Literature DB >> 27344331

MiR-340 Regulates Fibrinolysis and Axon Regrowth Following Sciatic Nerve Injury.

Shiying Li1, Ruirui Zhang1, Ying Yuan1, Sheng Yi1, Qianqian Chen1, Leilei Gong1, Jie Liu1, Fei Ding1, Zheng Cao2, Xiaosong Gu3.   

Abstract

After peripheral nerve injury, the degenerative debris and inflammatory alterations at the injury site may block the elongation of regenerating axons to reach target organs. Tissue plasminogen activator (tPA), a serine protease, has a capability of degrading matrix molecules and cell adhesions. In this study, we found that either tPA or miR-340 was differentially expressed in the injured nerve after sciatic nerve injury, and that the expressions of tPA and miR-340 were negatively correlated to each other. Moreover, miR-340 and tPA were co-localized in sciatic nerve. miR-340 regulated tPA through direct targeting of the 3'-UTR of tPA. Functionally, over- or under-expression of miR-340 reduced or augmented the fibrinolytic activity and migration ability of cultured Schwann cells as well as tPA secretion from the cells, respectively. In rats with sciatic nerve crush injury, dysregulation of the miR-340 expression in the injury site affected the cell debris removal and axonal regrowth. Obviously, unlike many previous studies that investigate the functional impact of miRNAs on peripheral nerve regeneration in the perspective of miRNA regulation of neural cell behaviors, the present study focused on miRNA regulation of debris clearance, thus updating our understanding of the regulatory roles of miRNAs in peripheral nerve regeneration.

Entities:  

Keywords:  Axon growth; Debris clearance; Fibrinolysis; miR-340; tPA

Mesh:

Substances:

Year:  2016        PMID: 27344331     DOI: 10.1007/s12035-016-9965-4

Source DB:  PubMed          Journal:  Mol Neurobiol        ISSN: 0893-7648            Impact factor:   5.590


  34 in total

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Authors:  Jacek Krol; Inga Loedige; Witold Filipowicz
Journal:  Nat Rev Genet       Date:  2010-07-27       Impact factor: 53.242

Review 2.  Functional evaluation of peripheral nerve regeneration and target reinnervation in animal models: a critical overview.

Authors:  Xavier Navarro
Journal:  Eur J Neurosci       Date:  2015-08-26       Impact factor: 3.386

Review 3.  The diverse functions of microRNAs in animal development and disease.

Authors:  Wigard P Kloosterman; Ronald H A Plasterk
Journal:  Dev Cell       Date:  2006-10       Impact factor: 12.270

Review 4.  The plasminogen activator/plasmin system.

Authors:  J D Vassalli; A P Sappino; D Belin
Journal:  J Clin Invest       Date:  1991-10       Impact factor: 14.808

5.  Exogenous tissue plasminogen activator enhances peripheral nerve regeneration and functional recovery after injury in mice.

Authors:  Tie Zou; Changchun Ling; Yao Xiao; Xianmei Tao; Duan Ma; Zu-Lin Chen; Sidney Strickland; Houyan Song
Journal:  J Neuropathol Exp Neurol       Date:  2006-01       Impact factor: 3.685

Review 6.  The regulatory roles of non-coding RNAs in nerve injury and regeneration.

Authors:  Bin Yu; Songlin Zhou; Sheng Yi; Xiaosong Gu
Journal:  Prog Neurobiol       Date:  2015-10-03       Impact factor: 11.685

7.  Transcription factor Sp1 is important for retinoic acid-induced expression of the tissue plasminogen activator gene during F9 teratocarcinoma cell differentiation.

Authors:  A L Darrow; R J Rickles; L T Pecorino; S Strickland
Journal:  Mol Cell Biol       Date:  1990-11       Impact factor: 4.272

8.  Mice lacking tissue plasminogen activator and urokinase plasminogen activator genes show attenuated matrix metalloproteases activity after sciatic nerve crush.

Authors:  Lisa B Siconolfi; Nicholas W Seeds
Journal:  J Neurosci Res       Date:  2003-11-01       Impact factor: 4.164

9.  Altered microRNA expression following traumatic spinal cord injury.

Authors:  Nai-Kui Liu; Xiao-Fei Wang; Qing-Bo Lu; Xiao-Ming Xu
Journal:  Exp Neurol       Date:  2009-07-01       Impact factor: 5.330

10.  Tissue plasminogen activator-mediated fibrinolysis protects against axonal degeneration and demyelination after sciatic nerve injury.

Authors:  K Akassoglou; K W Kombrinck; J L Degen; S Strickland
Journal:  J Cell Biol       Date:  2000-05-29       Impact factor: 10.539

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  19 in total

1.  The microRNAs let-7 and miR-9 down-regulate the axon-guidance genes Ntn1 and Dcc during peripheral nerve regeneration.

Authors:  Xinghui Wang; Qianqian Chen; Sheng Yi; Qianyan Liu; Ruirui Zhang; Pan Wang; Tianmei Qian; Shiying Li
Journal:  J Biol Chem       Date:  2019-01-09       Impact factor: 5.157

2.  Exosome Released From Schwann Cells May Be Involved in Microenergy Acoustic Pulse-Associated Cavernous Nerve Regeneration.

Authors:  Dongyi Peng; Amanda B Reed-Maldonado; Feng Zhou; Yan Tan; Huixing Yuan; Lia Banie; Guifang Wang; Yuxin Tang; Leye He; Guiting Lin; Tom F Lue
Journal:  J Sex Med       Date:  2020-07-12       Impact factor: 3.802

3.  Dysregulated miR-29a-3p/PMP22 Modulates Schwann Cell Proliferation and Migration During Peripheral Nerve Regeneration.

Authors:  Yinying Shen; Zhangchun Cheng; Sailing Chen; Yunsong Zhang; Qi Chen; Sheng Yi
Journal:  Mol Neurobiol       Date:  2021-11-27       Impact factor: 5.590

4.  Analysis of piRNA-Like Small Non-coding RNAs Present in Axons of Adult Sensory Neurons.

Authors:  Monichan Phay; Hak Hee Kim; Soonmoon Yoo
Journal:  Mol Neurobiol       Date:  2016-12-13       Impact factor: 5.590

5.  Novel miR-sc4 regulates the proliferation and migration of Schwann cells by targeting Cdk5r1.

Authors:  Tianmei Qian; Xinghui Wang; Yaxian Wang; Pan Wang; Qianyan Liu; Jie Liu; Sheng Yi
Journal:  Mol Cell Biochem       Date:  2018-01-31       Impact factor: 3.396

6.  NoRCE: non-coding RNA sets cis enrichment tool.

Authors:  Gulden Olgun; Afshan Nabi; Oznur Tastan
Journal:  BMC Bioinformatics       Date:  2021-06-02       Impact factor: 3.169

Review 7.  Exosomes and Their MicroRNA Cargo: New Players in Peripheral Nerve Regeneration.

Authors:  Liming Qing; Huanwen Chen; Juyu Tang; Xiaofeng Jia
Journal:  Neurorehabil Neural Repair       Date:  2018-09       Impact factor: 3.919

8.  Transcriptomic analysis reveals essential microRNAs after peripheral nerve injury.

Authors:  Yu Wang; Shu Wang; Jiang-Hong He
Journal:  Neural Regen Res       Date:  2021-09       Impact factor: 5.135

9.  MicroRNA-133b Negatively Regulates Zebrafish Single Mauthner-Cell Axon Regeneration through Targeting tppp3 in Vivo.

Authors:  Rongchen Huang; Min Chen; Leiqing Yang; Mahendra Wagle; Su Guo; Bing Hu
Journal:  Front Mol Neurosci       Date:  2017-11-21       Impact factor: 5.639

10.  Let-7d modulates the proliferation, migration, tubulogenesis of endothelial cells.

Authors:  Ximeng Ji; Hao Hua; Yinying Shen; Shoushan Bu; Sheng Yi
Journal:  Mol Cell Biochem       Date:  2019-08-21       Impact factor: 3.396

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