Prog Neurobiol. 2007;82:163–201.
  • Bushati N, Cohen SM. MicroRNA functions – annual review of cell and developmental biology. Annu Rev Cell Dev Biol. 2007;23:175.
  • Di W, Murashov AK. Molecular mechanisms of peripheral nerve regeneration: emerging roles of microRNAs. Front Physiol. 2013;4:55.
  • Fineberg SK, Kosik KS, Davidson BL. MicroRNAs potentiate neural development. Neuron. 2009;64:303–309.
  • Eacker SM, Dawson TM, Dawson VL. Understanding microRNAs in neurodegeneration. Nat Rev Neurosci. 2009;10:837–841.
  • Wang J, Muheremu A, Zhang M, et al. MicroRNA-338 and microRNA-21 co-transfection for the treatment of rat sciatic nerve injury. Neurol Sci. 2016;37:883–890.
  • Zhang HY, Zheng SJ, Zhao JH, et al. MicroRNAs 144, 145, and 214 are down-regulated in primary neurons responding to sciatic nerve transection. Brain Res. 2011;1383:62.
  • Li S, Zhang R, Yuan Y, et al. MiR-340 regulates fibrinolysis and axon regrowth following sciatic nerve injury. Mol Neurobiol. 2016;54:1–11.
  • Yu B, Zhou S, Wang Y, et al. Profile of microRNAs following rat sciatic nerve injury by deep sequencing: implication for mechanisms of nerve regeneration. PLOS One. 2011;6:e24612.
  • George LT, Myckatyn TM, Jensen JN, et al. Functional recovery and histomorphometric assessment following tibial nerve injury in the mouse. J Reconstr Microsurg. 2003;19:041–048.
  • Huang DW, Mckerracher L, Braun PE, et al. A therapeutic vaccine approach to stimulate axon regeneration in the adult mammalian spinal cord. Neuron. 1999; 24:639–647.
  • Jing X, Wang T, Huang S, et al. The transcription factor Sox11 promotes nerve regeneration through activation of the regeneration-associated gene Sprr1a. Exp Neurol. 2012;233:221–232.
  • Yu Z, Raabe T, Hecht NB. MicroRNA Mirn122a reduces expression of the posttranscriptionally regulated germ cell transition protein 2 (Tnp2) messenger RNA (mRNA) by mRNA cleavage. Biol Reprod. 2005;73:427–433.
  • Hou X, Wu W, Yin B, et al. MicroRNA-463-3p/ABCG4: a new axis in glucose-stimulated insulin secretion. Obesity (Silver Spring). 2016;24:2368.
  • Ahn HW, Morin RD, Zhao H, et al. MicroRNA transcriptome in the newborn mouse ovaries determined by massive parallel sequencing. Mol Hum Reprod. 2010;16:463.
  • Landgraf P, Rusu M, Sheridan R, et al. A Mammalian microRNA expression atlas based on small RNA library sequencing. Cell. 2007;129:1401–1414.
  • Gibbs S, Fijneman R, Wiegant J, et al. Molecular characterization and evolution of the SPRR family of keratinocyte differentiation markers encoding small proline-rich proteins. Genomics. 1993;16:630.
  • Bonilla IE, Tanabe K, Strittmatter SM. Small proline-rich repeat protein 1A is expressed by axotomized neurons and promotes axonal outgrowth. J Neurosci. 2002;22:1303–1315.
  • Kanaan NM, Grabinski T, Combs B, et al. Small proline-rich repeat 1A protein protects nigrostriatal axons from degeneration in the 6-hydroxydopamine lesion rat model of Parkinson's disease. Cell Transpl. 2015;24:761.
  • Gaudet AD, Mandrekar-Colucci S, Hall JC, et al. miR-155 Deletion in mice overcomes neuron-intrinsic and neuron-extrinsic barriers to spinal cord repair. J Neurosci. 2016;36:8516.